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Articles 31 - 60 of 166
Full-Text Articles in Medical Cell Biology
Prioritization Of Kidney Cell Types Highlights Myofibroblast Cells In Regulating Human Blood Pressure, Mahboube Ganji-Arjenaki, Zoha Kamali, International Consortium Of Blood Pressure; Soroush Sardari, Soroush Sardari, Martin De Borst, Harold Snieder, Ahmad Vaez
Prioritization Of Kidney Cell Types Highlights Myofibroblast Cells In Regulating Human Blood Pressure, Mahboube Ganji-Arjenaki, Zoha Kamali, International Consortium Of Blood Pressure; Soroush Sardari, Soroush Sardari, Martin De Borst, Harold Snieder, Ahmad Vaez
Faculty, Staff and Student Publications
INTRODUCTION: Blood pressure (BP) is a highly heritable trait with over 2000 underlying genomic loci identified to date. Although the kidney plays a key role, little is known about specific cell types involved in the genetic regulation of BP.
METHODS: Here, we applied stratified linkage disequilibrium score (LDSC) regression to connect BP genome-wide association studies (GWAS) results to specific cell types of the mature human kidney. We used the largest single-stage BP genome-wide analysis to date, including up to 1,028,980 adults of European ancestry, and single-cell transcriptomic data from 14 mature human kidneys, with mean age of 41 years.
RESULTS: …
Endothelial-Specific Telomerase Inactivation Causes Telomere-Independent Cell Senescence And Multi-Organ Dysfunction Characteristic Of Aging, Zhanguo Gao, Rafael Bravo Santos, Joseph Rupert, Rachel Van Drunen, Yongmei Yu, Kristin Eckel-Mahan, Mikhail G Kolonin
Endothelial-Specific Telomerase Inactivation Causes Telomere-Independent Cell Senescence And Multi-Organ Dysfunction Characteristic Of Aging, Zhanguo Gao, Rafael Bravo Santos, Joseph Rupert, Rachel Van Drunen, Yongmei Yu, Kristin Eckel-Mahan, Mikhail G Kolonin
Faculty, Staff and Student Publications
It has remained unclear how aging of endothelial cells (EC) contributes to pathophysiology of individual organs. Cell senescence results in part from inactivation of telomerase (TERT). Here, we analyzed mice with Tert knockout specifically in EC. Tert loss in EC induced transcriptional changes indicative of senescence and tissue hypoxia in EC and in other cells. We demonstrate that EC-Tert-KO mice have leaky blood vessels. The blood-brain barrier of EC-Tert-KO mice is compromised, and their cognitive function is impaired. EC-Tert-KO mice display reduced muscle endurance and decreased expression of enzymes responsible for oxidative metabolism. Our data indicate that Tert-KO EC have …
Stmnd1 Is A Phylogenetically Ancient Stathmin Which Localizes To Motile Cilia And Exhibits Nuclear Translocation That Is Inhibited When Soluble Tubulin Concentration Increases, Xiang Deng, Bryan O Seguinot, Gary Bradshaw, Jong Suk Lee, Shannon Coy, Marian Kalocsay, Sandro Santagata, Timothy Mitchison
Stmnd1 Is A Phylogenetically Ancient Stathmin Which Localizes To Motile Cilia And Exhibits Nuclear Translocation That Is Inhibited When Soluble Tubulin Concentration Increases, Xiang Deng, Bryan O Seguinot, Gary Bradshaw, Jong Suk Lee, Shannon Coy, Marian Kalocsay, Sandro Santagata, Timothy Mitchison
Faculty, Staff and Student Publications
Stathmins are small, unstructured proteins that bind tubulin dimers and are implicated in several human diseases, but whose function remains unknown. We characterized a new stathmin, STMND1 (Stathmin Domain Containing 1) as the human representative of an ancient subfamily. STMND1 features a N-terminal myristoylated and palmitoylated motif which directs it to membranes and a tubulin-binding stathmin-like domain (SLD) that contains an internal nuclear localization signal. Biochemistry and proximity labeling showed that STMND1 binds tubulin, and live imaging showed that tubulin binding inhibits translocation from cellular membranes to the nucleus. STMND1 is highly expressed in multiciliated epithelial cells, where it localizes …
Ras G-Domains Allosterically Contribute To The Recognition Of Lipid Headgroups And Acyl Chains, Neha Arora, Huanwen Mu, Hong Liang, Wenting Zhao, Yong Zhou
Ras G-Domains Allosterically Contribute To The Recognition Of Lipid Headgroups And Acyl Chains, Neha Arora, Huanwen Mu, Hong Liang, Wenting Zhao, Yong Zhou
Faculty, Staff and Student Publications
Mutant RAS are major contributors to cancer and signal primarily from nanoclusters on the plasma membrane (PM). Their C-terminal membrane anchors are main features of membrane association. However, the same RAS isoform bound to different guanine nucleotides spatially segregate. Different RAS nanoclusters all enrich a phospholipid, phosphatidylserine (PS). These findings suggest more complex membrane interactions. Our electron microscopy-spatial analysis shows that wild-types, G12V mutants, and membrane anchors of isoforms HRAS, KRAS4A, and KRAS4B prefer distinct PS species. Mechanistically, reorientation of KRAS4B G-domain exposes distinct residues, such as Arg 135 in orientation state 1 (OS1) and Arg 73/Arg 102 in OS2, …
Modeling Acute Myocardial Infarction And Cardiac Fibrosis Using Human Induced Pluripotent Stem Cell-Derived Multi-Cellular Heart Organoids, Myeongjin Song, Da Bin Choi, Jeong Suk Im, Ye Na Song, Ji Hyun Kim, Hanbyeol Lee, Jieun An, Ami Kim, Hwan Choi, Joon-Chul Kim, Choongseong Han, Young Keul Jeon, Sung Joon Kim, Dong-Hun Woo
Modeling Acute Myocardial Infarction And Cardiac Fibrosis Using Human Induced Pluripotent Stem Cell-Derived Multi-Cellular Heart Organoids, Myeongjin Song, Da Bin Choi, Jeong Suk Im, Ye Na Song, Ji Hyun Kim, Hanbyeol Lee, Jieun An, Ami Kim, Hwan Choi, Joon-Chul Kim, Choongseong Han, Young Keul Jeon, Sung Joon Kim, Dong-Hun Woo
Faculty, Staff and Student Publications
Heart disease involves irreversible myocardial injury that leads to high morbidity and mortality rates. Numerous cell-based cardiac in vitro models have been proposed as complementary approaches to non-clinical animal research. However, most of these approaches struggle to accurately replicate adult human heart conditions, such as myocardial infarction and ventricular remodeling pathology. The intricate interplay between various cell types within the adult heart, including cardiomyocytes, fibroblasts, and endothelial cells, contributes to the complexity of most heart diseases. Consequently, the mechanisms behind heart disease induction cannot be attributed to a single-cell type. Thus, the use of multi-cellular models becomes essential for creating …
Kras Allelic Variants In Biliary Tract Cancers, Gordon Taylor Moffat, Zishuo Ian Hu, Funda Meric-Bernstam, Elisabeth Kathleen Kong, Dean Pavlick, Jeffrey S Ross, Karthikeyan Murugesan, Lawrence Kwong, Anaemy Danner De Armas, Anil Korkut, Milind Javle, Jennifer J Knox
Kras Allelic Variants In Biliary Tract Cancers, Gordon Taylor Moffat, Zishuo Ian Hu, Funda Meric-Bernstam, Elisabeth Kathleen Kong, Dean Pavlick, Jeffrey S Ross, Karthikeyan Murugesan, Lawrence Kwong, Anaemy Danner De Armas, Anil Korkut, Milind Javle, Jennifer J Knox
Faculty, Staff and Student Publications
IMPORTANCE: Biliary tract cancers (BTCs) contain several actionable molecular alterations, including FGFR2, IDH1, ERBB2 (formerly HER2), and KRAS. KRAS allelic variants are found in 20% to 30% of BTCs, and multiple KRAS inhibitors are currently under clinical investigation.
OBJECTIVES: To describe the genomic landscape, co-sequence variations, immunophenotype, genomic ancestry, and survival outcomes of KRAS-mutated BTCs and to calculate the median overall survival (mOS) for the most common allelic variants.
DESIGN, SETTING, AND PARTICIPANTS: This retrospective, multicenter, pooled cohort study obtained clinical and next-generation sequencing data from multiple databases between January 1, 2017, and December 31, 2022. These databases included Princess …
Chromosomal 3q Amplicon Encodes Essential Regulators Of Secretory Vesicles That Drive Secretory Addiction In Cancer, Xiaochao Tan, Shike Wang, Guan-Yu Xiao, Chao Wu, Xin Liu, Biyao Zhou, Jiang Yu, Dzifa Yawa Duose, Yuanxin Xi, Jing Wang, Kunika Gupta, Apar Pataer, Jack A Roth, Michael P Kim, Fengju Chen, Chad J Creighton, William K Russell, Jonathan M Kurie
Chromosomal 3q Amplicon Encodes Essential Regulators Of Secretory Vesicles That Drive Secretory Addiction In Cancer, Xiaochao Tan, Shike Wang, Guan-Yu Xiao, Chao Wu, Xin Liu, Biyao Zhou, Jiang Yu, Dzifa Yawa Duose, Yuanxin Xi, Jing Wang, Kunika Gupta, Apar Pataer, Jack A Roth, Michael P Kim, Fengju Chen, Chad J Creighton, William K Russell, Jonathan M Kurie
Faculty, Staff and Student Publications
Cancer cells exhibit heightened secretory states that drive tumor progression. Here, we identify a chromosome 3q amplicon that serves as a platform for secretory regulation in cancer. The 3q amplicon encodes multiple Golgi-resident proteins, including the scaffold Golgi integral membrane protein 4 (GOLIM4) and the ion channel ATPase Secretory Pathway Ca2+ Transporting 1 (ATP2C1). We show that GOLIM4 recruits ATP2C1 and Golgi phosphoprotein 3 (GOLPH3) to coordinate calcium-dependent cargo loading and Golgi membrane bending and vesicle scission. GOLIM4 depletion disrupts the protein complex, resulting in a secretory blockade that inhibits the progression of 3q-amplified malignancies. In addition to its role …
The Swi/Snf Atp-Dependent Chromatin Remodeling Complex In Cell Lineage Priming And Early Development, Dhurjhoti Saha, Srinivas Animireddy, Blaine Bartholomew
The Swi/Snf Atp-Dependent Chromatin Remodeling Complex In Cell Lineage Priming And Early Development, Dhurjhoti Saha, Srinivas Animireddy, Blaine Bartholomew
Faculty, Staff and Student Publications
ATP dependent chromatin remodelers have pivotal roles in transcription, DNA replication and repair, and maintaining genome integrity. SWI/SNF remodelers were first discovered in yeast genetic screens for factors involved in mating type switching or for using alternative energy sources therefore termed SWI/SNF complex (short for SWItch/Sucrose NonFermentable). The SWI/SNF complexes utilize energy from ATP hydrolysis to disrupt histone-DNA interactions and shift, eject, or reposition nucleosomes making the underlying DNA more accessible to specific transcription factors and other regulatory proteins. In development, SWI/SNF orchestrates the precise activation and repression of genes at different stages, safe guards the formation of specific cell …
Jennifer A Wargo, Nadim J Ajami, And Carrie R Daniel-Macdougall, Jennifer A Wargo, Nadim J Ajami, Carrie R Daniel-Macdougall
Jennifer A Wargo, Nadim J Ajami, And Carrie R Daniel-Macdougall, Jennifer A Wargo, Nadim J Ajami, Carrie R Daniel-Macdougall
Faculty, Staff and Student Publications
Dr. Jennifer A. Wargo, Dr. Nadim J. Ajami, and Dr. Carrie R. Daniel-MacDougall describe their academic and clinical work on the role of the microbiome to determine response to immunotherapies and discuss current challenges and potential needs to integrate their findings into clinical practice.
Genome-Wide Screening Identifies Trim33 As An Essential Regulator Of Dendritic Cell Differentiation, Ioanna Tiniakou, Pei-Feng Hsu, Lorena S Lopez-Zepeda, Görkem Garipler, Eduardo Esteva, Nicholas M Adams, Geunhyo Jang, Chetna Soni, Colleen M Lau, Fan Liu, Alireza Khodadadi-Jamayran, Tori C Rodrick, Drew Jones, Aristotelis Tsirigos, Uwe Ohler, Mark T Bedford, Stephen D Nimer, Vesa Kaartinen, Esteban O Mazzoni, Boris Reizis
Genome-Wide Screening Identifies Trim33 As An Essential Regulator Of Dendritic Cell Differentiation, Ioanna Tiniakou, Pei-Feng Hsu, Lorena S Lopez-Zepeda, Görkem Garipler, Eduardo Esteva, Nicholas M Adams, Geunhyo Jang, Chetna Soni, Colleen M Lau, Fan Liu, Alireza Khodadadi-Jamayran, Tori C Rodrick, Drew Jones, Aristotelis Tsirigos, Uwe Ohler, Mark T Bedford, Stephen D Nimer, Vesa Kaartinen, Esteban O Mazzoni, Boris Reizis
Faculty, Staff and Student Publications
The development of dendritic cells (DCs), including antigen-presenting conventional DCs (cDCs) and cytokine-producing plasmacytoid DCs (pDCs), is controlled by the growth factor Flt3 ligand (Flt3L) and its receptor Flt3. We genetically dissected Flt3L-driven DC differentiation using CRISPR-Cas9-based screening. Genome-wide screening identified multiple regulators of DC differentiation including subunits of TSC and GATOR1 complexes, which restricted progenitor growth but enabled DC differentiation by inhibiting mTOR signaling. An orthogonal screen identified the transcriptional repressor Trim33 (TIF-1γ) as a regulator of DC differentiation. Conditional targeting in vivo revealed an essential role of Trim33 in the development of all DCs, but not of monocytes …
Human Brain Glycoform Coregulation Network And Glycan Modification Alterations In Alzheimer's Disease, Qi Zhang, Cheng Ma, Lih-Shen Chin, Sheng Pan, Lian Li
Human Brain Glycoform Coregulation Network And Glycan Modification Alterations In Alzheimer's Disease, Qi Zhang, Cheng Ma, Lih-Shen Chin, Sheng Pan, Lian Li
Faculty, Staff and Student Publications
Despite the importance of protein glycosylation to brain health, current knowledge of glycosylated proteoforms or glycoforms in human brain and their alterations in Alzheimer's disease (AD) is limited. Here, we report a proteome-wide glycoform profiling study of human AD and control brains using intact glycopeptide-based quantitative glycoproteomics coupled with systems biology. Our study identified more than 10,000 human brain N-glycoforms from nearly 1200 glycoproteins and uncovered disease signatures of altered glycoforms and glycan modifications, including reduced sialylation and N-glycan branching and elongation as well as elevated mannosylation and N-glycan truncation in AD. Network analyses revealed a higher-order organization of brain …
The Saga Of E Faecium, Rishika Prasad, Robert R Jenq
The Saga Of E Faecium, Rishika Prasad, Robert R Jenq
Faculty, Staff and Student Publications
An enzyme that remodels the cell wall of Enterococcus faecium helps these gut bacteria to divide and generate peptide fragments that enhance the immune response against cancer.
Identification Of Novel F2-Isoprostane Metabolites By Specific Udp-Glucuronosyltransferases, Ginger L Milne, Marina S Nogueira, Benlian Gao, Stephanie C Sanchez, Warda Amin, Sarah Thomas, Camille Oger, Jean-Marie Galano, Harvey J Murff, Gong Yang, Thierry Durand
Identification Of Novel F2-Isoprostane Metabolites By Specific Udp-Glucuronosyltransferases, Ginger L Milne, Marina S Nogueira, Benlian Gao, Stephanie C Sanchez, Warda Amin, Sarah Thomas, Camille Oger, Jean-Marie Galano, Harvey J Murff, Gong Yang, Thierry Durand
Faculty, Staff and Student Publications
UDP-glucuronosyltransferases (UGTs) catalyze the conjugation of glucuronic acid with endogenous and exogenous lipophilic small molecules to facilitate their inactivation and excretion from the body. This represents approximately 35 % of all phase II metabolic transformations. Fatty acids and their oxidized eicosanoid derivatives can be metabolized by UGTs. F2-isoprostanes (F2-IsoPs) are eicosanoids formed from the free radical oxidation of arachidonic acid. These molecules are potent vasoconstrictors and are widely used as biomarkers of endogenous oxidative damage. An increasing body of evidence demonstrates the efficacy of measuring the β-oxidation metabolites of F2-IsoPs rather than the unmetabolized F2-IsoPs to quantify oxidative damage in …
Transcriptomic, Proteomic, And Genomic Mutational Fraction Differences Based On Hpv Status Observed In Patient-Derived Xenograft Models Of Penile Squamous Cell Carcinoma, Niki M Zacharias, Luis Segarra, Keiko Akagi, Natalie Wall Fowlkes, Huiqin Chen, Angelita Alaniz, Carolyn De La Cerda, Pedro Pesquera, Yuanxin Xi, Jing Wang, Jad Chahoud, Xin Lu, Priya Rao, Magaly Martinez-Ferrer, Curtis A Pettaway
Transcriptomic, Proteomic, And Genomic Mutational Fraction Differences Based On Hpv Status Observed In Patient-Derived Xenograft Models Of Penile Squamous Cell Carcinoma, Niki M Zacharias, Luis Segarra, Keiko Akagi, Natalie Wall Fowlkes, Huiqin Chen, Angelita Alaniz, Carolyn De La Cerda, Pedro Pesquera, Yuanxin Xi, Jing Wang, Jad Chahoud, Xin Lu, Priya Rao, Magaly Martinez-Ferrer, Curtis A Pettaway
Faculty, Staff and Student Publications
Simple Summary
Penile cancer is a rare but aggressive cancer. After it metastasizes, the median survival time is less than 12 months. The overall response rate to common first-line combination chemotherapy treatments is approximately 50%. There is an urgent need in advanced-penile-cancer treatment to find novel therapies that would generate better response rates than standard chemotherapy thus far and have less toxicity. Partially due to its rarity, there are few animal models and cell lines of penile cancer. We report on the generation of seven penile cancer animal models that were created by directly implanting human tumor tissue into immunocompromised …
Uchl1 Is A Potential Molecular Indicator And Therapeutic Target For Neuroendocrine Carcinomas, Shiqin Liu, Timothy Chai, Fernando Garcia-Marques, Qingqing Yin, En-Chi Hsu, Michelle Shen, Angus Martin Shaw Toland, Abel Bermudez, Alifiani B Hartono, Christopher F Massey, Chung S Lee, Liwei Zheng, Maya Baron, Caden J Denning, Merve Aslan, Holly M Nguyen, Rosalie Nolley, Amina Zoubeidi, Millie Das, Christian A Kunder, Brooke E Howitt, H Tom Soh, Irving L Weissman, Michael A Liss, Arnold I Chin, James D Brooks, Eva Corey, Sharon J Pitteri, Jiaoti Huang, Tanya Stoyanova
Uchl1 Is A Potential Molecular Indicator And Therapeutic Target For Neuroendocrine Carcinomas, Shiqin Liu, Timothy Chai, Fernando Garcia-Marques, Qingqing Yin, En-Chi Hsu, Michelle Shen, Angus Martin Shaw Toland, Abel Bermudez, Alifiani B Hartono, Christopher F Massey, Chung S Lee, Liwei Zheng, Maya Baron, Caden J Denning, Merve Aslan, Holly M Nguyen, Rosalie Nolley, Amina Zoubeidi, Millie Das, Christian A Kunder, Brooke E Howitt, H Tom Soh, Irving L Weissman, Michael A Liss, Arnold I Chin, James D Brooks, Eva Corey, Sharon J Pitteri, Jiaoti Huang, Tanya Stoyanova
Faculty, Staff and Student Publications
Neuroendocrine carcinomas, such as neuroendocrine prostate cancer and small-cell lung cancer, commonly have a poor prognosis and limited therapeutic options. We report that ubiquitin carboxy-terminal hydrolase L1 (UCHL1), a deubiquitinating enzyme, is elevated in tissues and plasma from patients with neuroendocrine carcinomas. Loss of UCHL1 decreases tumor growth and inhibits metastasis of these malignancies. UCHL1 maintains neuroendocrine differentiation and promotes cancer progression by regulating nucleoporin, POM121, and p53. UCHL1 binds, deubiquitinates, and stabilizes POM121 to regulate POM121-associated nuclear transport of E2F1 and c-MYC. Treatment with the UCHL1 inhibitor LDN-57444 slows tumor growth and metastasis across neuroendocrine carcinomas. The combination of …
Mutant P53 Protects Triple-Negative Breast Adenocarcinomas From Ferroptosis In Vivo, Denada Dibra, Shunbin Xiong, Sydney M Moyer, Adel K El-Naggar, Yuan Qi, Xiaoping Su, Elisabeth K Kong, Anil Korkut, Guillermina Lozano
Mutant P53 Protects Triple-Negative Breast Adenocarcinomas From Ferroptosis In Vivo, Denada Dibra, Shunbin Xiong, Sydney M Moyer, Adel K El-Naggar, Yuan Qi, Xiaoping Su, Elisabeth K Kong, Anil Korkut, Guillermina Lozano
Faculty, Staff and Student Publications
The TP53 tumor suppressor gene is mutated early in most of the patients with triple-negative breast cancer (TNBC). The most frequent TP53 alterations are missense mutations that contribute to tumor aggressiveness. Here, we used an autochthonous somatic TNBC mouse model, in which mutant p53 can be toggled on and off genetically while leaving the tumor microenvironment intact and wild-type for p53 to identify physiological dependencies on mutant p53. In TNBCs that develop in this model, deletion of two different hotspot p53R172H and p53R245W mutants triggers ferroptosis in vivo, a cell death mechanism involving iron-dependent lipid peroxidation. Mutant p53 protects cells …
Inter-Individual Variations In Circadian Misalignment-Induced Nafld Pathophysiology In Mice, Nobuya Koike, Yasuhiro Umemura, Hitoshi Inokawa, Isao Tokuda, Yoshiki Tsuchiya, Yuh Sasawaki, Atsushi Umemura, Naoko Masuzawa, Kazuya Yabumoto, Takashi Seya, Akira Sugimoto, Seung-Hee Yoo, Zheng Chen, Kazuhiro Yagita
Inter-Individual Variations In Circadian Misalignment-Induced Nafld Pathophysiology In Mice, Nobuya Koike, Yasuhiro Umemura, Hitoshi Inokawa, Isao Tokuda, Yoshiki Tsuchiya, Yuh Sasawaki, Atsushi Umemura, Naoko Masuzawa, Kazuya Yabumoto, Takashi Seya, Akira Sugimoto, Seung-Hee Yoo, Zheng Chen, Kazuhiro Yagita
Faculty, Staff and Student Publications
Pathological consequences of circadian misalignment, such as shift work, show considerable individual differences, but the lack of mechanistic understanding hinders precision prevention to prevent and mitigate disease symptoms. Here, we employed an integrative approach involving physiological, transcriptional, and histological phenotypes to examine inter-individual differences in pre-symptomatic pathological progression, preceding irreversible disease onset, in wild-type mice exposed to chronic jet-lag (CJL). We observed that CJL markedly increased the prevalence of hepatic steatosis with pronounced inter-individual differences. Stratification of individual mice based on CJL-induced hepatic transcriptomic signature, validated by histopathological analysis, pinpoints dysregulation of lipid metabolism. Moreover, the period and power of …
A Mutation In F-Actin Polymerization Factor Suppresses The Distal Arthrogryposis Type 5 Piezo2 Pathogenic Variant In Caenorhabditis Elegans, Xiaofei Bai, Harold E Smith, Luis O Romero, Briar Bell, Valeria Vásquez, Andy Golden
A Mutation In F-Actin Polymerization Factor Suppresses The Distal Arthrogryposis Type 5 Piezo2 Pathogenic Variant In Caenorhabditis Elegans, Xiaofei Bai, Harold E Smith, Luis O Romero, Briar Bell, Valeria Vásquez, Andy Golden
Faculty, Staff and Student Publications
The mechanosensitive PIEZO channel family has been linked to over 26 disorders and diseases. Although progress has been made in understanding these channels at the structural and functional levels, the underlying mechanisms of PIEZO-associated diseases remain elusive. In this study, we engineered four PIEZO-based disease models using CRISPR/Cas9 gene editing. We performed an unbiased chemical mutagen-based genetic suppressor screen to identify putative suppressors of a conserved gain-of-function variant pezo-1[R2405P] that in human PIEZO2 causes distal arthrogryposis type 5 (DA5; p. R2718P). Electrophysiological analyses indicate that pezo-1(R2405P) is a gain-of-function allele. Using genomic mapping and whole-genome sequencing approaches, we identified a …
The Novel Phosphatase Nudt5 Is A Critical Regulator Of Triple-Negative Breast Cancer Growth, Jing Qian, Yanxia Ma, William M Tahaney, Cassandra L Moyer, Amanda Lanier, Jamal Hill, Darian Coleman, Negar Koupaei, Susan G Hilsenbeck, Michelle I Savage, Brent D G Page, Abhijit Mazumdar, Powel H Brown
The Novel Phosphatase Nudt5 Is A Critical Regulator Of Triple-Negative Breast Cancer Growth, Jing Qian, Yanxia Ma, William M Tahaney, Cassandra L Moyer, Amanda Lanier, Jamal Hill, Darian Coleman, Negar Koupaei, Susan G Hilsenbeck, Michelle I Savage, Brent D G Page, Abhijit Mazumdar, Powel H Brown
Faculty, Staff and Student Publications
BACKGROUND: The most aggressive form of breast cancer is triple-negative breast cancer (TNBC), which lacks expression of the estrogen receptor (ER) and progesterone receptor (PR), and does not have overexpression of the human epidermal growth factor receptor 2 (HER2). Treatment options for women with TNBC tumors are limited, unlike those with ER-positive tumors that can be treated with hormone therapy, or those with HER2-positive tumors that can be treated with anti-HER2 therapy. Therefore, we have sought to identify novel targeted therapies for TNBC. In this study, we investigated the potential of a novel phosphatase, NUDT5, as a potential therapeutic target …
Non-Canonical Hedgehog Signaling Mediates Profibrotic Hematopoiesis-Stroma Crosstalk In Myeloproliferative Neoplasms, Jessica E Pritchard, Juliette E Pearce, Inge A M Snoeren, Stijn N R Fuchs, Katrin Götz, Fabian Peisker, Silke Wagner, Adam Benabid, Niklas Lutterbach, Vanessa Klöker, James S Nagai, Monica T Hannani, Anna K Galyga, Ellen Sistemich, Bella Banjanin, Niclas Flosdorf, Eric Bindels, Kathrin Olschok, Katharina Biaesch, Nicolas Chatain, Neha Bhagwat, Andrew Dunbar, Rita Sarkis, Olaia Naveiras, Marie-Luise Berres, Steffen Koschmieder, Ross L Levine, Ivan G Costa, Hélène F E Gleitz, Rafael Kramann, Rebekka K Schneider
Non-Canonical Hedgehog Signaling Mediates Profibrotic Hematopoiesis-Stroma Crosstalk In Myeloproliferative Neoplasms, Jessica E Pritchard, Juliette E Pearce, Inge A M Snoeren, Stijn N R Fuchs, Katrin Götz, Fabian Peisker, Silke Wagner, Adam Benabid, Niklas Lutterbach, Vanessa Klöker, James S Nagai, Monica T Hannani, Anna K Galyga, Ellen Sistemich, Bella Banjanin, Niclas Flosdorf, Eric Bindels, Kathrin Olschok, Katharina Biaesch, Nicolas Chatain, Neha Bhagwat, Andrew Dunbar, Rita Sarkis, Olaia Naveiras, Marie-Luise Berres, Steffen Koschmieder, Ross L Levine, Ivan G Costa, Hélène F E Gleitz, Rafael Kramann, Rebekka K Schneider
Faculty, Staff and Student Publications
The role of hematopoietic Hedgehog signaling in myeloproliferative neoplasms (MPNs) remains incompletely understood despite data suggesting that Hedgehog (Hh) pathway inhibitors have therapeutic activity in patients. We aim to systematically interrogate the role of canonical vs. non-canonical Hh signaling in MPNs. We show that Gli1 protein levels in patient peripheral blood mononuclear cells (PBMCs) mark fibrotic progression and that, in murine MPN models, absence of hematopoietic Gli1, but not Gli2 or Smo, significantly reduces MPN phenotype and fibrosis, indicating that GLI1 in the MPN clone can be activated in a non-canonical fashion. Additionally, we establish that hematopoietic Gli1 has a …
Gut Epithelial Interleukin-17 Receptor A Signaling Can Modulate Distant Tumors Growth Through Microbial Regulation, Vidhi Chandra, Le Li, Olivereen Le Roux, Yu Zhang, Rian M Howell, Dhwani N Rupani, Seyda Baydogan, Haiyan D Miller, Erick Riquelme, Joseph Petrosino, Michael P Kim, Krishna P L Bhat, James R White, Jay K Kolls, Yuliya Pylayeva-Gupta, Florencia Mcallister
Gut Epithelial Interleukin-17 Receptor A Signaling Can Modulate Distant Tumors Growth Through Microbial Regulation, Vidhi Chandra, Le Li, Olivereen Le Roux, Yu Zhang, Rian M Howell, Dhwani N Rupani, Seyda Baydogan, Haiyan D Miller, Erick Riquelme, Joseph Petrosino, Michael P Kim, Krishna P L Bhat, James R White, Jay K Kolls, Yuliya Pylayeva-Gupta, Florencia Mcallister
Faculty, Staff and Student Publications
Microbes influence cancer initiation, progression and therapy responsiveness. IL-17 signaling contributes to gut barrier immunity by regulating microbes but also drives tumor growth. A knowledge gap remains regarding the influence of enteric IL-17-IL-17RA signaling and their microbial regulation on the behavior of distant tumors. We demonstrate that gut dysbiosis induced by systemic or gut epithelial deletion of IL-17RA induces growth of pancreatic and brain tumors due to excessive development of Th17, primary source of IL-17 in human and mouse pancreatic ductal adenocarcinoma, as well as B cells that circulate to distant tumors. Microbial dependent IL-17 signaling increases DUOX2 signaling in …
The Kidney In Heart Failure: The Role Of Venous Congestion, Oluwaseun Adebayo Bamodu, Chen-Chih Chung, Thomas R Pisanic, Alexander T H Wu
The Kidney In Heart Failure: The Role Of Venous Congestion, Oluwaseun Adebayo Bamodu, Chen-Chih Chung, Thomas R Pisanic, Alexander T H Wu
Faculty, Staff and Student Publications
BACKGROUND: Cancer stem cells (CSCs) have emerged as pivotal players in tumorigenesis, disease progression, and resistance to therapies.
OBJECTIVE: This comprehensive review delves into the intricate relationship between CSCs and the cell-of-origin in diverse cancer types.
DESIGN: Comprehensive review of thematically-relevant literature.
METHODS: We explore the underlying molecular mechanisms that drive the conversion of normal cells into CSCs and the impact of the cell-of-origin on CSC properties, tumor initiation, and therapeutic responses. Moreover, we discuss potential therapeutic interventions targeting CSCs based on their distinct cell-of-origin characteristics.
RESULTS: Accruing evidence suggest that the cell-of-origin, the cell type from which the tumor …
Loss Of The Auxiliary Α 2Δ1 Voltage-Sensitive Calcium Channel Subunit Impairs Bone Formation And Anabolic Responses To Mechanical Loading, Madison M Kelly, Karan Sharma, Christian S Wright, Xin Yi, Perla C Reyes Fernandez, Aaron T Gegg, Taylor A Gorrell, Megan L Noonan, Ahmed Baghdady, Jacob A Sieger, Annette C Dolphin, Stuart J Warden, Padmini Deosthale, Lilian I Plotkin, Uma Sankar, Julia M Hum, Alexander G Robling, Mary C Farach-Carson, William R Thompson
Loss Of The Auxiliary Α 2Δ1 Voltage-Sensitive Calcium Channel Subunit Impairs Bone Formation And Anabolic Responses To Mechanical Loading, Madison M Kelly, Karan Sharma, Christian S Wright, Xin Yi, Perla C Reyes Fernandez, Aaron T Gegg, Taylor A Gorrell, Megan L Noonan, Ahmed Baghdady, Jacob A Sieger, Annette C Dolphin, Stuart J Warden, Padmini Deosthale, Lilian I Plotkin, Uma Sankar, Julia M Hum, Alexander G Robling, Mary C Farach-Carson, William R Thompson
Faculty, Staff and Student Publications
Voltage-sensitive calcium channels (VSCCs) influence bone structure and function, including anabolic responses to mechanical loading. While the pore-forming (α1) subunit of VSCCs allows Ca2+ influx, auxiliary subunits regulate the biophysical properties of the pore. The α2δ1 subunit influences gating kinetics of the α1 pore and enables mechanically induced signaling in osteocytes; however, the skeletal function of α2δ1 in vivo remains unknown. In this work, we examined the skeletal consequences of deleting Cacna2d1, the gene encoding α2δ1. Dual-energy X-ray absorptiometry and microcomputed tomography imaging demonstrated that deletion of α2δ1 diminished bone mineral content and density in both male and female …
Drivers Of Chronic Pathology Following Ischemic Stroke: A Descriptive Review, Grant W Goodman, Trang H Do, Chunfeng Tan, Rodney M Ritzel
Drivers Of Chronic Pathology Following Ischemic Stroke: A Descriptive Review, Grant W Goodman, Trang H Do, Chunfeng Tan, Rodney M Ritzel
Faculty, Staff and Student Publications
Stroke is the third leading cause of death and long-term disability in the world. Considered largely a disease of aging, its global economic and healthcare burden is expected to rise as more people survive into advanced age. With recent advances in acute stroke management, including the expansion of time windows for treatment with intravenous thrombolysis and mechanical thrombectomy, we are likely to see an increase in survival rates. It is therefore critically important to understand the complete pathophysiology of ischemic stroke, both in the acute and subacute stages and during the chronic phase in the months and years following an …
Epigenomic Mapping Reveals Distinct B Cell Acute Lymphoblastic Leukemia Chromatin Architectures And Regulators, Kelly R Barnett, Robert J Mobley, Jonathan D Diedrich, Brennan P Bergeron, Kashi Raj Bhattarai, Alexander C Monovich, Shilpa Narina, Wenjian Yang, Kristine R Crews, Christopher S Manring, Elias Jabbour, Elisabeth Paietta, Mark R Litzow, Steven M Kornblau, Wendy Stock, Hiroto Inaba, Sima Jeha, Ching-Hon Pui, Charles G Mullighan, Mary V Relling, Shondra M Pruett-Miller, Russell J H Ryan, Jun J Yang, William E Evans, Daniel Savic
Epigenomic Mapping Reveals Distinct B Cell Acute Lymphoblastic Leukemia Chromatin Architectures And Regulators, Kelly R Barnett, Robert J Mobley, Jonathan D Diedrich, Brennan P Bergeron, Kashi Raj Bhattarai, Alexander C Monovich, Shilpa Narina, Wenjian Yang, Kristine R Crews, Christopher S Manring, Elias Jabbour, Elisabeth Paietta, Mark R Litzow, Steven M Kornblau, Wendy Stock, Hiroto Inaba, Sima Jeha, Ching-Hon Pui, Charles G Mullighan, Mary V Relling, Shondra M Pruett-Miller, Russell J H Ryan, Jun J Yang, William E Evans, Daniel Savic
Faculty, Staff and Student Publications
B cell lineage acute lymphoblastic leukemia (B-ALL) is composed of diverse molecular subtypes, and while transcriptional and DNA methylation profiling has been extensively examined, the chromatin landscape is not well characterized for many subtypes. We therefore mapped chromatin accessibility using ATAC-seq in primary B-ALL cells from 156 patients spanning ten molecular subtypes and present this dataset as a resource. Differential chromatin accessibility and transcription factor (TF) footprint profiling were employed and identified B-ALL cell of origin, TF-target gene interactions enriched in B-ALL, and key TFs associated with accessible chromatin sites preferentially active in B-ALL. We further identified over 20% of …
Formate Supplementation Enhances Antitumor Cd8+ T-Cell Fitness And Efficacy Of Pd-1 Blockade, Jared H Rowe, Ilaria Elia, Osmaan Shahid, Emily F Gaudiano, Natalia E Sifnugel, Sheila Johnson, Amy G Reynolds, Megan E Fung, Shakchhi Joshi, Martin W Lafleur, Joon Seok Park, Kristen E Pauken, Joshua D Rabinowitz, Gordon J Freeman, Marcia C Haigis, Arlene H Sharpe
Formate Supplementation Enhances Antitumor Cd8+ T-Cell Fitness And Efficacy Of Pd-1 Blockade, Jared H Rowe, Ilaria Elia, Osmaan Shahid, Emily F Gaudiano, Natalia E Sifnugel, Sheila Johnson, Amy G Reynolds, Megan E Fung, Shakchhi Joshi, Martin W Lafleur, Joon Seok Park, Kristen E Pauken, Joshua D Rabinowitz, Gordon J Freeman, Marcia C Haigis, Arlene H Sharpe
Faculty, Staff and Student Publications
UNLABELLED: The tumor microenvironment (TME) restricts antitumor CD8+ T-cell function and immunotherapy responses. Cancer cells compromise the metabolic fitness of CD8+ T cells within the TME, but the mechanisms are largely unknown. Here we demonstrate that one-carbon (1C) metabolism is enhanced in T cells in an antigen-specific manner. Therapeutic supplementation of 1C metabolism using formate enhances CD8+ T-cell fitness and antitumor efficacy of PD-1 blockade in B16-OVA tumors. Formate supplementation drives transcriptional alterations in CD8+ T-cell metabolism and increases gene signatures for cellular proliferation and activation. Combined formate and anti-PD-1 therapy increases tumor-infiltrating CD8+ T cells, which are essential for …
Hnf4Α Isoforms Regulate The Circadian Balance Between Carbohydrate And Lipid Metabolism In The Liver, Jonathan R Deans, Poonamjot Deol, Nina Titova, Sarah H Radi, Linh M Vuong, Jane R Evans, Songqin Pan, Johannes Fahrmann, Jun Yang, Bruce D Hammock, Oliver Fiehn, Baharan Fekry, Kristin Eckel-Mahan, Frances M Sladek
Hnf4Α Isoforms Regulate The Circadian Balance Between Carbohydrate And Lipid Metabolism In The Liver, Jonathan R Deans, Poonamjot Deol, Nina Titova, Sarah H Radi, Linh M Vuong, Jane R Evans, Songqin Pan, Johannes Fahrmann, Jun Yang, Bruce D Hammock, Oliver Fiehn, Baharan Fekry, Kristin Eckel-Mahan, Frances M Sladek
Faculty, Staff and Student Publications
Hepatocyte Nuclear Factor 4α (HNF4α), a master regulator of hepatocyte differentiation, is regulated by two promoters (P1 and P2) which drive the expression of different isoforms. P1-HNF4α is the major isoform in the adult liver while P2-HNF4α is thought to be expressed only in fetal liver and liver cancer. Here, we show that P2-HNF4α is indeed expressed in the normal adult liver at Zeitgeber time (ZT)9 and ZT21. Using exon swap mice that express only P2-HNF4α we show that this isoform orchestrates a distinct transcriptome and metabolome via unique chromatin and protein-protein interactions, including with different clock proteins at different …
Cytogenetic Profile In Monoclonal Gammopathy Of Undetermined Significance, Smoldering And Symptomatic Multiple Myeloma: A Study Of 1087 Patients With Highly Purified Plasma Cells, Guilin Tang, Yilin Wu, Pei Lin, Gokce A Toruner, Shimin Hu, Shaoying Li, Muzaffar H Qazilbash, Robert Z Orlowski, Christine Ye, Jie Xu, Karen A Nahmod, L Jeffrey Medeiros, Zhenya Tang
Cytogenetic Profile In Monoclonal Gammopathy Of Undetermined Significance, Smoldering And Symptomatic Multiple Myeloma: A Study Of 1087 Patients With Highly Purified Plasma Cells, Guilin Tang, Yilin Wu, Pei Lin, Gokce A Toruner, Shimin Hu, Shaoying Li, Muzaffar H Qazilbash, Robert Z Orlowski, Christine Ye, Jie Xu, Karen A Nahmod, L Jeffrey Medeiros, Zhenya Tang
Faculty, Staff and Student Publications
The aim of this study was to examine the cytogenetic profiles of plasma cell neoplasms (PCNs) at various disease stages, encompassing 1087 patients with monoclonal gammopathy of undetermined significance (MGUS), smoldering multiple myeloma (SMM), newly diagnosed multiple myeloma (NDMM), and refractory/relapsed multiple myeloma (RRMM). Fluorescence in situ hybridization (FISH) analyses were conducted on highly purified plasma cell samples, revealing that 96% of patients exhibited at least one cytogenetic abnormality. The genomic complexity escalated from MGUS to SMM and further to NDMM and RRMM, largely driven by 1q gain, del(17p), MYC-rearrangement (MYC-R), del(1p), and tetraploidy. Elevated frequencies of …
Enhanced Cd19 Activity In B Cells Contributes To Immunodeficiency In Mice Deficient In The Icf Syndrome Gene Zbtb24, Zhengzhou Ying, Swanand Hardikar, Joshua B Plummer, Tewfik Hamidi, Bin Liu, Yueping Chen, Jianjun Shen, Yunxiang Mu, Kevin M Mcbride, Taiping Chen
Enhanced Cd19 Activity In B Cells Contributes To Immunodeficiency In Mice Deficient In The Icf Syndrome Gene Zbtb24, Zhengzhou Ying, Swanand Hardikar, Joshua B Plummer, Tewfik Hamidi, Bin Liu, Yueping Chen, Jianjun Shen, Yunxiang Mu, Kevin M Mcbride, Taiping Chen
Faculty, Staff and Student Publications
Immunodeficiency, centromeric instability, and facial anomalies (ICF) syndrome is a rare autosomal recessive disorder characterized by DNA hypomethylation and antibody deficiency. It is caused by mutations in DNMT3B, ZBTB24, CDCA7, or HELLS. While progress has been made in elucidating the roles of these genes in regulating DNA methylation, little is known about the pathogenesis of the life-threatening hypogammaglobulinemia phenotype. Here, we show that mice deficient in Zbtb24 in the hematopoietic lineage recapitulate the major clinical features of patients with ICF syndrome. Specifically, Vav-Cre-mediated ablation of Zbtb24 does not affect lymphocyte development but results in reduced plasma cells and low levels …
Localization, Tissue Biology, And T Cell State — Implications For Cancer Immunotherapy, Jason M Schenkel, Kristen E Pauken
Localization, Tissue Biology, And T Cell State — Implications For Cancer Immunotherapy, Jason M Schenkel, Kristen E Pauken
Faculty, Staff and Student Publications
Tissue localization is a critical determinant of T cell immunity. CD8+ T cells are contact-dependent killers, which requires them to physically be within the tissue of interest to kill peptide-MHC class I-bearing target cells. Following their migration and extravasation into tissues, T cells receive many extrinsic cues from the local microenvironment, and these signals shape T cell differentiation, fate and function. Because major organ systems are variable in their functions and compositions, they apply disparate pressures on T cells to adapt to the local microenvironment. Additional complexity arises in the context of malignant lesions (either primary or metastatic), and this …