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Genetic Phenomena Commons

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Articles 271 - 300 of 1023

Full-Text Articles in Genetic Phenomena

Immature Acta2r179c/+ Smooth Muscle Cells Cause Moyamoya-Like Cerebrovascular Lesions In Mice Prevented By Boosting Oxphos, Anita Kaw, Suravi Majumder, Jose E Esparza Pinelo, Ting Wu, Zbigniew Starosolski, Zhen Zhou, Albert J Pedroza, Xueyan Duan, Kaveeta Kaw, Angie D Gonzalez, Ripon Sarkar, Michael P Fischbein, Philip L Lorenzi, Lin Tan, Sara A Martinez, Iqbal Mahmud, Laxman Devkota, L Maximilian Buja, Heinrich Taegtmeyer, Ketan B Ghaghada, Sean P Marrelli, Callie S Kwartler, Dianna M Milewicz Jul 2025

Immature Acta2r179c/+ Smooth Muscle Cells Cause Moyamoya-Like Cerebrovascular Lesions In Mice Prevented By Boosting Oxphos, Anita Kaw, Suravi Majumder, Jose E Esparza Pinelo, Ting Wu, Zbigniew Starosolski, Zhen Zhou, Albert J Pedroza, Xueyan Duan, Kaveeta Kaw, Angie D Gonzalez, Ripon Sarkar, Michael P Fischbein, Philip L Lorenzi, Lin Tan, Sara A Martinez, Iqbal Mahmud, Laxman Devkota, L Maximilian Buja, Heinrich Taegtmeyer, Ketan B Ghaghada, Sean P Marrelli, Callie S Kwartler, Dianna M Milewicz

Faculty, Staff and Student Publications

ACTA2 pathogenic variants altering arginine 179 cause childhood-onset strokes due to moyamoya disease (MMD)-like occlusions of the distal internal carotid arteries, but the mechanisms of pathogenesis are unknown and no preventive treatments exist. Here we show that Acta2R179C/+ smooth muscle cells (SMCs) fail to fully differentiate and maintain stem cell-like features, including increased migration and glycolytic flux compared to wildtype (WT) SMCs. Increasing mitochondrial respiration with nicotinamide riboside (NR) drives differentiation and decreases migration of Acta2R179C/+ SMCs. Carotid artery injury of Acta2SMC-R179C/+ mice leads to premature death, intraluminal SMC accumulation leading to MMD-like occlusive lesions, neurologic symptoms, …


C-Terminal Frameshift Variants In Gpkow Are Associated With A Multisystemic X-Linked Disorder, Jung-Wan Mok, Laura Mackay, Maria Blazo, Elizabeth Mizerik, Jozef Gecz, Renee Carroll, Mathilde Nizon, Sophie Rondeau, Madeleine Joubert, Silvestre Cuinat, Wallid Deb, Fernanda Valle Sirias, Monika Weisz-Hubshman, Shamika Ketkar, Urszula Polak, Alyssa A Tran, Debra Kearney, Neil A Hanchard, Oguz Kanca, Michael F Wangler, Hugo J Bellen, Brendan H Lee, Shinya Yamamoto, Keren Machol Jul 2025

C-Terminal Frameshift Variants In Gpkow Are Associated With A Multisystemic X-Linked Disorder, Jung-Wan Mok, Laura Mackay, Maria Blazo, Elizabeth Mizerik, Jozef Gecz, Renee Carroll, Mathilde Nizon, Sophie Rondeau, Madeleine Joubert, Silvestre Cuinat, Wallid Deb, Fernanda Valle Sirias, Monika Weisz-Hubshman, Shamika Ketkar, Urszula Polak, Alyssa A Tran, Debra Kearney, Neil A Hanchard, Oguz Kanca, Michael F Wangler, Hugo J Bellen, Brendan H Lee, Shinya Yamamoto, Keren Machol

Duncan NRI Faculty and Staff Publications

Purpose: GPKOW, a gene on the X-chromosome, encodes a nuclear RNA-binding protein important in messenger RNA (mRNA) processing as a spliceosome subunit. This work aims to establish GPKOW as a disease-associated gene.

Methods: We describe 3 males from 2 unrelated families with hemizygous frameshift variants affecting the last exon of GPKOW p.(Arg441SerfsTer30) and p.(Ser444GlufsTer28). The effect of p.(Ser444GlufsTer28) on gene expression was evaluated in patient's fibroblasts. In vivo studies in Drosophila melanogaster targeting the sole GPKOW fly ortholog, CG10324 (Gpkow) were performed.

Results: Clinical presentations included intrauterine growth restriction, microcephaly/microencephaly, and eye, brain, skin, and skeletal abnormalities. Heterozygote females presented …


A Hypomorphic Model Of Cps1 Deficiency For Investigating The Effects Of Hyperammonemia On The Developing Nervous System, Stuti Bakshi, Taryn Diep, Brandon J Willis, Rachel Reyes, Grace F Wu, Georgios Makris, Martin Poms, Isabel Day, Qin Sun, Irina Zhuravka, Lindsay Lueptow, Michelle Tang, Gareth A Cromie, Aimée M Dudley, Johannes Häberle, Gerald S Lipshutz Jul 2025

A Hypomorphic Model Of Cps1 Deficiency For Investigating The Effects Of Hyperammonemia On The Developing Nervous System, Stuti Bakshi, Taryn Diep, Brandon J Willis, Rachel Reyes, Grace F Wu, Georgios Makris, Martin Poms, Isabel Day, Qin Sun, Irina Zhuravka, Lindsay Lueptow, Michelle Tang, Gareth A Cromie, Aimée M Dudley, Johannes Häberle, Gerald S Lipshutz

Faculty, Staff and Students Publications

Carbamoyl phosphate synthetase 1 (CPS1) deficiency is a rare metabolic disorder that, in neonatal onset, is typically characterized by severe life-threatening and neurologically injuring hyperammonemic episodes with high unmet patient need. Patients that retain limited enzyme activity may present later in life with less severe hyperammonemia. CPS1 drives the first step in the urea cycle, the pathway terrestrial mammals utilize to metabolize nitrogen. In order to probe the effect of hyperammonemia on the developing nervous system and explore new therapies, a murine Cps1 exon 3-4 mutant was previously generated. However, these mice die within 24 h of birth, limiting study …


Renal G Protein-Coupled Estrogen Receptor 1 Regulates The Epithelial Sodium Channel Promoting Natriuresis To A Greater Extent In Females, Victoria L Nasci, Jean C Bopassa, Elena Mironova, Megan Rhoads, Ravneet Singh, Dennis P Buehler, David M Pollock, Oleh M Pochynyuk, James D Stockand, Eman Y Gohar Jul 2025

Renal G Protein-Coupled Estrogen Receptor 1 Regulates The Epithelial Sodium Channel Promoting Natriuresis To A Greater Extent In Females, Victoria L Nasci, Jean C Bopassa, Elena Mironova, Megan Rhoads, Ravneet Singh, Dennis P Buehler, David M Pollock, Oleh M Pochynyuk, James D Stockand, Eman Y Gohar

Faculty, Staff and Student Publications

Hypertension prevalence is lower in women than men. Enhanced renal sodium (Na+) handling in females has been implicated in sex-differences in hypertension. Epithelial Na+ channel (ENaC) is a key contributor to Na+ homeostasis and is regulated by estrogen. Recent evidence suggests G protein-coupled estrogen receptor 1 (GPER1) evokes a female-specific natriuresis that involves endothelin-1 (ET-1). ET-1 has been shown to downregulate ENaC activity, but whether GPER1 regulates ENaC to modulate natriuresis is unknown. We tested the hypothesis that renal GPER1 functionally interacts with ENaC to promote natriuresis in a sex-specific manner. RNAscope confirmed co-expression of GPER1 and ENaC in rat …


Distinguishing Pex2 And Pex16 Gene Variant Severity For Mild, Severe And Atypical Peroxisome Biogenesis Disorders, Vanessa A Gomez, Oguz Kanca, Sharayu V Jangam, Saurabh Srivastav, Jonathan C Andrews, Michael F Wangler Jul 2025

Distinguishing Pex2 And Pex16 Gene Variant Severity For Mild, Severe And Atypical Peroxisome Biogenesis Disorders, Vanessa A Gomez, Oguz Kanca, Sharayu V Jangam, Saurabh Srivastav, Jonathan C Andrews, Michael F Wangler

Duncan NRI Faculty and Staff Publications

Peroxisomal biogenesis disorders (PBD) are autosomal recessive diseases caused by mutations in specific PEX genes that impair peroxisome formation, leading to multi-systemic failure. Symptoms vary, even in patients with variants in the same PEX gene. Our goal is to select PEX mutations and use Drosophila to model a severity spectrum based on genotype-phenotype correlations. Utilizing KozakGAL4 (KZ) cassettes, we replaced the coding sequence of Pex with a GAL4 driver, ideal for making 'humanized' flies in which human PEX can replace the fly loss. We generated Pex2KZ and Pex16KZ lines and assessed them in various behavior assays, confirming their severe phenotypes. …


Non-Invasive Tools For Analysis Of Plasma Membrane Protein Topology In Living Cells, Daria Savenkova, Leysan Bulatova, Vera Skripova, Ramziya Kiyamova, Mikhail Bogdanov Jul 2025

Non-Invasive Tools For Analysis Of Plasma Membrane Protein Topology In Living Cells, Daria Savenkova, Leysan Bulatova, Vera Skripova, Ramziya Kiyamova, Mikhail Bogdanov

Faculty, Staff and Student Publications

Membrane protein topology studies offer guidance to membrane protein structure, folding, and function, serving as a credible scaffold for designing site-directed mutagenesis and biochemical experiments, helping to identify functionally significant extracellular and intracellular regions, modeling three-dimensional structures, and building reliable mechanistic models. Membrane protein structure as a function of given lipid composition and physiological state of the cell is best probed in whole intact cells. A described simple and advanced immunofluorescence protocol applied to the transmembrane orientation of extramembrane domains permits a topology analysis of plasma membrane proteins in their native state in living unperturbed eucaryotic cells. The accessibility of …


Long Akap18 Isoforms Anchor Ubiquitin Specific Proteinases And Coordinate Calcium Reuptake At The Sarcoplasmic Reticulum, Taeyeop Park, Katherine Forbush, Yong Li, Oscar Vivas, Kacey J Rosenthal, Jerome Falcone, Cassandra J Wong, James E Bruce, Claudia Moreno, Carmen W Dessauer, John D Scott Jul 2025

Long Akap18 Isoforms Anchor Ubiquitin Specific Proteinases And Coordinate Calcium Reuptake At The Sarcoplasmic Reticulum, Taeyeop Park, Katherine Forbush, Yong Li, Oscar Vivas, Kacey J Rosenthal, Jerome Falcone, Cassandra J Wong, James E Bruce, Claudia Moreno, Carmen W Dessauer, John D Scott

Faculty, Staff and Student Publications

Subcellular targeting of signaling enzymes influences where and when various modes of intracellular communication operate. Macromolecular complexes of signal transduction and signal termination elements favor reversible control of repetitive processes. This includes adrenergic stimulation of excitation–contraction coupling in the heart. Long isoforms of A-kinase anchoring protein 18 (AKAP18γ and δ) modulate this process via regulation of calcium uptake into the sarcoplasmic reticulum through the Ca2+ATPase 2a (SERCA2a). AKAP18 proximity-proteomic screening in cardiomyocytes identifies networks for protein kinase A (PKA) and ubiquitin-specific proteinases (USPs). A 2′phosphoesterase domain on AKAP18 interfaces with the USP4 isoform at the Z bands of sarcomeres. PKA …


Myh11 Rare Variant Augments Aortic Growth And Induces Cardiac Hypertrophy And Heart Failure With Pressure Overload, Zhen Zhou, Kgosi Hughes, Nisha Saif, Hyoseon Kim, Michael P Massett, Mingjie Zheng, Alana C Cecchi, Dongchuan Guo, David R Murdock, Ping Pan, Jelita S Clinton, Jun Wang, John M Greally, Dianna M Milewicz Jul 2025

Myh11 Rare Variant Augments Aortic Growth And Induces Cardiac Hypertrophy And Heart Failure With Pressure Overload, Zhen Zhou, Kgosi Hughes, Nisha Saif, Hyoseon Kim, Michael P Massett, Mingjie Zheng, Alana C Cecchi, Dongchuan Guo, David R Murdock, Ping Pan, Jelita S Clinton, Jun Wang, John M Greally, Dianna M Milewicz

Faculty, Staff and Student Publications

Smooth muscle cell-specific myosin heavy chain, encoded by MYH11, is selectively expressed in smooth muscle cells (SMCs). Pathogenic variants in MYH11 predispose to a number of disorders, including heritable thoracic aortic disease associated with patent ductus arteriosus, visceral myopathy, and megacystis-microcolon-intestinal hypoperistalsis syndrome. Rare variants of uncertain significance occur throughout the gene, including MYH11 p.Glu1892Asp, and we sought to determine if this variant causes thoracic aortic disease in mice. Genomic editing was used to generate Myh11E1892D/E1892D mice. Wild-type (WT) and mutant mice underwent cardiovascular phenotyping with and without transverse aortic constriction (TAC). Myh11E1892D/E1892D and WT mice displayed …


Targeting Cdk2 And Other Novel Cell Cycle Targets For Breast Cancer Therapy, Mei-Kuang Chen, Linjie Luo, Nicole Massoumi, Khandan Keyomarsi Jul 2025

Targeting Cdk2 And Other Novel Cell Cycle Targets For Breast Cancer Therapy, Mei-Kuang Chen, Linjie Luo, Nicole Massoumi, Khandan Keyomarsi

Faculty, Staff and Student Publications

Introduction: The dysregulation of cyclin-dependent kinases (CDKs) is a key driver of cancer progression, making them attractive therapeutic targets. In CDK4/6 inhibitor (CDK4/6i)-resistant breast cancer, targeting CDK2 offers a promising approach. CDK2 is frequently hyperactivated due to cyclin E1 overexpression or retinoblastoma protein loss, acting as a mechanism that sustains proliferation despite CDK4/6 inhibition. CDK2 inhibitors (CDK2i) show strong anti-tumor activity, particularly in combination with CDK4/6i or immune checkpoint inhibitors.

Areas covered: This review explores the biological roles of CDK2 and its regulatory mechanisms. The review highlights the latest advancements in CDK2i, their mechanisms of action, and their potential in …


Impacts Of Radiation On Metabolism And Vascular Cell Senescence, Junichi Abe, Khanh Chau, Anahita Mojiri, Guangyu Wang, Masayoshi Oikawa, Venkata S K Samanthapudi, Abigail M Osborn, Keila C Ostos-Mendoza, Karla N Mariscal-Reyes, Tammay Mathur, Abhishek Jain, Joerg Herrmann, Syed Wamique Yusuf, Sunil Krishnan, Anita Deswal, Steven H Lin, Sivareddy Kotla, John P Cooke, Nhat-Tu Le Jul 2025

Impacts Of Radiation On Metabolism And Vascular Cell Senescence, Junichi Abe, Khanh Chau, Anahita Mojiri, Guangyu Wang, Masayoshi Oikawa, Venkata S K Samanthapudi, Abigail M Osborn, Keila C Ostos-Mendoza, Karla N Mariscal-Reyes, Tammay Mathur, Abhishek Jain, Joerg Herrmann, Syed Wamique Yusuf, Sunil Krishnan, Anita Deswal, Steven H Lin, Sivareddy Kotla, John P Cooke, Nhat-Tu Le

Faculty, Staff and Student Publications

Significance: This review investigates how radiation therapy (RT) increases the risk of delayed cardiovascular disease (CVD) in cancer survivors. Understanding the mechanisms underlying radiation-induced CVD is essential for developing targeted therapies to mitigate these effects and improve long-term outcomes for patients with cancer.

Recent Advances: Recent studies have primarily focused on metabolic alterations induced by irradiation in various cancer cell types. However, there remains a significant knowledge gap regarding the role of chronic metabolic alterations in normal cells, particularly vascular cells, in the progression of CVD after RT.

Critical Issues: This review centers on RT-induced metabolic alterations in vascular cells …


Kap1 Promotes Gastric Adenocarcinoma Progression By Activating Hippo/Yap1 Signaling Via Binding To Hnrnpab, Shumei Song, Yibo Fan, Gengyi Zou, Longfei Huo, Janani Kumar, Yuan Li, Ruiping Wang, Enyu Dai, Jiankang Jin, Ailing W Scott, Shan Shao, Melissa Pool Pizzi, Jody V Vykoukal, Hiroyuki Katayama, Samir Hanash, George A Calin, Xing Zhang, Min Gyu Lee, Zhenning Wang, Yuan-Hung Lo, Qiong Gan, Rebecca E Waters, Feng Yin, Linghua Wang, Xiaodong Cheng, Jaffer A Ajani, Shilpa S Dhar Jul 2025

Kap1 Promotes Gastric Adenocarcinoma Progression By Activating Hippo/Yap1 Signaling Via Binding To Hnrnpab, Shumei Song, Yibo Fan, Gengyi Zou, Longfei Huo, Janani Kumar, Yuan Li, Ruiping Wang, Enyu Dai, Jiankang Jin, Ailing W Scott, Shan Shao, Melissa Pool Pizzi, Jody V Vykoukal, Hiroyuki Katayama, Samir Hanash, George A Calin, Xing Zhang, Min Gyu Lee, Zhenning Wang, Yuan-Hung Lo, Qiong Gan, Rebecca E Waters, Feng Yin, Linghua Wang, Xiaodong Cheng, Jaffer A Ajani, Shilpa S Dhar

Faculty, Staff and Student Publications

Gastric adenocarcinoma (GAC) remains a significant global health challenge, with over a million new cases annually. Peritoneal carcinomatosis (PC), detected in ∼20 % of cases at diagnosis and ∼45 % later, is uniformly fatal, with limited treatment options. This study investigated the role of KAP1 in GAC progression, focusing on its interaction with YAP1 and cancer stemness traits. Analysis of over 596 primary GACs and 72 PC samples revealed that high nuclear KAP1 expression correlates with poor prognosis. KAP1 knockdown reduced oncogenic activity and stemness traits in GAC cells. Mechanistically, KAP1 positively regulates YAP1 transcription by binding to its promoter …


1d Thermoembolization Model Using Ct Imaging Data For Porcine Liver, Rohan Amare, Danielle Stolley, Steve Parrish, Megan Jacobsen, Rick R Layman, Chimamanda Santos, Beatrice Riviere, Natalie Fowlkes, David Fuentes, Erik Cressman Jul 2025

1d Thermoembolization Model Using Ct Imaging Data For Porcine Liver, Rohan Amare, Danielle Stolley, Steve Parrish, Megan Jacobsen, Rick R Layman, Chimamanda Santos, Beatrice Riviere, Natalie Fowlkes, David Fuentes, Erik Cressman

Faculty, Staff and Student Publications

Innovative therapies such as thermoembolization are expected to play an important role in improving care for patients with diseases such as hepatocellular carcinoma. Thermoembolization is a minimally invasive strategy that combines thermal ablation and embolization in a single procedure. This approach exploits an exothermic chemical reaction that occurs when an acid chloride is delivered via an endovascular route. However, comprehension of the complexities of the biophysics of thermoembolization is challenging. Mathematical models can aid in understanding such complex processes and assisting clinicians in making informed decisions. In this study, we used a Hagen-Poiseuille 1D blood flow model to predict the …


Memantine Inhibits Calcium-Permeable Ampa Receptors, Elisa Carrillo, Alejandra Montaño Romero, Cuauhtemoc U Gonzalez, Andreea L Turcu, Santiago Vázquez, Edward C Twomey, Vasanthi Jayaraman Jul 2025

Memantine Inhibits Calcium-Permeable Ampa Receptors, Elisa Carrillo, Alejandra Montaño Romero, Cuauhtemoc U Gonzalez, Andreea L Turcu, Santiago Vázquez, Edward C Twomey, Vasanthi Jayaraman

Faculty, Staff and Student Publications

Memantine is an US Food and Drug Administration (FDA) approved drug that is thought to selectively inhibit NMDA-subtype of ionotropic glutamate receptors (NMDARs). NMDARs enable calcium influx into neurons and are critical for normal brain function. However, increasing evidence shows that calcium influx in neurological diseases is augmented by calcium-permeable AMPA-subtype ionotropic glutamate receptors (AMPARs). Here, we demonstrate that these calcium-permeable AMPARs (CP-AMPARs) are inhibited by memantine. Electrophysiology unveils that memantine inhibition of CP-AMPARs is dependent on their calcium permeability and the presence of their neuronal auxiliary subunit transmembrane AMPAR regulatory proteins (TARPs). Through cryo-electron microscopy we elucidate that memantine …


Oatp1b1/1b3 Deficiency Exacerbates Hyperbilirubinemia In Erythropoietic Protoporphyria, Ruizhi Gu, Fu-Ying Qin, Luxuan Wang, Jiaojiao Zhang, Jacob Emerson, Qing Ma, Jie Lu, Karl E Anderson, Junmei Wang, Xiaochao Ma Jul 2025

Oatp1b1/1b3 Deficiency Exacerbates Hyperbilirubinemia In Erythropoietic Protoporphyria, Ruizhi Gu, Fu-Ying Qin, Luxuan Wang, Jiaojiao Zhang, Jacob Emerson, Qing Ma, Jie Lu, Karl E Anderson, Junmei Wang, Xiaochao Ma

Faculty, Staff and Student Publications

Erythropoietic protoporphyria (EPP) is caused by loss-of-function mutations in ferrochelatase (FECH), leading to the accumulation of its substrate, protoporphyrin IX (PPIX). PPIX is primarily produced in the bone marrow and transported to the liver for excretion. Because PPIX is hydrophobic, its elevated levels can cause bile duct blockage, cholestatic liver injury, and even liver failure. However, the specific transporter responsible for PPIX uptake into hepatocytes remains unclear. The OATP1B1/1B3 transporters, which are expressed in hepatocytes, facilitate the uptake of coproporphyrin III, a structural analog of PPIX. Additionally, OATP1B1/1B3 mediates the uptake of bilirubin, a biomarker of liver injury, from plasma …


Histone Lysine Methyltransferases Mll3 And Mll4 Direct Gene Expression To Produce Platelets Efficiently, Guozhen Gao, Josimar Dornelas Moreira, Prosun Das, Kevin Lin, Kai Ge, Taiping Chen, Yue Lu, Margarida A Santos Jul 2025

Histone Lysine Methyltransferases Mll3 And Mll4 Direct Gene Expression To Produce Platelets Efficiently, Guozhen Gao, Josimar Dornelas Moreira, Prosun Das, Kevin Lin, Kai Ge, Taiping Chen, Yue Lu, Margarida A Santos

Faculty, Staff and Student Publications

Circulating blood platelets are responsible for maintaining hemostasis. They are released into blood vessels from mature megakaryocytes. Although several transcription factors have been reported to orchestrate the transcriptional programs required for platelet production, how chromatin regulators control these processes is still poorly understood. MLL3 and MLL4 are the main lysine methyltransferases responsible for the deposition of H3K4me1 histone marks at enhancers. MLL3 and MLL4 typically form complexes with other co-factors, such as PTIP. Recently, we showed that loss of PTIP leads to decreased platelet numbers in mice. Here, we find that, although MLL3/4 double deficiency does not alter megakaryopoiesis and …


Crem Is A Regulatory Checkpoint Of Car And Il-15 Signalling In Nk Cells, Hind Rafei, Rafet Basar, Sunil Acharya, Yu-Sung Hsu, Pinghua Liu, Deqiang Zhang, Toszka Bohn, Qingnan Liang, Vakul Mohanty, Ranjan Upadhyay, Ping Li, Pravin Phadatare, Merve Dede, Donghai Xiong, Huihui Fan, Corry Mathew Jones, Sebastian Kunz, May Daher, Ana Karen Nunez Cortes, Mayra Shanley, Bin Liu, Sadie Mae Moseley, Chenyu Zhang, Dexing Fang, Pinaki Banerjee, Nadima Uprety, Ye Li, Rejeena Shrestha, Xinhai Wan, Hong Shen, Vernikka Woods, April Lamour Gilbert, Seema Rawal, Jinzhuang Dou, Yukun Tan, Jeong-Min Park, Francia Reyes Silva, Alexander Biederstädt, Mecit Kaplan, Xin Ru Jiang, Inci Biederstädt, Bijender Kumar, Silvia Tiberti, Madison Moore, Jingling Jin, Ryan Z Yang, Luis Muniz-Feliciano, Samuel Rosemore, Paul Lin, Gary M Deyter, Natalie Wall Fowlkes, Abhinav K Jain, David Marin, Anirban Maitra, Ken Chen, Tobias Bopp, Elizabeth J Shpall, Katayoun Rezvani Jul 2025

Crem Is A Regulatory Checkpoint Of Car And Il-15 Signalling In Nk Cells, Hind Rafei, Rafet Basar, Sunil Acharya, Yu-Sung Hsu, Pinghua Liu, Deqiang Zhang, Toszka Bohn, Qingnan Liang, Vakul Mohanty, Ranjan Upadhyay, Ping Li, Pravin Phadatare, Merve Dede, Donghai Xiong, Huihui Fan, Corry Mathew Jones, Sebastian Kunz, May Daher, Ana Karen Nunez Cortes, Mayra Shanley, Bin Liu, Sadie Mae Moseley, Chenyu Zhang, Dexing Fang, Pinaki Banerjee, Nadima Uprety, Ye Li, Rejeena Shrestha, Xinhai Wan, Hong Shen, Vernikka Woods, April Lamour Gilbert, Seema Rawal, Jinzhuang Dou, Yukun Tan, Jeong-Min Park, Francia Reyes Silva, Alexander Biederstädt, Mecit Kaplan, Xin Ru Jiang, Inci Biederstädt, Bijender Kumar, Silvia Tiberti, Madison Moore, Jingling Jin, Ryan Z Yang, Luis Muniz-Feliciano, Samuel Rosemore, Paul Lin, Gary M Deyter, Natalie Wall Fowlkes, Abhinav K Jain, David Marin, Anirban Maitra, Ken Chen, Tobias Bopp, Elizabeth J Shpall, Katayoun Rezvani

Faculty, Staff and Student Publications

Chimeric antigen receptor (CAR) natural killer (NK) cell immunotherapy offers a promising approach against cancer1-3. However, the molecular mechanisms that regulate CAR-NK cell activity remain unclear. Here we identify the transcription factor cyclic AMP response element modulator (CREM) as a crucial regulator of NK cell function. Transcriptomic analysis revealed a significant induction of CREM in CAR-NK cells during the peak of effector function after adoptive transfer in a tumour mouse model, and this peak coincided with signatures of both activation and dysfunction. We demonstrate that both CAR activation and interleukin-15 signalling rapidly induce CREM upregulation in NK cells. Functionally, CREM …


Cholesterol Metabolism Regulated By Camkk2-Creb Signaling Promotes Castration-Resistant Prostate Cancer, Chenchu Lin, Thomas L Pulliam, Jenny J Han, Jiaqian Xu, Carlos Vera Recio, Sandi R Wilkenfeld, Yan Shi, Manoj Kushwaha, Sarah Bench, Eduardo Ruiz, Sanjanaa Senthilkumar, Jayasurya Dileep, Peter D A Shepherd, Nora M Navone, Albert R Klekers, Elizabeth M Whitley, Michael M Ittmann, Livia S Eberlin, Wenyi Wang, Daniel E Frigo Jun 2025

Cholesterol Metabolism Regulated By Camkk2-Creb Signaling Promotes Castration-Resistant Prostate Cancer, Chenchu Lin, Thomas L Pulliam, Jenny J Han, Jiaqian Xu, Carlos Vera Recio, Sandi R Wilkenfeld, Yan Shi, Manoj Kushwaha, Sarah Bench, Eduardo Ruiz, Sanjanaa Senthilkumar, Jayasurya Dileep, Peter D A Shepherd, Nora M Navone, Albert R Klekers, Elizabeth M Whitley, Michael M Ittmann, Livia S Eberlin, Wenyi Wang, Daniel E Frigo

Faculty, Staff and Student Publications

Castration-resistant prostate cancer (CRPC) remains an incurable disease in need of improved treatments. CAMKK2 is an emerging therapeutic target whose oncogenic effects in prostate cancer have, to date, been largely attributed to its activation of AMP-activated protein kinase (AMPK). Here, we demonstrate that CAMKK2 promotes prostate cancer growth through an alternative downstream pathway involving CAMKI and CREB. Unbiased transcriptomics identify CREB-mediated transcription as a CAMKK2-regulated process, findings that we validate using diverse molecular, genetic, and pharmacological approaches in vitro and in vivo. CAMKK2 promotes CREB phosphorylation/activation through CAMKIα independently of AMPK, CAMKIV, or other CAMKI isoforms. Functionally, the CREB family …


Protocol For Assessing Mobilization Of Peritoneal B Cells To The Pre-Metastatic Omentum In An Orthotopic Mouse Model Of Ovarian Cancer, Wonjae Lee, Hironari Akasaka, Honami Naora Jun 2025

Protocol For Assessing Mobilization Of Peritoneal B Cells To The Pre-Metastatic Omentum In An Orthotopic Mouse Model Of Ovarian Cancer, Wonjae Lee, Hironari Akasaka, Honami Naora

Faculty, Staff and Student Publications

The omentum is a visceral adipose tissue that undergoes dynamic immunological changes prior to and following metastasis. Here, we present a protocol for assessing the mobilization of peritoneal B cells to the pre-metastatic omentum in a mouse ovarian cancer model. We describe steps for isolation and adoptive transfer of peritoneal donor B cells and their detection in the omentum of recipient mice. This protocol could be utilized to study the mobilization of peritoneal B cells to the omentum in other pathological contexts. For complete details on the use and execution of this protocol, please refer to Lee et al.


The Tumor Suppressor Hnrnpk Induces P53-Dependent Nucleolar Stress To Drive Ribosomopathies, Pedro Aguilar-Garrido, María Velasco-Estévez, Miguel Ángel Navarro-Aguadero, Álvaro Otero-Sobrino, Marta Ibáñez-Navarro, Miguel Ángel Marugal, María Hernández-Sánchez, Prerna Malaney, Ashley Rodriguez, Oscar Benitez, Xiaroui Zhang, Marisa Jl Aitken, Alejandra Ortiz-Ruiz, Diego Megías, Manuel Pérez, Gadea Mata, Jesús Gomez, Miguel Lafarga, Orlando Domínguez, Osvaldo Graña-Castro, Eduardo Caleiras, Pilar Ximénez-Embun, Marta Isasa, Paloma Jimena De Andres, Sandra Rodríguez-Perales, Raúl Torres-Ruiz, Enrique Revilla, Rosa María García-Martín, Daniel Azorín, Josune Zubicaray, Julián Sevilla, Oleksandra Sirozh, Vanesa Lafarga, Joaquín Martínez-López, Sean M Post, Miguel Gallardo Jun 2025

The Tumor Suppressor Hnrnpk Induces P53-Dependent Nucleolar Stress To Drive Ribosomopathies, Pedro Aguilar-Garrido, María Velasco-Estévez, Miguel Ángel Navarro-Aguadero, Álvaro Otero-Sobrino, Marta Ibáñez-Navarro, Miguel Ángel Marugal, María Hernández-Sánchez, Prerna Malaney, Ashley Rodriguez, Oscar Benitez, Xiaroui Zhang, Marisa Jl Aitken, Alejandra Ortiz-Ruiz, Diego Megías, Manuel Pérez, Gadea Mata, Jesús Gomez, Miguel Lafarga, Orlando Domínguez, Osvaldo Graña-Castro, Eduardo Caleiras, Pilar Ximénez-Embun, Marta Isasa, Paloma Jimena De Andres, Sandra Rodríguez-Perales, Raúl Torres-Ruiz, Enrique Revilla, Rosa María García-Martín, Daniel Azorín, Josune Zubicaray, Julián Sevilla, Oleksandra Sirozh, Vanesa Lafarga, Joaquín Martínez-López, Sean M Post, Miguel Gallardo

Faculty, Staff and Student Publications

The nucleolus is a membraneless organelle and an excellent stress sensor. Any changes in its architecture or composition lead to nucleolar stress, resulting in cell cycle arrest and interruption of ribosomal activity, critical factors in aging and cancer. In this study, we identified and described the pivotal role of the RNA-binding protein HNRNPK in ribosome and nucleolar dynamics. We developed an in vitro model of endogenous HNRNPK overexpression and an in vivo mouse model of ubiquitous HNRNPK overexpression. These models showed disruptions in translation as the HNRNPK overexpression caused alterations in the nucleolar structure, resulting in p53-dependent nucleolar stress, cell …


Type I Interferon Protects Against Bone Loss In Periodontitis By Mitigating An Interleukin (Il)-17-Neutrophil Axis, Jinmei Zhang, Qiong Ding, Angela X Wang, Maoxuan Lin, Ning Yu, Kevin Moss, Megumi A Williamson, Di Miao, Julie T Marchesan, Erliang Zeng, Wei Shi, Hongli Sun, Yu Leo Lei, Shaoping Zhang Jun 2025

Type I Interferon Protects Against Bone Loss In Periodontitis By Mitigating An Interleukin (Il)-17-Neutrophil Axis, Jinmei Zhang, Qiong Ding, Angela X Wang, Maoxuan Lin, Ning Yu, Kevin Moss, Megumi A Williamson, Di Miao, Julie T Marchesan, Erliang Zeng, Wei Shi, Hongli Sun, Yu Leo Lei, Shaoping Zhang

Faculty, Staff and Student Publications

Type I interferons (IFNs-I), a group of pleiotropic cytokines, critically modulate host response in various inflammatory diseases. However, the role of the IFN-I pathway in periodontitis remains largely unknown. In this report, we describe that the IFN-β levels in the gingival crevicular fluid of human subjects were negatively associated with periodontitis and clinical gingival inflammation. Disruption of IFN-I signaling worsened alveolar bone resorption in a ligature-induced periodontitis murine model. Deficiency of the IFN-I pathway resulted in an exaggerated inflammatory response in myeloid cells and drastically increased the interleukin-17 (IL-17)-mediated neutrophil recruitment in the gingiva. We further identified that the myeloid …


Virus Against Cancer: Paradigm-Shifting Biological Concepts, Dong Ho Shin, Marta M Alonso, Candelaria Gomez-Manzano, Juan Fueyo Jun 2025

Virus Against Cancer: Paradigm-Shifting Biological Concepts, Dong Ho Shin, Marta M Alonso, Candelaria Gomez-Manzano, Juan Fueyo

Faculty, Staff and Student Publications

Purpose of review: Virotherapy has emerged as a promising approach to cancer treatment. Over the past two decades, early-phase clinical trials have demonstrated the safety and promising efficacy of virotherapy in subsets of cancer patients. However, a significant knowledge gap needs to be filled to propel the field further and achieve substantial anti-cancer benefits for more than the current 10-20% of treated patients. This article reviews the most relevant current challenges in cancer virotherapy.

Recent findings: Recent clinical observations suggest that patients who respond to virotherapy experience a shift in their immune response from an initial or concomitant response against …


Integrated Metabolomics And Spatial Transcriptomics Of Cystic Pancreatic Cancer Precursors Reveals Dysregulated Polyamine Metabolism As A Biomarker Of Progression, Ricardo A León-Letelier, Yihui Chen, Rongzhang Dou, Ehsan Irajizad, Michele T Yip-Schneider, Ranran Wu, Rahmah Ejaz, Hamid K Rudsari, Yaxi Li, Rachelle Spencer, Riccardo Ballarò, Jody Vykoukal, Mark Hurd, Jennifer B Dennison, Kim-Anh Do, Anirban Maitra, Jianjun Zhang, Samir Hanash, C Max Schmidt, Johannes F Fahrmann Jun 2025

Integrated Metabolomics And Spatial Transcriptomics Of Cystic Pancreatic Cancer Precursors Reveals Dysregulated Polyamine Metabolism As A Biomarker Of Progression, Ricardo A León-Letelier, Yihui Chen, Rongzhang Dou, Ehsan Irajizad, Michele T Yip-Schneider, Ranran Wu, Rahmah Ejaz, Hamid K Rudsari, Yaxi Li, Rachelle Spencer, Riccardo Ballarò, Jody Vykoukal, Mark Hurd, Jennifer B Dennison, Kim-Anh Do, Anirban Maitra, Jianjun Zhang, Samir Hanash, C Max Schmidt, Johannes F Fahrmann

Faculty, Staff and Student Publications

Purpose: We conducted metabolomics and spatial cell transcriptomics of intraductal papillary mucinous neoplasms (IPMN), recognized pancreatic cancer precursors, to identify oncometabolites that inform upon risk of malignancy of IPMNs.

Experimental design: Untargeted metabolomic analyses were performed on cystic fluid from 125 patients with low-grade (LG) dysplasia or high-grade (HG) dysplasia with/without concurrent pancreatic ductal adenocarcinoma (PDAC; IPMN/PDAC). Predictive performance of individual metabolites for identifying HG or PDAC/IPMN was determined and compared with CA19-9 performance. Data were intersected with metabolic profiles of resected IPMN tissues and murine Kras;Gnas IPMN cell lines as well as spatial and single-cell transcriptomics of IPMNs.

Results: …


Sickle Cell Disease Induces Chromatin Introversion And Ferroptosis In Cd8+ T Cells To Suppress Anti-Tumor Immunity, Zilong Zhao, Benxia Hu, Yalan Deng, Melinda Soeung, Jun Yao, Lanxin Bei, Yaohua Zhang, Pengju Gong, Lisa A Huang, Zhou Jiang, Jian Gao, Shuang Peng, Tina K Nguyen, Menuka Karki, Bora Lim, Cassian Yee, Jared K Burks, Qing Zhang, Li Ma, Jianjun Gao, Nizar M Tannir, Leng Han, Dihua Yu, Linghua Wang, Michael A Curran, Maria A Gubbiotti, Giannicola Genovese, Boyi Gan, Wenbo Li, Pavlos Msaouel, Liuqing Yang, Chunru Lin Jun 2025

Sickle Cell Disease Induces Chromatin Introversion And Ferroptosis In Cd8+ T Cells To Suppress Anti-Tumor Immunity, Zilong Zhao, Benxia Hu, Yalan Deng, Melinda Soeung, Jun Yao, Lanxin Bei, Yaohua Zhang, Pengju Gong, Lisa A Huang, Zhou Jiang, Jian Gao, Shuang Peng, Tina K Nguyen, Menuka Karki, Bora Lim, Cassian Yee, Jared K Burks, Qing Zhang, Li Ma, Jianjun Gao, Nizar M Tannir, Leng Han, Dihua Yu, Linghua Wang, Michael A Curran, Maria A Gubbiotti, Giannicola Genovese, Boyi Gan, Wenbo Li, Pavlos Msaouel, Liuqing Yang, Chunru Lin

Faculty, Staff and Student Publications

Understanding how genetic disorders affect CD8+ T cells in the tumor microenvironment is key to improving cancer immunotherapy. Individuals with sickle cell disease (SCD), the most prevalent inherited blood disorder, have a higher risk of developing certain cancers than the general population, but the mechanisms driving this increased risk remain unclear. Our study revealed that SCD altered CD8+ T cell 3D genome architecture, triggering ferroptosis and weakening anti-tumor immunity, thereby promoting tumor growth. Using murine and humanized SCD models, we found that disrupted chromosomal interactions in CD8+ T cells reduced the expression of anti-ferroptotic genes, including SLC7A11 and hydrogen sulfide …


Arid4b: An Orchestrator From Stem Cell Fate To Carcinogenesis, Rakhee Rathnam Kalari Kandy, Madan Kumar Arumugam, Mukesh Pratap Yadav, Bibhuti Bhusan Mishra, Jyotika Sharma Jun 2025

Arid4b: An Orchestrator From Stem Cell Fate To Carcinogenesis, Rakhee Rathnam Kalari Kandy, Madan Kumar Arumugam, Mukesh Pratap Yadav, Bibhuti Bhusan Mishra, Jyotika Sharma

Faculty, Staff and Student Publications

All biological processes, from embryonic development to cancer, are tightly controlled by the interactions between genetics and epigenetics. An array of epigenetic modifications, such as DNA methylation, histone/chromatin modifications, and noncoding RNA-mediated targeting, are essential to regulate the heritable changes that occur during multiple cellular processes. A failure in proper regulation results in inappropriate gene expression that ultimately leads to pathological states. Groundbreaking advances in genomics and transcriptomics have revealed the potential involvement of epigenetics in various physiological and pathological states. The promising clinical and preclinical results shown by epigenetics drugs further underscore the central role of epigenetics in multiple …


Sickle Cell Disease Induces Chromatin Introversion And Ferroptosis In Cd8+ T Cells To Suppress Anti-Tumor Immunity, Zilong Zhao, Benxia Hu, Yalan Deng, Melinda Soeung, Jun Yao, Lanxin Bei, Yaohua Zhang, Pengju Gong, Lisa A Huang, Zhou Jiang, Jian Gao, Shuang Peng, Tina K Nguyen, Menuka Karki, Bora Lim, Cassian Yee, Jared K Burks, Qing Zhang, Li Ma, Jianjun Gao, Nizar M Tannir, Leng Han, Dihua Yu, Linghua Wang, Michael A Curran, Maria A Gubbiotti, Giannicola Genovese, Boyi Gan, Wenbo Li, Pavlos Msaouel, Liuqing Yang, Chunru Lin Jun 2025

Sickle Cell Disease Induces Chromatin Introversion And Ferroptosis In Cd8+ T Cells To Suppress Anti-Tumor Immunity, Zilong Zhao, Benxia Hu, Yalan Deng, Melinda Soeung, Jun Yao, Lanxin Bei, Yaohua Zhang, Pengju Gong, Lisa A Huang, Zhou Jiang, Jian Gao, Shuang Peng, Tina K Nguyen, Menuka Karki, Bora Lim, Cassian Yee, Jared K Burks, Qing Zhang, Li Ma, Jianjun Gao, Nizar M Tannir, Leng Han, Dihua Yu, Linghua Wang, Michael A Curran, Maria A Gubbiotti, Giannicola Genovese, Boyi Gan, Wenbo Li, Pavlos Msaouel, Liuqing Yang, Chunru Lin

Faculty, Staff and Student Publications

Understanding how genetic disorders affect CD8


Radiotherapy Promotes Cuproptosis And Synergizes With Cuproptosis Inducers To Overcome Tumor Radioresistance, Guang Lei, Mingchuang Sun, Jun Cheng, Rui Ye, Zhengze Lu, Amber Horbath, David Huo, Shengrong Wu, Anagha Alapati, Sadhna Aggarwal, Zhihao Xu, Chao Mao, Yuelong Yan, Jun Yao, Qidong Li, Xiong Chen, Hyemin Lee, Li Zhuang, Dadi Jiang, Apar Pataer, Jack A Roth, Nicholas Navin, Albert C Koong, Mingjian James You, Steven H Lin, Boyi Gan Jun 2025

Radiotherapy Promotes Cuproptosis And Synergizes With Cuproptosis Inducers To Overcome Tumor Radioresistance, Guang Lei, Mingchuang Sun, Jun Cheng, Rui Ye, Zhengze Lu, Amber Horbath, David Huo, Shengrong Wu, Anagha Alapati, Sadhna Aggarwal, Zhihao Xu, Chao Mao, Yuelong Yan, Jun Yao, Qidong Li, Xiong Chen, Hyemin Lee, Li Zhuang, Dadi Jiang, Apar Pataer, Jack A Roth, Nicholas Navin, Albert C Koong, Mingjian James You, Steven H Lin, Boyi Gan

Faculty, Staff and Student Publications

Cuproptosis is a recently identified form of copper-dependent cell death. Here, we reveal that radiotherapy (RT) induces cuproptosis in cancer cells, independent of apoptosis and ferroptosis, and depletes lipoylated proteins and iron-sulfur (Fe-S) cluster proteins-both hallmarks of cuproptosis-in patient tumors. Mechanistically, RT elevates mitochondrial copper levels by upregulating copper transporter 1 (CTR1) and depleting mitochondrial glutathione, a copper chelator, thereby triggering cuproptosis. Integrated analyses of RNA sequencing (RNA-seq) from radioresistant esophageal cancer cells and single-cell RNA-seq from esophageal tumors of patients unresponsive to RT link radioresistance to the downregulation of BTB and CNC homology 1 (BACH1). This downregulation de-represses the …


Spatial And Multiomics Analysis Of Human And Mouse Lung Adenocarcinoma Precursors Reveals Tim-3 As A Putative Target For Precancer Interception, Bo Zhu, Pingjun Chen, Muhammad Aminu, Jian-Rong Li, Junya Fujimoto, Yanhua Tian, Lingzhi Hong, Hong Chen, Xin Hu, Chenyang Li, Natalie Vokes, Andre L Moreira, Don L Gibbons, Luisa M Solis Soto, Edwin Roger Parra Cuentas, Ou Shi, Songhui Diao, Jie Ye, Frank R Rojas, Eduardo Vilar, Anirban Maitra, Ken Chen, Nicolas Navin, Monique Nilsson, Beibei Huang, Simon Heeke, Jianhua Zhang, Cara L Haymaker, Vamsidhar Velcheti, Daniel H Sterman, Veena Kochat, William I Padron, Ludmil B Alexandrov, Zhubo Wei, Xiuning Le, Linghua Wang, Junya Fukuoka, J Jack Lee, Ignacio I Wistuba, Harvey I Pass, Mark Davis, Samir Hanash, Chao Cheng, Steven Dubinett, Avrum Spira, Kunal Rai, Scott M Lippman, P Andrew Futreal, John V Heymach, Alexandre Reuben, Jia Wu, Jianjun Zhang Jun 2025

Spatial And Multiomics Analysis Of Human And Mouse Lung Adenocarcinoma Precursors Reveals Tim-3 As A Putative Target For Precancer Interception, Bo Zhu, Pingjun Chen, Muhammad Aminu, Jian-Rong Li, Junya Fujimoto, Yanhua Tian, Lingzhi Hong, Hong Chen, Xin Hu, Chenyang Li, Natalie Vokes, Andre L Moreira, Don L Gibbons, Luisa M Solis Soto, Edwin Roger Parra Cuentas, Ou Shi, Songhui Diao, Jie Ye, Frank R Rojas, Eduardo Vilar, Anirban Maitra, Ken Chen, Nicolas Navin, Monique Nilsson, Beibei Huang, Simon Heeke, Jianhua Zhang, Cara L Haymaker, Vamsidhar Velcheti, Daniel H Sterman, Veena Kochat, William I Padron, Ludmil B Alexandrov, Zhubo Wei, Xiuning Le, Linghua Wang, Junya Fukuoka, J Jack Lee, Ignacio I Wistuba, Harvey I Pass, Mark Davis, Samir Hanash, Chao Cheng, Steven Dubinett, Avrum Spira, Kunal Rai, Scott M Lippman, P Andrew Futreal, John V Heymach, Alexandre Reuben, Jia Wu, Jianjun Zhang

Faculty, Staff and Student Publications

How tumor microenvironment shapes lung adenocarcinoma (LUAD) precancer evolution remains poorly understood. Spatial immune profiling of 114 human LUAD and LUAD precursors reveals a progressive increase of adaptive response and a relative decrease of innate immune response as LUAD precursors progress. The immune evasion features align the immune response patterns at various stages. TIM-3-high features are enriched in LUAD precancers, which decrease in later stages. Furthermore, single-cell RNA sequencing (scRNA-seq) and spatial immune and transcriptomics profiling of LUAD and LUAD precursor specimens from 5 mouse models validate high TIM-3 features in LUAD precancers. In vivo TIM-3 blockade at precancer stage, …


Radiotherapy Promotes Cuproptosis And Synergizes With Cuproptosis Inducers To Overcome Tumor Radioresistance, Guang Lei, Mingchuang Sun, Jun Cheng, Rui Ye, Zhengze Lu, Amber Horbath, David Huo, Shengrong Wu, Anagha Alapati, Sadhna Aggarwal, Zhihao Xu, Chao Mao, Yuelong Yan, Jun Yao, Qidong Li, Xiong Chen, Hyemin Lee, Li Zhuang, Dadi Jiang, Apar Pataer, Jack A Roth, Nicholas Navin, Albert C Koong, Mingjian James You, Steven H Lin, Boyi Gan Jun 2025

Radiotherapy Promotes Cuproptosis And Synergizes With Cuproptosis Inducers To Overcome Tumor Radioresistance, Guang Lei, Mingchuang Sun, Jun Cheng, Rui Ye, Zhengze Lu, Amber Horbath, David Huo, Shengrong Wu, Anagha Alapati, Sadhna Aggarwal, Zhihao Xu, Chao Mao, Yuelong Yan, Jun Yao, Qidong Li, Xiong Chen, Hyemin Lee, Li Zhuang, Dadi Jiang, Apar Pataer, Jack A Roth, Nicholas Navin, Albert C Koong, Mingjian James You, Steven H Lin, Boyi Gan

Faculty, Staff and Student Publications

Cuproptosis is a recently identified form of copper-dependent cell death. Here, we reveal that radiotherapy (RT) induces cuproptosis in cancer cells, independent of apoptosis and ferroptosis, and depletes lipoylated proteins and iron-sulfur (Fe-S) cluster proteins-both hallmarks of cuproptosis-in patient tumors. Mechanistically, RT elevates mitochondrial copper levels by upregulating copper transporter 1 (CTR1) and depleting mitochondrial glutathione, a copper chelator, thereby triggering cuproptosis. Integrated analyses of RNA sequencing (RNA-seq) from radioresistant esophageal cancer cells and single-cell RNA-seq from esophageal tumors of patients unresponsive to RT link radioresistance to the downregulation of BTB and CNC homology 1 (BACH1). This downregulation de-represses the …


Loss Of Function Of The Zinc Finger Homeobox 4 Gene, Zfhx4, Underlies A Neurodevelopmental Disorder, María Del Rocío Pérez Baca, María Palomares-Bralo, Michiel Vanhooydonck, Lisa Hamerlinck, Eva D'Haene, Sebastian Leimbacher, Eva Z Jacobs, Laurenz De Cock, Erika D'Haenens, Annelies Dheedene, Zoë Malfait, Lies Vantomme, Ananilia Silva, Kathleen Rooney, Xiaonan Zhao, Amir Hossein Saeidian, Nichole Marie Owen, Fernando Santos-Simarro, Roser Lleuger-Pujol, Sixto García-Miñaúr, Itsaso Losantos-García, Björn Menten, Gaia Gestri, Nicola Ragge, Bekim Sadikovic, Elke Bogaert, Kris Vleminckx, Thomas Naert, Delfien Syx, Bert Callewaert, Sarah Vergult Jun 2025

Loss Of Function Of The Zinc Finger Homeobox 4 Gene, Zfhx4, Underlies A Neurodevelopmental Disorder, María Del Rocío Pérez Baca, María Palomares-Bralo, Michiel Vanhooydonck, Lisa Hamerlinck, Eva D'Haene, Sebastian Leimbacher, Eva Z Jacobs, Laurenz De Cock, Erika D'Haenens, Annelies Dheedene, Zoë Malfait, Lies Vantomme, Ananilia Silva, Kathleen Rooney, Xiaonan Zhao, Amir Hossein Saeidian, Nichole Marie Owen, Fernando Santos-Simarro, Roser Lleuger-Pujol, Sixto García-Miñaúr, Itsaso Losantos-García, Björn Menten, Gaia Gestri, Nicola Ragge, Bekim Sadikovic, Elke Bogaert, Kris Vleminckx, Thomas Naert, Delfien Syx, Bert Callewaert, Sarah Vergult

Faculty, Staff and Students Publications

8q21.11 microdeletions involving ZFHX4 have previously been associated with a syndromic form of intellectual disability, hypotonia, unstable gait, and hearing loss. We report on 63 individuals-57 probands and 6 affected family members-with protein-truncating variants (n = 41), (micro)deletions (n = 21), or an inversion (n = 1) affecting ZFHX4. Probands display variable developmental delay and intellectual disability, distinctive facial characteristics, morphological abnormalities of the central nervous system, behavioral alterations, short stature, hypotonia, and occasionally cleft palate and anterior segment dysgenesis. The phenotypes associated with 8q21.11 microdeletions and ZFHX4 intragenic loss-of-function (LoF) variants largely overlap, although leukocyte-derived DNA shows a mild …


Swi/Snf Atpase Silenced Hlf Potentiates Lung Metastasis In Solid Cancers, Jin Zhou, Austin Hepperla, Jeremy M Simon, Kangsan Kim, Qing Hu, Chuanhai Zhang, Lei Dong, Lianxin Hu, Cheng Zhang, Chengheng Liao, Alice Fang, Yayoi Adachi, Haoyong Fu, Tao Wang, Qian Liang, Fangzhou Zhao, Hongyi Liu, Masashi Takeda, Jun Fang, Hua Zhong, Peter Ly, Lu Wang, Payal Kapur, Lin Xu, Liwei Jia, Srinivas Malladi, James Brugarolas, M Celeste Simon, Bo Li, Qing Zhang Jun 2025

Swi/Snf Atpase Silenced Hlf Potentiates Lung Metastasis In Solid Cancers, Jin Zhou, Austin Hepperla, Jeremy M Simon, Kangsan Kim, Qing Hu, Chuanhai Zhang, Lei Dong, Lianxin Hu, Cheng Zhang, Chengheng Liao, Alice Fang, Yayoi Adachi, Haoyong Fu, Tao Wang, Qian Liang, Fangzhou Zhao, Hongyi Liu, Masashi Takeda, Jun Fang, Hua Zhong, Peter Ly, Lu Wang, Payal Kapur, Lin Xu, Liwei Jia, Srinivas Malladi, James Brugarolas, M Celeste Simon, Bo Li, Qing Zhang

Faculty, Staff and Student Publications

Metastasis is the main cause of cancer-related deaths, yet the underlying mechanisms remain elusive. Here, using clear cell renal cell carcinoma (ccRCC), a tumor type with frequent lung metastases, we conduct an in vivo genome-wide CRISPR-Cas9 screen and identify HLF as a potent suppressor of lung metastasis. HLF depletion enhances ccRCC cell migration and lung metastasis, whereas HLF overexpression abrogates these effects. In ccRCC patients, HLF expression is reduced at metastatic sites and associates with epigenetic silencing mediated by the SWI/SNF ATPase subunit BRG1. HLF levels negatively correlate with migration potential in collagen. Mechanistically, HLF regulates LPXN expression, modulating the …