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Articles 811 - 840 of 7165
Full-Text Articles in Entire DC Network
Non-Invasive Tools For Analysis Of Plasma Membrane Protein Topology In Living Cells, Daria Savenkova, Leysan Bulatova, Vera Skripova, Ramziya Kiyamova, Mikhail Bogdanov
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
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 …
Targeting Cdk2 And Other Novel Cell Cycle Targets For Breast Cancer Therapy, Mei-Kuang Chen, Linjie Luo, Nicole Massoumi, Khandan Keyomarsi
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
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 …
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
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 …
Wnt-Directed Cxcl12-Expressing Apical Papilla Progenitor Cells Drive Tooth Root Formation, Mizuki Nagata, Gaurav T Gadhvi, Taishi Komori, Yuki Arai, Hiroaki Manabe, Angel Ka Yan Chu, Ramandeep Kaur, Meer Ali, Yuntao Yang, Chiaki Tsutsumi-Arai, Yuta Nakai, Yuki Matsushita, Nicha Tokavanich, W Jim Zheng, Joshua D Welch, Noriaki Ono, Wanida Ono
Wnt-Directed Cxcl12-Expressing Apical Papilla Progenitor Cells Drive Tooth Root Formation, Mizuki Nagata, Gaurav T Gadhvi, Taishi Komori, Yuki Arai, Hiroaki Manabe, Angel Ka Yan Chu, Ramandeep Kaur, Meer Ali, Yuntao Yang, Chiaki Tsutsumi-Arai, Yuta Nakai, Yuki Matsushita, Nicha Tokavanich, W Jim Zheng, Joshua D Welch, Noriaki Ono, Wanida Ono
Faculty, Staff and Student Publications
The tooth root is a critical component of the tooth anchored to surrounding alveolar bones. Tooth root formation is driven by cells in the apical papilla (AP) that generate new dentin-forming odontoblasts at the root-forming front. Mesenchymal stem cells have been isolated from AP for regenerative use; however, how AP cells physiologically coordinate tooth root formation remains undefined. We find that CXCL12+ cells emerge in AP under hypoxic environments at the onset of tooth root formation. Using Cxcl12-creER-based cell-lineage analysis, we further find that CXCL12+ AP cells contribute not only to odontoblasts but also to cementum-forming cementoblasts of the elongating …
Memantine Inhibits Calcium-Permeable Ampa Receptors, Elisa Carrillo, Alejandra Montaño Romero, Cuauhtemoc U Gonzalez, Andreea L Turcu, Santiago Vázquez, Edward C Twomey, Vasanthi Jayaraman
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 …
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
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
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 …
A Lysosomal Surveillance Response To Stress Extends Healthspan, Terytty Yang Li, Arwen W Gao, Rendan Yang, Yu Sun, Yuxuan Lei, Xiaoxu Li, Lin Chen, Yasmine J Liu, Rachel N Arey, Kimberly Morales, Raya B Liu, Wenzheng Wang, Ang Zhou, Tong-Jin Zhao, Weisha Li, Amélia Lalou, Qi Wang, Tanes Lima, Riekelt H Houtkooper, Johan Auwerx
A Lysosomal Surveillance Response To Stress Extends Healthspan, Terytty Yang Li, Arwen W Gao, Rendan Yang, Yu Sun, Yuxuan Lei, Xiaoxu Li, Lin Chen, Yasmine J Liu, Rachel N Arey, Kimberly Morales, Raya B Liu, Wenzheng Wang, Ang Zhou, Tong-Jin Zhao, Weisha Li, Amélia Lalou, Qi Wang, Tanes Lima, Riekelt H Houtkooper, Johan Auwerx
Faculty, Staff and Students Publications
Lysosomes are cytoplasmic organelles central for the degradation of macromolecules to maintain cellular homoeostasis and health. However, how lysosomal activity can be boosted to counteract ageing and ageing-related diseases remains elusive. Here we reveal that silencing specific vacuolar H+-ATPase subunits (for example, vha-6), which are essential for intestinal lumen acidification in Caenorhabditis elegans, extends lifespan by ~60%. This longevity phenotype can be explained by an adaptive transcriptional response typified by induction of a set of transcripts involved in lysosomal function and proteolysis, which we termed the lysosomal surveillance response (LySR). LySR activation is characterized by boosted lysosomal activity …
Inhibition Of The Gsk3Β/Nav16 Complex Suppresses Early-Stage Alzheimer’S Hyperexcitability, Timothy John Baumgartner, Manuel Silva-Pérez, Zahra Haghighijoo, Nolan Michael Dvorak, Aditya Kumar Singh, Nana Aboadwe Goode, Jully Singh, Berenice Gutierrez Grebenkova, Mate Marosi, Jessica Di Re, Leandra Koff, Wissarut Wijitrmektong, Manu Bala, Hanyue Liao, Marijn Lijffijt, Adam Thomas Szafran, Michael James Bolt, Michael A Mancini, Gregory D Cuny, Diana Shu-Lian Chow, Agenor Limon, Jeannie Chin, Fernanda Laezza
Inhibition Of The Gsk3Β/Nav16 Complex Suppresses Early-Stage Alzheimer’S Hyperexcitability, Timothy John Baumgartner, Manuel Silva-Pérez, Zahra Haghighijoo, Nolan Michael Dvorak, Aditya Kumar Singh, Nana Aboadwe Goode, Jully Singh, Berenice Gutierrez Grebenkova, Mate Marosi, Jessica Di Re, Leandra Koff, Wissarut Wijitrmektong, Manu Bala, Hanyue Liao, Marijn Lijffijt, Adam Thomas Szafran, Michael James Bolt, Michael A Mancini, Gregory D Cuny, Diana Shu-Lian Chow, Agenor Limon, Jeannie Chin, Fernanda Laezza
Faculty, Staff and Students Publications
Introduction: Network hyperexcitability (NH) is observed in patients with early-stage Alzheimer's disease (AD), emerging decades before cognitive decline. A key molecular determinant of NH is voltage-gated Na+ channel 1.6 (Nav1.6), which mediates action potential firing in CA1 hippocampal neurons. Ameliorating NH through inhibition of the glycogen-synthase kinase 3β (GSK3β/Nav1.6 complex may provide immediate benefits to cognition and memory and slow AD progression.
Methods: Hight-throughput virtual screening and multiple in vitro biological assays were utilized to identify compound 1063. Patch-clamp electrophysiology and electroencephalogram recordings were utilized to functionally assess 1063 in models of AD neuropathology.
Results: Building on previous studies identifying …
Functional Regulation Of Macrophages By Ces1d-Mediated Lipid Signaling In Immunometabolism, Long J Shao, Fathima Elizondo, Feng Gao, Rabie Habib, Xin Li, Katherine Pham, Jazmin Ysaguirre, Maryam Elizondo, Shirindokht Shirazi, Kristin L Eckel-Mahan, Sean Hartig, Huaizhu Wu, Kai Sun
Functional Regulation Of Macrophages By Ces1d-Mediated Lipid Signaling In Immunometabolism, Long J Shao, Fathima Elizondo, Feng Gao, Rabie Habib, Xin Li, Katherine Pham, Jazmin Ysaguirre, Maryam Elizondo, Shirindokht Shirazi, Kristin L Eckel-Mahan, Sean Hartig, Huaizhu Wu, Kai Sun
Faculty, Staff and Student Publications
Objective: Macrophage accumulation in metabolically active tissues during obesity is common in both animals and humans, but the lipid signaling mechanisms that trigger macrophage inflammation remain unclear. This study investigates the role of Ces1d, an unconventional lipase, in regulating macrophage inflammation under nutritional stress.
Methods: A myeloid-specific Ces1d knockout (LysM-Cre-Ces1d floxed/floxed, KO) mouse model was used for the studies. For in vitro tests, bone marrow-derived macrophages (BMDMs) from control (Ces1d floxed/floxed, WT) and KO mice were assessed for migration, polarization, and activation. For in vivo experiments, WT and KO mice were induced to obesity via a high-fat diet (HFD) and …
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
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. …
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
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 …
Projection-Tags Enable Multiplex Projection Tracing And Multi-Modal Profiling Of Projection Neurons, Lite Yang, Fang Liu, Hannah Hahm, Takao Okuda, Xiaoyue Li, Yufen Zhang, Vani Kalyanaraman, Monique R Heitmeier, Vijay K Samineni
Projection-Tags Enable Multiplex Projection Tracing And Multi-Modal Profiling Of Projection Neurons, Lite Yang, Fang Liu, Hannah Hahm, Takao Okuda, Xiaoyue Li, Yufen Zhang, Vani Kalyanaraman, Monique R Heitmeier, Vijay K Samineni
2020-Current year OA Pubs
Single-cell multiomic techniques have sparked immense interest in developing a comprehensive multi-modal map of diverse neuronal cell types and their brain-wide projections. However, investigating the complex wiring diagram, spatial organization, transcriptional, and epigenetic landscapes of brain-wide projection neurons is hampered by the lack of efficient and easily adoptable tools. Here we introduce Projection-TAGs, a retrograde AAV platform that allows multiplex tagging of projection neurons using RNA barcodes. By using Projection-TAGs, we performed multiplex projection tracing of the cortex and high-throughput single-cell profiling of the transcriptional and epigenetic landscapes of the cortical projection neurons in female mice. Projection-TAGs can be leveraged …
Role Of Kctd13 In Modulating Ar And Sox9 Expression In Different Penile Cell Populations, Carolina J Jorgez, Ahmed Chahdi, Hunter Flores, Marisol O'Neill, Abhishek Seth
Role Of Kctd13 In Modulating Ar And Sox9 Expression In Different Penile Cell Populations, Carolina J Jorgez, Ahmed Chahdi, Hunter Flores, Marisol O'Neill, Abhishek Seth
Faculty, Staff and Students Publications
Objective: Micropenis is a condition with significant physical and psychological implications caused mainly by decreased androgen action in penile development. Kctd13-knockout (Kctd13-KO) mice have micropenis, cryptorchidism, and fertility defects because of reduced levels of androgen receptor (AR) and SOX9. We hypothesized that normalizing the levels of AR and SOX9 in the Kctd13-KO penis could help us to understand the mechanism of action of these signaling pathways on penile development.
Methods: We generated transgenic mice lacking Kctd13 and conditionally expressing AR in the urethral mesenchyme after Cre activation with Twist2cre (Kctd13-KO; AR-CMV; Twist2cre; herein called AR+), and Sox9 in the urethral …
Fgf21 Promotes Longevity In Diet-Induced Obesity Through Metabolic Benefits Independent Of Growth Suppression, Christy M Gliniak, Ruth Gordillo, Yun-Hee Youm, Qian Lin, Clair Crewe, Zhuzhen Zhang, Bianca C Field, Teppei Fujikawa, Megan Virostek, Shangang Zhao, Yi Zhu, Clifford J Rosen, Tamas L Horvath, Vishwa Deep Dixit, Philipp E Scherer
Fgf21 Promotes Longevity In Diet-Induced Obesity Through Metabolic Benefits Independent Of Growth Suppression, Christy M Gliniak, Ruth Gordillo, Yun-Hee Youm, Qian Lin, Clair Crewe, Zhuzhen Zhang, Bianca C Field, Teppei Fujikawa, Megan Virostek, Shangang Zhao, Yi Zhu, Clifford J Rosen, Tamas L Horvath, Vishwa Deep Dixit, Philipp E Scherer
Faculty, Staff and Students Publications
Approximately 35% of US adults over 65 are obese, highlighting the need for therapies targeting age-related metabolic issues. Fibroblast growth factor 21 (FGF21), a hormone mainly produced by the liver, improves metabolism and extends lifespan. To explore its effects without developmental confounders, we generated mice with adipocyte-specific FGF21 overexpression beginning in adulthood. When fed a high-fat diet, these mice lived up to 3.3 years, resisted weight gain, improved insulin sensitivity, and showed reduced liver steatosis. Aged transgenic mice also displayed lower levels of inflammatory immune cells and lipotoxic ceramides in visceral adipose tissue, benefits that occurred even in the absence …
Emergence Of Cellular Nematic Order Is A Conserved Feature Of Gastrulation In Animal Embryos, Xin Li, Robert J Huebner, Margot L K Williams, Jessica Sawyer, Mark Peifer, John B Wallingford, D Thirumalai
Emergence Of Cellular Nematic Order Is A Conserved Feature Of Gastrulation In Animal Embryos, Xin Li, Robert J Huebner, Margot L K Williams, Jessica Sawyer, Mark Peifer, John B Wallingford, D Thirumalai
Faculty, Staff and Students Publications
Cells undergo dramatic morphological changes during embryogenesis, yet how these changes affect the formation of ordered tissues remains elusive. Here, we show that a phase transition leading to the formation of a nematic liquid crystal state during gastrulation in the development of embryos of fish, frogs, and fruit flies occurs by a common mechanism despite substantial differences between these evolutionarily distant animals. Importantly, nematic order forms early before any discernible changes in the shapes of cells. All three species exhibit similar propagation of the nematic phase, reminiscent of nucleation and growth mechanisms. The spatial correlations in the nematic phase in …
Functional Assays In Drosophila Facilitate Classification Of Variants Of Uncertain Significance Associated With Rare Diseases, Jung-Wan Mok, Shelley B Gibson, Haley A Dostalik, Shinya Yamamoto
Functional Assays In Drosophila Facilitate Classification Of Variants Of Uncertain Significance Associated With Rare Diseases, Jung-Wan Mok, Shelley B Gibson, Haley A Dostalik, Shinya Yamamoto
Faculty, Staff and Students Publications
Individuals living with rare diseases often undergo a frustrating and expensive diagnostic odyssey. Clinical geneticists who analyze exome or genome sequencing data from rare disease patients often encounter a list of variants of uncertain significance (VUS) in known disease-causing genes or rare variants in genes of uncertain significance (GUS) that are difficult to interpret, even with the integration of the latest bioinformatic tools. In this Perspective, we review how studies using the fruit fly Drosophila melanogaster have facilitated rare disease diagnosis by uncovering the clinical relevance of GUS and classifying rare variants into specific allelic categories (loss-of-function or gain-of-function, Muller's …
Ad-Sge-Dkk3 Gene Therapy Overcomes Resistance To Immune Checkpoint Blockade In Pleural Mesothelioma, Hee-Jin Jang, Meera Patel, Daniel Y Wang, Sung Wook Kang, Jong Min Choi, Claire Lee, Monica Vilchis, Ji Seon Shim, Sonali Mitra, Priyanka Ranchod, Allen Kuncheria, William Hudson, Peter Jindra, Veronica Lenge De Rosen, Maheshwari Ramineni, Ernest Ramsay Camp, Farrah Kheradmand, R Taylor Ripley, Shawn S Groth, Hyun-Sung Lee, Bryan M Burt
Ad-Sge-Dkk3 Gene Therapy Overcomes Resistance To Immune Checkpoint Blockade In Pleural Mesothelioma, Hee-Jin Jang, Meera Patel, Daniel Y Wang, Sung Wook Kang, Jong Min Choi, Claire Lee, Monica Vilchis, Ji Seon Shim, Sonali Mitra, Priyanka Ranchod, Allen Kuncheria, William Hudson, Peter Jindra, Veronica Lenge De Rosen, Maheshwari Ramineni, Ernest Ramsay Camp, Farrah Kheradmand, R Taylor Ripley, Shawn S Groth, Hyun-Sung Lee, Bryan M Burt
Faculty, Staff and Students Publications
Purpose: Immune checkpoint inhibitors (ICI) have limited efficacy in pleural mesothelioma. We investigated the role of Dickkopf WNT signaling pathway inhibitor 3 (DKK3) in overcoming treatment resistance.
Patients and methods: We performed preclinical studies to elucidate DKK3's role in ICI-resistant mouse mesothelioma. Based on these findings, we conducted a single-arm, phase II clinical trial of a combination of Ad-SGE-DKK3 and nivolumab for chemotherapy-refractory epithelioid pleural mesothelioma, with the objective response rate as the primary outcome.
Results: DKK3 was significantly reduced in human epithelioid mesothelioma. Overexpression of DKK3 in cancer cells activated the p53 pathway, enhanced glycolysis, increased surface PD-L1, and …
Glioblastoma-Instructed Astrocytes Suppress Tumour-Specific T Cell Immunity, Camilo Faust Akl, Brian M Andersen, Zhaorong Li, Federico Giovannoni, Martin Diebold, Liliana M Sanmarco, Michael Kilian, Luca Fehrenbacher, Florian Pernin, Joseph M Rone, Hong-Gyun Lee, Gavin Piester, Jessica E Kenison, Joon-Hyuk Lee, Tomer Illouz, Carolina M Polonio, Léna Srun, Jazmin Martinez, Elizabeth N Chung, Anton Schüle, Agustin Plasencia, Lucinda Li, Kylynne Ferrara, Mercedes Lewandrowski, Craig A Strathdee, Lorena Lerner, Christophe Quéva, Iain C Clark, Benjamin Deneen, Judy Lieberman, David H Sherr, Jack P Antel, Michael A Wheeler, Keith L Ligon, E Antonio Chiocca, Marco Prinz, David A Reardon, Francisco J Quintana
Glioblastoma-Instructed Astrocytes Suppress Tumour-Specific T Cell Immunity, Camilo Faust Akl, Brian M Andersen, Zhaorong Li, Federico Giovannoni, Martin Diebold, Liliana M Sanmarco, Michael Kilian, Luca Fehrenbacher, Florian Pernin, Joseph M Rone, Hong-Gyun Lee, Gavin Piester, Jessica E Kenison, Joon-Hyuk Lee, Tomer Illouz, Carolina M Polonio, Léna Srun, Jazmin Martinez, Elizabeth N Chung, Anton Schüle, Agustin Plasencia, Lucinda Li, Kylynne Ferrara, Mercedes Lewandrowski, Craig A Strathdee, Lorena Lerner, Christophe Quéva, Iain C Clark, Benjamin Deneen, Judy Lieberman, David H Sherr, Jack P Antel, Michael A Wheeler, Keith L Ligon, E Antonio Chiocca, Marco Prinz, David A Reardon, Francisco J Quintana
Faculty, Staff and Students Publications
Glioblastoma is the most common and aggressive primary brain cancer and shows minimal response to therapies. The immunosuppressive tumour microenvironment in glioblastoma contributes to the limited therapeutic response. Astrocytes are abundant in the central nervous system and have important immunoregulatory roles. However, little is known about their role in the immune response to glioblastoma1. Here we used single-cell and bulk RNA sequencing of clinical glioblastoma samples and samples from preclinical models, multiplexed immunofluorescence, in vivo CRISPR-based cell-specific genetic perturbations and in vitro mouse and human experimental systems to address this gap in knowledge. We identified an astrocyte subset …
Genetic Structuring And Estimation Of Reproductive Adults In Onchocerca Volvulus: A Genome-Wide Analysis Across Hosts And Regions, Pawan Kumar, Young-Jun Choi, Kerstin Fischer, Shannon M. Hedtke, Anusha Kode, Nicholas Opoku, Lincoln Gankpala, Tony O. Ukety, Jöel Lonema Mande, Timothy J. C. Anderson, Warwick N. Grant, Peter U. Fischer, Makedonka Mitreva
Genetic Structuring And Estimation Of Reproductive Adults In Onchocerca Volvulus: A Genome-Wide Analysis Across Hosts And Regions, Pawan Kumar, Young-Jun Choi, Kerstin Fischer, Shannon M. Hedtke, Anusha Kode, Nicholas Opoku, Lincoln Gankpala, Tony O. Ukety, Jöel Lonema Mande, Timothy J. C. Anderson, Warwick N. Grant, Peter U. Fischer, Makedonka Mitreva
2020-Current year OA Pubs
Genomic analysis of parasites can deepen our understanding of their transmission, population structure, and important biological characteristics. Onchocerciasis (river blindness), caused by the parasitic nematode Onchocerca volvulus, involves adult worms residing in subcutaneous nodules that produce larval-stage microfilariae (mf), which are routinely detected in the skin for diagnosis. Whole-genome studies of mf are limited; most analyses have focused on the mitochondrial genome. We conducted a genome-wide analysis with 94% median nuclear genome coverage, analyzing 171, 37, and 98 mf from 16, 3, and 5 individuals from Ghana, Liberia, and the Democratic Republic of Congo, respectively. These data were used to …
The Loss Of Opa1 Accelerates Intervertebral Disc Degeneration And Osteoarthritis In Aged Mice, Vedavathi Madhu, Miriam Hernandaz-Meadows, Ashley Coleman, Kimheak Sao, Kameron Inguito, Owen Haslam, Paige K Boneski, Hiromi Sesaki, Ruteja A Barve, John A Collins, Makarand V Risbud
The Loss Of Opa1 Accelerates Intervertebral Disc Degeneration And Osteoarthritis In Aged Mice, Vedavathi Madhu, Miriam Hernandaz-Meadows, Ashley Coleman, Kimheak Sao, Kameron Inguito, Owen Haslam, Paige K Boneski, Hiromi Sesaki, Ruteja A Barve, John A Collins, Makarand V Risbud
2020-Current year OA Pubs
Recent studies have highlighted the importance of mitochondria in NP cells and articular chondrocyte health. Since the understanding of mechanisms governing mitochondrial dynamics in these tissues is lacking, we investigated the role of OPA1, a mitochondrial fusion protein, in their homeostasis. OPA1 knockdown in NP cells altered mitochondrial size and cristae shape and increased the oxygen consumption rate. OPA1 governed the morphology of multiple organelles, including peroxisomes, early endosomes and cis-Golgi and loss resulted in the dysregulation of autophagy. Metabolic profiling and
Exploitable Mechanisms Of Antibody And Car Mediated Macrophage Cytotoxicity, Tianyi Liu, Alexander B Kim, Young Ah Goo, Minsoo Son, Jaenyeon Kim, Carl J Deselm, Et Al.
Exploitable Mechanisms Of Antibody And Car Mediated Macrophage Cytotoxicity, Tianyi Liu, Alexander B Kim, Young Ah Goo, Minsoo Son, Jaenyeon Kim, Carl J Deselm, Et Al.
2020-Current year OA Pubs
Macrophages infiltrate solid tumors and either support survival or induce cancer cell death through phagocytosis or cytotoxicity. To uncover regulators of macrophage cytotoxicity towards cancer cells, we perform two co-culture CRISPR screens using CAR-macrophages targeting different tumor associated antigens. Both identify ATG9A as an important regulator of this cytotoxic activity. In vitro and in vivo, ATG9A depletion in cancer cells sensitizes them to macrophage-mediated killing. Proteomic and lipidomic analyses reveal that ATG9A deficiency impairs the cancer cell response to macrophage-induced plasma membrane damage through defective lysosomal exocytosis, reduced ceramide production, and disrupted caveolar endocytosis. Depleting non-cytotoxic macrophages using CSF1R inhibition …
Decoding Metastatic Microenvironments Through Single-Cell Omics Reveals New Insights Into Niche Dynamics And Tumor Evolution, Fengshuo Liu, Xiang H-F Zhang
Decoding Metastatic Microenvironments Through Single-Cell Omics Reveals New Insights Into Niche Dynamics And Tumor Evolution, Fengshuo Liu, Xiang H-F Zhang
Faculty, Staff and Students Publications
Metastasis is the predominant cause of cancer mortality, primarily driven by complex tumor-host interactions within specialized metastatic niches. Recent advances in single-cell technologies have provided unprecedented insights into metastatic niche formation, evolution and function, including how primary tumors precondition distant organs for metastases and how disseminated tumor cells dynamically interact with host cells to modulate their environments. Integrated single-cell studies across multiple cancer types have also revealed divergent and convergent metastatic adaptation strategies. These findings collectively highlight metastasis as a dynamic, cooperative process shaped by intricate tumor-host interactions, and provide a foundation for novel therapeutic strategies targeting components of the …
Microbial Biosensor For Sensing And Treatment Of Intestinal Inflammation, Duolong Zhu, Jeffrey Galley, Jason Pizzini, Elena Musteata, Martin V Douglas, Walter J Chazin, Eric P Skaar, Jeffrey J Tabor, Robert A Britton
Microbial Biosensor For Sensing And Treatment Of Intestinal Inflammation, Duolong Zhu, Jeffrey Galley, Jason Pizzini, Elena Musteata, Martin V Douglas, Walter J Chazin, Eric P Skaar, Jeffrey J Tabor, Robert A Britton
Faculty, Staff and Students Publications
Synthetic biology has enabled the development of biosensors to detect intestinal inflammation, yet few target the clinically validated biomarker of intestinal inflammation calprotectin with both diagnostic and therapeutic capabilities. Here, an optimized calprotectin biosensor is presented that leverages a zinc uptake regulator (Zur) controlled promoter coupled with a memory circuit to detect and record intestinal inflammation in vivo. The level of biosensor activation strongly correlates with calprotectin levels in the colon of two independent mouse models of colitis. Coupling of the biosensor with the production of the anti-inflammatory cytokine IL10 allowed for the resolution of chemically induced colitis, demonstrating the …
Inhibition Of Srebp-1c Rescues Hepatic Cyp7b1 Expression And Bile Acid Synthesis In Malnourished Mice, Xiaoyang Wan, Krishnakant G Soni, Jong Min Choi, Sun Yun Jung, Margaret E Conner, Geoffrey A Preidis
Inhibition Of Srebp-1c Rescues Hepatic Cyp7b1 Expression And Bile Acid Synthesis In Malnourished Mice, Xiaoyang Wan, Krishnakant G Soni, Jong Min Choi, Sun Yun Jung, Margaret E Conner, Geoffrey A Preidis
Faculty, Staff and Students Publications
Malnutrition decreases intestinal bile acids, resulting in inefficient nutrient absorption and impaired catch-up growth. Mechanisms by which bile acid depletion occurs in malnutrition are unknown. Using a mouse model of early-life malnutrition, we explored bile acid homeostasis, focusing on transcriptional repression of CYP7B1, a rate-limiting enzyme in the alternative pathway of bile acid biosynthesis, by SREBP-1c, a master regulator of lipid metabolism. Mice were maintained on a low-protein low-fat or isocaloric control chow until eight weeks of age when livers were harvested for proteome profiling, western blot, RT-qPCR, and chromatin immunoprecipitation. Cultured hepatocytes and mice were treated with the SREBP-1c …
Endothelium- And Fibroblast-Derived C-Type Natriuretic Peptide Prevents The Development And Progression Of Aortic Aneurysm, Aisah A Aubdool, Amie J Moyes, Cristina Perez-Ternero, Reshma S Baliga, Jaspinder Singh Sanghera, M Taaha Syed, Kareemah Jaigirdar, Anmolpreet K Panesar, Janice C Tsui, Yanming Li, Hernan G Vasquez, Ying H Shen, Scott A Lemaire, Juliette Raffort, Ziad Mallat, Hong S Lu, Alan Daugherty, Adrian J Hobbs
Endothelium- And Fibroblast-Derived C-Type Natriuretic Peptide Prevents The Development And Progression Of Aortic Aneurysm, Aisah A Aubdool, Amie J Moyes, Cristina Perez-Ternero, Reshma S Baliga, Jaspinder Singh Sanghera, M Taaha Syed, Kareemah Jaigirdar, Anmolpreet K Panesar, Janice C Tsui, Yanming Li, Hernan G Vasquez, Ying H Shen, Scott A Lemaire, Juliette Raffort, Ziad Mallat, Hong S Lu, Alan Daugherty, Adrian J Hobbs
Faculty, Staff and Students Publications
Background: Thoracic (TAA) and abdominal (AAA) aortic aneurysm are life-threatening diseases characterized by dilation, inflammation, and structural weakness; development of pharmacological therapies is desperately needed. CNP (C-type natriuretic peptide) plays a key role in vascular homeostasis, mediating vasodilator, anti-inflammatory, and antiatherogenic actions. Since such processes drive AA, we determined the role of endogenous CNP in offsetting pathogenesis.
Methods: Tissue from patients with AA was analyzed to determine the consequences on CNP signaling. Ascending and suprarenal aortic diameters were assessed at baseline and following Ang II (angiotensin II; 1.44 mg/kg per day) infusion in wild-type, endothelium-restricted (ecCNP-/-), fibroblast-restricted (fbCNP-/-), global CNP …
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
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 …
Monoclonal Antibodies Targeting The Fimh Adhesin Protect Against Uropathogenic E. Coli Uti, Edward D B Lopatto, Jesús M Santiago-Borges, Denise A Sanick, Sameer Kumar Malladi, Philippe N Azimzadeh, Morgan W Timm, Isabella F Fox, Aaron J Schmitz, Jackson S Turner, Shaza M Sayed Ahmed, Lillian Ortinau, Nathaniel C Gualberto, Jerome S Pinkner, Karen W Dodson, Ali H Ellebedy, Andrew L Kau, Scott J Hultgren
Monoclonal Antibodies Targeting The Fimh Adhesin Protect Against Uropathogenic E. Coli Uti, Edward D B Lopatto, Jesús M Santiago-Borges, Denise A Sanick, Sameer Kumar Malladi, Philippe N Azimzadeh, Morgan W Timm, Isabella F Fox, Aaron J Schmitz, Jackson S Turner, Shaza M Sayed Ahmed, Lillian Ortinau, Nathaniel C Gualberto, Jerome S Pinkner, Karen W Dodson, Ali H Ellebedy, Andrew L Kau, Scott J Hultgren
2020-Current year OA Pubs
As antimicrobial resistance increases, urinary tract infections (UTIs) are expected to pose an increased burden in morbidity and expense on the health care system, increasing the need for alternative antibiotic-sparing treatments. Most UTIs are caused by uropathogenic