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Articles 1681 - 1710 of 7166
Full-Text Articles in Entire DC Network
Loss Of Hd-Ptp Function Results In Lipodystrophy, Defective Cellular Signaling And Altered Lipid Homeostasis, Destiny F Schultz, Brian A Davies, Johanna A Payne, Cole P Martin, Annabel Y Minard, Bennett G Childs, Cheng Zhang, Karthik B Jeganathan, Ines Sturmlechner, Thomas A White, Alain De Bruin, Liesbeth Harkema, Huiqin Chen, Michael A Davies, Sarah Jachim, Nathan K Lebrasseur, Robert C Piper, Hu Li, Darren J Baker, Jan Van Deursen, Daniel D Billadeau, David J Katzmann
Loss Of Hd-Ptp Function Results In Lipodystrophy, Defective Cellular Signaling And Altered Lipid Homeostasis, Destiny F Schultz, Brian A Davies, Johanna A Payne, Cole P Martin, Annabel Y Minard, Bennett G Childs, Cheng Zhang, Karthik B Jeganathan, Ines Sturmlechner, Thomas A White, Alain De Bruin, Liesbeth Harkema, Huiqin Chen, Michael A Davies, Sarah Jachim, Nathan K Lebrasseur, Robert C Piper, Hu Li, Darren J Baker, Jan Van Deursen, Daniel D Billadeau, David J Katzmann
Faculty, Staff and Student Publications
His domain protein tyrosine phosphatase (HD-PTP; also known as PTPN23) facilitates function of the endosomal sorting complexes required for transport (ESCRTs) during multivesicular body (MVB) formation. To uncover its role in physiological homeostasis, embryonic lethality caused by a complete lack of HD-PTP was bypassed through generation of hypomorphic mice expressing reduced protein, resulting in animals that are viable into adulthood. These mice exhibited marked lipodystrophy and decreased receptor-mediated signaling within white adipose tissue (WAT), involving multiple prominent pathways including RAS/MAPK, phosphoinositide 3-kinase (PI3K)/AKT and receptor tyrosine kinases (RTKs), such as EGFR. EGFR signaling was dissected in vitro to assess the …
Longitudinal Intravascular Antibody Labeling Identified Regulatory T Cell Recruitment As A Therapeutic Target In A Mouse Model Of Lung Cancer, Sean-Luc Shanahan, Nikesh Kunder, Charles Inaku, Natalie B Hagan, Grace Gibbons, Nicolas Mathey-Andrews, Gayathri Anandappa, Shawn Soares, Kristen E Pauken, Tyler Jacks, Jason M Schenkel
Longitudinal Intravascular Antibody Labeling Identified Regulatory T Cell Recruitment As A Therapeutic Target In A Mouse Model Of Lung Cancer, Sean-Luc Shanahan, Nikesh Kunder, Charles Inaku, Natalie B Hagan, Grace Gibbons, Nicolas Mathey-Andrews, Gayathri Anandappa, Shawn Soares, Kristen E Pauken, Tyler Jacks, Jason M Schenkel
Faculty, Staff and Student Publications
Anticancer immunity is predicated on leukocyte migration into tumors. Once recruited, leukocytes undergo substantial reprogramming to adapt to the tumor microenvironment. A major challenge in the field is distinguishing recently recruited from resident leukocytes in tumors. In this study, we developed an intravascular Ab technique to label circulating mouse leukocytes before they migrate to tissues, providing unprecedented insight into the kinetics of recruitment. This approach unveiled the substantial role of leukocyte migration in tumor progression using a preclinical mouse model of lung adenocarcinoma. Regulatory T cells (Tregs), critical mediators of immunosuppression, were continuously and rapidly recruited into tumors throughout cancer …
Phototaxis Is A Satiety-Dependent Behavioral Sequence In Hydra Vulgaris, Soonyoung Kim, Krishna N Badhiwala, Guillaume Duret, Jacob T Robinson
Phototaxis Is A Satiety-Dependent Behavioral Sequence In Hydra Vulgaris, Soonyoung Kim, Krishna N Badhiwala, Guillaume Duret, Jacob T Robinson
Faculty, Staff and Students Publications
Understanding how internal states such as satiety are connected to animal behavior is a fundamental question in neuroscience. Hydra vulgaris, a freshwater cnidarian with only 12 neuronal cell types, serves as a tractable model system for studying state-dependent behaviors. We found that starved hydras consistently move towards light, while fed hydras do not. By modeling this behavior as a set of three sequences of head orientation, jump distance and jump rate, we demonstrate that the satiety state only affects the rate of the animal jumping to a new position, while the orientation and jump distance are unaffected. These findings yield …
A Novel Non-Invasive Murine Model Of Neonatal Hypoxic-Ischemic Encephalopathy Demonstrates Developmental Delay And Motor Deficits With Activation Of Inflammatory Pathways In Monocytes, Elise A Lemanski, Bailey A Collins, Andrew T Ebenezer, Sudha Anilkumar, Victoria A Langdon, Qi Zheng, Shanshan Ding, Karl Royden Franke, Jaclyn M Schwarz, Elizabeth Wright-Jin
A Novel Non-Invasive Murine Model Of Neonatal Hypoxic-Ischemic Encephalopathy Demonstrates Developmental Delay And Motor Deficits With Activation Of Inflammatory Pathways In Monocytes, Elise A Lemanski, Bailey A Collins, Andrew T Ebenezer, Sudha Anilkumar, Victoria A Langdon, Qi Zheng, Shanshan Ding, Karl Royden Franke, Jaclyn M Schwarz, Elizabeth Wright-Jin
Department of Medicine Faculty Papers
Neonatal hypoxic-ischemic encephalopathy (HIE) occurs in 1.5 per 1000 live births, leaving affected children with long-term motor and cognitive deficits. Few animal models of HIE incorporate maternal immune activation (MIA) despite the significant risk MIA poses to HIE incidence and diagnosis. Our non-invasive model of HIE pairs late gestation MIA with postnatal hypoxia. HIE pups exhibited a trend toward smaller overall brain size and delays in the ontogeny of several developmental milestones. In adulthood, HIE animals had reduced strength and gait deficits, but no difference in speed. Surprisingly, HIE animals performed better on the rotarod, an assessment of motor coordination. …
Hif-2Α-Dependent Induction Of Mir-29a Restrains Th1 Activity During T Cell Dependent Colitis, Agnieszka K Czopik, Eóin N Mcnamee, Victoria Vaughn, Xiangsheng Huang, In Hyuk Bang, Trent Clark, Yanyu Wang, Wei Ruan, Tom Nguyen, Joanne C Masterson, Eunyoung Tak, Sandra Frank, Colm B Collins, Howard Li, Cristian Rodriguez-Aguayo, Gabriel Lopez-Berestein, Mark E Gerich, Glenn T Furuta, Xiaoyi Yuan, Anil K Sood, Edwin F De Zoeten, Holger K Eltzschig
Hif-2Α-Dependent Induction Of Mir-29a Restrains Th1 Activity During T Cell Dependent Colitis, Agnieszka K Czopik, Eóin N Mcnamee, Victoria Vaughn, Xiangsheng Huang, In Hyuk Bang, Trent Clark, Yanyu Wang, Wei Ruan, Tom Nguyen, Joanne C Masterson, Eunyoung Tak, Sandra Frank, Colm B Collins, Howard Li, Cristian Rodriguez-Aguayo, Gabriel Lopez-Berestein, Mark E Gerich, Glenn T Furuta, Xiaoyi Yuan, Anil K Sood, Edwin F De Zoeten, Holger K Eltzschig
Faculty, Staff and Student Publications
Metabolic imbalance leading to inflammatory hypoxia and stabilization of hypoxia-inducible transcription factors (HIFs) is a hallmark of inflammatory bowel diseases. We hypothesize that HIF could be stabilized in CD4+ T cells during intestinal inflammation and alter the functional responses of T cells via regulation of microRNAs. Our assays reveal markedly increased T cell-intrinsic hypoxia and stabilization of HIF protein during experimental colitis. microRNA screen in primary CD4+ T cells points us towards miR-29a and our subsequent studies identify a selective role for HIF-2α in CD4-cell-intrinsic induction of miR-29a during hypoxia. Mice with T cell-intrinsic HIF-2α deletion display elevated T-bet (target …
Impact And Characterization Of Serial Structural Variations Across Humans And Great Apes, Wolfram Höps, Tobias Rausch, Michael Jendrusch, Jan O Korbel, Fritz J Sedlazeck
Impact And Characterization Of Serial Structural Variations Across Humans And Great Apes, Wolfram Höps, Tobias Rausch, Michael Jendrusch, Jan O Korbel, Fritz J Sedlazeck
Faculty, Staff and Students Publications
Modern sequencing technology enables the systematic detection of complex structural variation (SV) across genomes. However, extensive DNA rearrangements arising through a series of mutations, a phenomenon we refer to as serial SV (sSV), remain underexplored, posing a challenge for SV discovery. Here, we present NAHRwhals ( https://github.com/WHops/NAHRwhals ), a method to infer repeat-mediated series of SVs in long-read genomic assemblies. Applying NAHRwhals to haplotype-resolved human genomes from 28 individuals reveals 37 sSV loci of various length and complexity. These sSVs explain otherwise cryptic variation in medically relevant regions such as the TPSAB1 gene, 8p23.1, 22q11 and Sotos syndrome regions. Comparisons …
Expanding The Crispr Base Editing Toolbox In Drosophila Melanogaster, Michael Clark, Christina Nguyen, Hung Nguyen, Aidan Tay, Samuel J Beach, Maciej Maselko, Víctor López Del Amo
Expanding The Crispr Base Editing Toolbox In Drosophila Melanogaster, Michael Clark, Christina Nguyen, Hung Nguyen, Aidan Tay, Samuel J Beach, Maciej Maselko, Víctor López Del Amo
Faculty, Staff and Student Publications
CRISPR base editors can introduce point mutations into DNA precisely, and cytosine base editors (CBEs) catalyze C to T transitions. While CBEs have been thoroughly explored in cell culture and organisms such as mice, little is known about DNA base editing in insects. In this study, we evaluated germline editing rates of three different CBEs expressed under actin (ubiquitous) or nanos (germline) promoters utilizing Drosophila melanogaster. The original Rattus norvegicus-derived cytosine deaminase APOBEC1 (rAPO-1) displayed high base editing rates (~99%) with undetectable indel formation. Additionally, we show that base editors can be used for generating male sterility and female lethality. …
Batf Is A Major Driver Of Nk Cell Epigenetic Reprogramming And Dysfunction In Aml, Bijender Kumar, Anand Singh, Rafet Basar, Nadima Uprety, Ye Li, Huihui Fan, Ana Karen Nunez Cortes, Mecit Kaplan, Sunil Acharya, Hila Shaim, Anna C Xu, Manrong Wu, Emily Ensley, Dexing Fang, Pinaki P Banerjee, Luciana Melo Garcia, Silvia Tiberti, Paul Lin, Hind Rafei, Maliha Nuzhat Munir, Madison Moore, Mayra Shanley, Mayela Mendt, Lucila N Kerbauy, Bin Liu, Alexander Biederstädt, Elif Gokdemir, Susmita Ghosh, Kiran Kundu, Francia Reyes-Silva, Xin Ru Jiang, Xinhai Wan, April L Gilbert, Merve Dede, Vakul Mohanty, Jinzhuang Dou, Patrick Zhang, Enli Liu, Luis Muniz-Feliciano, Gary M Deyter, Abhinav K Jain, Juan Jose Rodriguez-Sevilla, Simona Colla, Guillermo Garcia-Manero, Elizabeth J Shpall, Ken Chen, Hussein A Abbas, Kunal Rai, Katayoun Rezvani, May Daher
Batf Is A Major Driver Of Nk Cell Epigenetic Reprogramming And Dysfunction In Aml, Bijender Kumar, Anand Singh, Rafet Basar, Nadima Uprety, Ye Li, Huihui Fan, Ana Karen Nunez Cortes, Mecit Kaplan, Sunil Acharya, Hila Shaim, Anna C Xu, Manrong Wu, Emily Ensley, Dexing Fang, Pinaki P Banerjee, Luciana Melo Garcia, Silvia Tiberti, Paul Lin, Hind Rafei, Maliha Nuzhat Munir, Madison Moore, Mayra Shanley, Mayela Mendt, Lucila N Kerbauy, Bin Liu, Alexander Biederstädt, Elif Gokdemir, Susmita Ghosh, Kiran Kundu, Francia Reyes-Silva, Xin Ru Jiang, Xinhai Wan, April L Gilbert, Merve Dede, Vakul Mohanty, Jinzhuang Dou, Patrick Zhang, Enli Liu, Luis Muniz-Feliciano, Gary M Deyter, Abhinav K Jain, Juan Jose Rodriguez-Sevilla, Simona Colla, Guillermo Garcia-Manero, Elizabeth J Shpall, Ken Chen, Hussein A Abbas, Kunal Rai, Katayoun Rezvani, May Daher
Faculty, Staff and Student Publications
Myelodysplastic syndrome (MDS) and acute myeloid leukemia (AML) belong to a continuous disease spectrum of myeloid malignancies with poor prognosis in the relapsed/refractory setting necessitating novel therapies. Natural killer (NK) cells from patients with myeloid malignancies display global dysfunction with impaired killing capacity, altered metabolism and exhausted phenotype at the single cell transcriptomic and proteomic levels. In this study we identified that this dysfunction was mediated through a crosstalk between NK cells and myeloid blasts necessitating cell-cell contact. NK cell dysfunction could be prevented by targeting the αvβ integrin/TGF-β/SMAD pathway but, once established, was persistent due to profound epigenetic reprogramming. …
Bacteroides Ovatus Alleviates Dysbiotic Microbiota-Induced Graft-Versus-Host Disease, Eiko Hayase, Tomo Hayase, Akash Mukherjee, Stuart C Stinson, Mohamed A Jamal, Miriam R Ortega, Christopher A Sanchez, Saira S Ahmed, Jennifer L Karmouch, Chia-Chi Chang, Ivonne I Flores, Lauren K Mcdaniel, Alexandria N Brown, Rawan K El-Himri, Valerie A Chapa, Lin Tan, Bao Q Tran, Yao Xiao, Christopher Fan, Dung Pham, Taylor M Halsey, Yimei Jin, Wen-Bin Tsai, Rishika Prasad, Israel K Glover, Altai Enkhbayar, Aqsa Mohammed, Maren Schmiester, Katherine Y King, Robert A Britton, Pavan Reddy, Matthew C Wong, Nadim J Ajami, Jennifer A Wargo, Samuel Shelburne, Pablo C Okhuysen, Chen Liu, Stephanie W Fowler, Margaret E Conner, Zoe Katsamakis, Natalie Smith, Marina Burgos Da Silva, Doris M Ponce, Jonathan U Peled, Marcel R M Van Den Brink, Christine B Peterson, Gabriela Rondon, Jeffrey J Molldrem, Richard E Champlin, Elizabeth J Shpall, Philip L Lorenzi, Rohtesh S Mehta, Eric C Martens, Amin M Alousi, Robert R Jenq
Bacteroides Ovatus Alleviates Dysbiotic Microbiota-Induced Graft-Versus-Host Disease, Eiko Hayase, Tomo Hayase, Akash Mukherjee, Stuart C Stinson, Mohamed A Jamal, Miriam R Ortega, Christopher A Sanchez, Saira S Ahmed, Jennifer L Karmouch, Chia-Chi Chang, Ivonne I Flores, Lauren K Mcdaniel, Alexandria N Brown, Rawan K El-Himri, Valerie A Chapa, Lin Tan, Bao Q Tran, Yao Xiao, Christopher Fan, Dung Pham, Taylor M Halsey, Yimei Jin, Wen-Bin Tsai, Rishika Prasad, Israel K Glover, Altai Enkhbayar, Aqsa Mohammed, Maren Schmiester, Katherine Y King, Robert A Britton, Pavan Reddy, Matthew C Wong, Nadim J Ajami, Jennifer A Wargo, Samuel Shelburne, Pablo C Okhuysen, Chen Liu, Stephanie W Fowler, Margaret E Conner, Zoe Katsamakis, Natalie Smith, Marina Burgos Da Silva, Doris M Ponce, Jonathan U Peled, Marcel R M Van Den Brink, Christine B Peterson, Gabriela Rondon, Jeffrey J Molldrem, Richard E Champlin, Elizabeth J Shpall, Philip L Lorenzi, Rohtesh S Mehta, Eric C Martens, Amin M Alousi, Robert R Jenq
Faculty, Staff and Student Publications
Acute lower gastrointestinal GVHD (aLGI-GVHD) is a serious complication of allogeneic hematopoietic stem cell transplantation. Although the intestinal microbiota is associated with the incidence of aLGI-GVHD, how the intestinal microbiota impacts treatment responses in aLGI-GVHD has not been thoroughly studied. In a cohort of patients with aLGI-GVHD (n = 37), we found that non-response to standard therapy with corticosteroids was associated with prior treatment with carbapenem antibiotics and a disrupted fecal microbiome characterized by reduced abundances of Bacteroides ovatus. In a murine GVHD model aggravated by carbapenem antibiotics, introducing B. ovatus reduced GVHD severity and improved survival. These beneficial effects …
Inhibiting Endothelial Cell Mst1 Attenuates Acute Lung Injury In Mice, Zhi-Fu Guo, Nopprarat Tongmuang, Chao Li, Chen Zhang, Louis Hu, Daniel Capreri, Mei-Xing Zuo, Ross Summer, Jianxin Sun
Inhibiting Endothelial Cell Mst1 Attenuates Acute Lung Injury In Mice, Zhi-Fu Guo, Nopprarat Tongmuang, Chao Li, Chen Zhang, Louis Hu, Daniel Capreri, Mei-Xing Zuo, Ross Summer, Jianxin Sun
Center for Translational Medicine Faculty Papers
Lung endothelium plays a pivotal role in the orchestration of inflammatory responses to acute pulmonary insults. Mammalian sterile 20-like kinase 1 (Mst1) is a serine/threonine kinase that has been shown to play an important role in the regulation of apoptosis, stress responses, and organ growth. This study investigated the role of Mst1 in lung endothelial activation and acute lung injury (ALI). We found that Mst1 was significantly activated in inflamed lung endothelial cells (ECs) and mouse lung tissues. Overexpression of Mst1 promoted nuclear factor κ-B (NF-κB) activation through promoting JNK and p38 activation in lung ECs. Inhibition of Mst1 by …
Targeting Prmt3 Impairs Methylation And Oligomerization Of Hsp60 To Boost Anti-Tumor Immunity By Activating Cgas/Sting Signaling, Yunxing Shi, Zongfeng Wu, Shaoru Liu, Dinglan Zuo, Yi Niu, Yuxiong Qiu, Liang Qiao, Wei He, Jiliang Qiu, Yunfei Yuan, Guocan Wang, Binkui Li
Targeting Prmt3 Impairs Methylation And Oligomerization Of Hsp60 To Boost Anti-Tumor Immunity By Activating Cgas/Sting Signaling, Yunxing Shi, Zongfeng Wu, Shaoru Liu, Dinglan Zuo, Yi Niu, Yuxiong Qiu, Liang Qiao, Wei He, Jiliang Qiu, Yunfei Yuan, Guocan Wang, Binkui Li
Faculty, Staff and Student Publications
Immune checkpoint blockade (ICB) has emerged as a promising therapeutic option for hepatocellular carcinoma (HCC), but resistance to ICB occurs and patient responses vary. Here, we uncover protein arginine methyltransferase 3 (PRMT3) as a driver for immunotherapy resistance in HCC. We show that PRMT3 expression is induced by ICB-activated T cells via an interferon-gamma (IFNγ)-STAT1 signaling pathway, and higher PRMT3 expression levels correlate with reduced numbers of tumor-infiltrating CD8+ T cells and poorer response to ICB. Genetic depletion or pharmacological inhibition of PRMT3 elicits an influx of T cells into tumors and reduces tumor size in HCC mouse models. Mechanistically, …
Mitochondrial Reprogramming By Activating Oxphos Via Glutamine Metabolism In African American Patients With Bladder Cancer, Karthik Reddy Kami Reddy, Danthasinghe Waduge Badrajee Piyarathna, Jun Hyoung Park, Vasanta Putluri, Chandra Sekhar Amara, Abu Hena Mostafa Kamal, Jun Xu, Daniel Kraushaar, Shixia Huang, Sung Yun Jung, Livia S Eberlin, Jabril R Johnson, Rick A Kittles, Leomar Y Ballester, Krishna Parsawar, M Minhaj Siddiqui, Jianjun Gao, Adriana Langer Gramer, Roni J Bollag, Martha K Terris, Yair Lotan, Chad J Creighton, Seth P Lerner, Arun Sreekumar, Benny Abraham Kaipparettu, Nagireddy Putluri
Mitochondrial Reprogramming By Activating Oxphos Via Glutamine Metabolism In African American Patients With Bladder Cancer, Karthik Reddy Kami Reddy, Danthasinghe Waduge Badrajee Piyarathna, Jun Hyoung Park, Vasanta Putluri, Chandra Sekhar Amara, Abu Hena Mostafa Kamal, Jun Xu, Daniel Kraushaar, Shixia Huang, Sung Yun Jung, Livia S Eberlin, Jabril R Johnson, Rick A Kittles, Leomar Y Ballester, Krishna Parsawar, M Minhaj Siddiqui, Jianjun Gao, Adriana Langer Gramer, Roni J Bollag, Martha K Terris, Yair Lotan, Chad J Creighton, Seth P Lerner, Arun Sreekumar, Benny Abraham Kaipparettu, Nagireddy Putluri
Faculty, Staff and Students Publications
Bladder cancer (BLCA) mortality is higher in African American (AA) patients compared with European American (EA) patients, but the molecular mechanism underlying race-specific differences are unknown. To address this gap, we conducted comprehensive RNA-Seq, proteomics, and metabolomics analysis of BLCA tumors from AA and EA. Our findings reveal a distinct metabolic phenotype in AA BLCA characterized by elevated mitochondrial oxidative phosphorylation (OXPHOS), particularly through the activation of complex I. The results provide insight into the complex I activation-driven higher OXPHOS activity resulting in glutamine-mediated metabolic rewiring and increased disease progression, which was also confirmed by [U]13C-glutamine tracing. Mechanistic studies further …
Cardiomyocyte-Derived Small Extracellular Vesicle: A New Mechanism Driving Diabetic Cardiac Fibrosis And Cardiomyopathy, Yu Li, Yunhui Du, Yang Liu, Xiuhuan Chen, Xinxin Li, Yanru Duan, Yanwen Qin, Huirong Liu, Xinliang Ma, Shaoping Nie, Huina Zhang
Cardiomyocyte-Derived Small Extracellular Vesicle: A New Mechanism Driving Diabetic Cardiac Fibrosis And Cardiomyopathy, Yu Li, Yunhui Du, Yang Liu, Xiuhuan Chen, Xinxin Li, Yanru Duan, Yanwen Qin, Huirong Liu, Xinliang Ma, Shaoping Nie, Huina Zhang
Department of Emergency Medicine Faculty Papers
Rationale: Diabetic cardiomyopathy is one of the major diabetic cardiovascular complications in which fibrosis plays a critical pathogenetic role. However, the precise mechanisms by which diabetes triggers cardiac fibrosis in the heart remain elusive. Small extracellular vesicles (sEVs) play an important role in the cellular communication. Nevertheless, whether and how diabetes may adversely alter sEVs-mediated cardiomyocyte-fibroblast communication, promoting diabetic cardiac fibrosis and contributing to diabetic cardiomyopathy, has not been previously investigated. Methods and results: High-fat diet (HFD)-induced and genetic (db/db) type 2 diabetic models were utilized. Cardiomyocyte sEVs (Myo-sEVs) were isolated by ultracentrifugation. Normal cardiomyocyte-derived Myo-sEVs attenuated diabetic cardiac fibrosis …
Parp-1 Selectively Impairs Kras-Driven Phenotypic And Molecular Features In Intrahepatic Cholangiocarcinoma, Friederike L Keggenhoff, Darko Castven, Diana Becker, Stojan Stojkovic, Jovana Castven, Carolin Zimpel, Beate K Straub, Tiemo Gerber, Harald Langer, Patricia Hähnel, Thomas Kindler, Jörg Fahrer, Colm J O'Rourke, Ursula Ehmer, Anna Saborowski, Lichun Ma, Xin Wei Wang, Timo Gaiser, Matthias S Matter, Christian Sina, Stefanie Derer, Ju-Seog Lee, Stephanie Roessler, Bernd Kaina, Jesper B Andersen, Peter R Galle, Jens U Marquardt
Parp-1 Selectively Impairs Kras-Driven Phenotypic And Molecular Features In Intrahepatic Cholangiocarcinoma, Friederike L Keggenhoff, Darko Castven, Diana Becker, Stojan Stojkovic, Jovana Castven, Carolin Zimpel, Beate K Straub, Tiemo Gerber, Harald Langer, Patricia Hähnel, Thomas Kindler, Jörg Fahrer, Colm J O'Rourke, Ursula Ehmer, Anna Saborowski, Lichun Ma, Xin Wei Wang, Timo Gaiser, Matthias S Matter, Christian Sina, Stefanie Derer, Ju-Seog Lee, Stephanie Roessler, Bernd Kaina, Jesper B Andersen, Peter R Galle, Jens U Marquardt
Faculty, Staff and Student Publications
Objective: Intrahepatic cholangiocarcinoma (iCCA) is the second most common primary liver cancer with limited therapeutic options. KRAS mutations are among the most abundant genetic alterations in iCCA associated with poor clinical outcome and treatment response. Recent findings indicate that Poly(ADP-ribose)polymerase1 (PARP-1) is implicated in KRAS-driven cancers, but its exact role in cholangiocarcinogenesis remains undefined.
Design: PARP-1 inhibition was performed in patient-derived and established iCCA cells using RNAi, CRISPR/Cas9 and pharmacological inhibition in KRAS-mutant, non-mutant cells. In addition, Parp-1 knockout mice were combined with iCCA induction by hydrodynamic tail vein injection to evaluate an impact on phenotypic and molecular …
Fibrotic Response To Anti-Csf-1r Therapy Potentiates Glioblastoma Recurrence, Spencer S Watson, Anoek Zomer, Nadine Fournier, Joao Lourenco, Manfredo Quadroni, Agnieszka Chryplewicz, Sina Nassiri, Pauline Aubel, Simona Avanthay, Davide Croci, Erik Abels, Marike L D Broekman, Douglas Hanahan, Jason T Huse, Roy T Daniel, Monika E Hegi, Krisztian Homicsko, Giulia Cossu, Andreas F Hottinger, Johanna A Joyce
Fibrotic Response To Anti-Csf-1r Therapy Potentiates Glioblastoma Recurrence, Spencer S Watson, Anoek Zomer, Nadine Fournier, Joao Lourenco, Manfredo Quadroni, Agnieszka Chryplewicz, Sina Nassiri, Pauline Aubel, Simona Avanthay, Davide Croci, Erik Abels, Marike L D Broekman, Douglas Hanahan, Jason T Huse, Roy T Daniel, Monika E Hegi, Krisztian Homicsko, Giulia Cossu, Andreas F Hottinger, Johanna A Joyce
Faculty, Staff and Student Publications
Glioblastoma recurrence is currently inevitable despite extensive standard-of-care treatment. In preclinical studies, an alternative strategy of targeting tumor-associated macrophages and microglia through CSF-1R inhibition was previously found to regress established tumors and significantly increase overall survival. However, recurrences developed in ∼50% of mice in long-term studies, which were consistently associated with fibrotic scars. This fibrotic response is observed following multiple anti-glioma therapies in different preclinical models herein and in patient recurrence samples. Multi-omics analyses of the post-treatment tumor microenvironment identified fibrotic areas as pro-tumor survival niches that encapsulated surviving glioma cells, promoted dormancy, and inhibited immune surveillance. The fibrotic treatment …
A Systematic Literature Review Of Granulocytes-Colony Stimulating Factor Treatment In Animals, Syahirah Ahmad Affandi, Nurul Hayah Khairuddin, Mohammed Sadiq Babatunde, Azalea Hani Othman, Collin Looi Seng Kim, Siti Sarah Othman, Sharifah Roohi Syed Waseem Ahmad
A Systematic Literature Review Of Granulocytes-Colony Stimulating Factor Treatment In Animals, Syahirah Ahmad Affandi, Nurul Hayah Khairuddin, Mohammed Sadiq Babatunde, Azalea Hani Othman, Collin Looi Seng Kim, Siti Sarah Othman, Sharifah Roohi Syed Waseem Ahmad
The Thai Journal of Veterinary Medicine
This study presents a systematic literature review (SLR) on the efficacy of granulocytes-colony stimulating factor (G-CSF) as a treatment component in relation to clinicopathological parameters and overall outcomes. Using the PICO approach, a research question development tool, the SLR was designed to identify the animals in which G-CSF had been used, the types of G-CSF utilized and their effectiveness as a therapeutic agent in stimulating haematological parameters, as well as their potential adverse effects. Three primary keywords associated with the review topic were selected and incorporated into the search query to retrieve pertinent literature from three databases: Scopus, Science Direct, …
Small Gtp-Binding Protein Gdp Dissociation Stimulator Influences Cisplatin-Induced Acute Kidney Injury Via Perk-Dependent Er Stress, Yuxue Yang, Ting Xiong, Ti Wang, Xiwei Chen, Ziwei Ma, Bangyun Zuo, Dong Ning, Ruilong Song, Xuesong Liu, Daxin Wang
Small Gtp-Binding Protein Gdp Dissociation Stimulator Influences Cisplatin-Induced Acute Kidney Injury Via Perk-Dependent Er Stress, Yuxue Yang, Ting Xiong, Ti Wang, Xiwei Chen, Ziwei Ma, Bangyun Zuo, Dong Ning, Ruilong Song, Xuesong Liu, Daxin Wang
Children’s Nutrition Research Center Staff Publications
Cisplatin is a common anticancer drug, but its frequent nephrotoxicity limits its clinical use. Small GTP-binding protein GDP dissociation stimulator (smgGDS), a small GTPase chaperone protein, was considerably downregulated during cisplatin-induced acute kidney injury (CDDP-AKI), especially in renal tubular epithelial cells. SmgGDS-knockdown mice was established and found that smgGDS knockdown promoted CDDP-AKI, as demonstrated by an increase in serum creatine, blood urea nitrogen levels and the appearance of tubular patterns. RNA sequencing suggested that protein kinase RNA-like ER kinase (PERK), which bridges mitochondria-associated ER membranes, was involved in smgGDS knockdown following CDDP-AKI, and then identified that smgGDS knockdown increased phosphorylated-PERK …
The Scaffolding Function Of Lsd1 Controls Dna Methylation In Mouse Escs, Sandhya Malla, Kanchan Kumari, Carlos A García-Prieto, Jonatan Caroli, Anna Nordin, Trinh T T Phan, Devi Prasad Bhattarai, Carlos Martinez-Gamero, Eshagh Dorafshan, Stephanie Stransky, Damiana Álvarez-Errico, Paulina Avovome Saiki, Weiyi Lai, Cong Lyu, Ludvig Lizana, Jonathan D Gilthorpe, Hailin Wang, Simone Sidoli, Andre Mateus, Dung-Fang Lee, Claudio Cantù, Manel Esteller, Andrea Mattevi, Angel-Carlos Roman, Francesca Aguilo
The Scaffolding Function Of Lsd1 Controls Dna Methylation In Mouse Escs, Sandhya Malla, Kanchan Kumari, Carlos A García-Prieto, Jonatan Caroli, Anna Nordin, Trinh T T Phan, Devi Prasad Bhattarai, Carlos Martinez-Gamero, Eshagh Dorafshan, Stephanie Stransky, Damiana Álvarez-Errico, Paulina Avovome Saiki, Weiyi Lai, Cong Lyu, Ludvig Lizana, Jonathan D Gilthorpe, Hailin Wang, Simone Sidoli, Andre Mateus, Dung-Fang Lee, Claudio Cantù, Manel Esteller, Andrea Mattevi, Angel-Carlos Roman, Francesca Aguilo
Faculty, Staff and Student Publications
Lysine-specific histone demethylase 1 (LSD1), which demethylates mono- or di- methylated histone H3 on lysine 4 (H3K4me1/2), is essential for early embryogenesis and development. Here we show that LSD1 is dispensable for mouse embryonic stem cell (ESC) self-renewal but is required for mouse ESC growth and differentiation. Reintroduction of a catalytically-impaired LSD1 (LSD1MUT) recovers the proliferation capability of mouse ESCs, yet the enzymatic activity of LSD1 is essential to ensure proper differentiation. Indeed, increased H3K4me1 in Lsd1 knockout (KO) mouse ESCs does not lead to major changes in global gene expression programs related to stemness. However, ablation of LSD1 but …
Cyp3a-Mediated Carbon-Carbon Bond Cleavages In Drug Metabolism, Junhui Zhou, Xuan Qin, Shenzhi Zhou, Kevin R Mackenzie, Feng Li
Cyp3a-Mediated Carbon-Carbon Bond Cleavages In Drug Metabolism, Junhui Zhou, Xuan Qin, Shenzhi Zhou, Kevin R Mackenzie, Feng Li
Faculty, Staff and Students Publications
Cytochrome P450 enzymes (P450s) play a critical role in drug metabolism, with the CYP3A subfamily being responsible for the biotransformation of over 50% of marked drugs. While CYP3A enzymes are known for their extensive catalytic versatility, one intriguing and less understood function is the ability to mediate carbon-carbon (C-C) bond cleavage. These uncommon reactions can lead to unusual metabolites and potentially influence drug safety and efficacy. This review focuses on examining examples of C-C bond cleavage catalyzed by CYP3A, exploring the mechanisms, physiological significance, and implications for drug metabolism. Additionally, examples of CYP3A-mediated ring expansion via C-C bond cleavages are …
Screening Of Anti-Prion Compounds Using The Protein Misfolding Cyclic Amplification Technology, Sandra Pritzkow, Isaac Schauer, Ananya Tupaki-Sreepurna, Rodrigo Morales, Claudio Soto
Screening Of Anti-Prion Compounds Using The Protein Misfolding Cyclic Amplification Technology, Sandra Pritzkow, Isaac Schauer, Ananya Tupaki-Sreepurna, Rodrigo Morales, Claudio Soto
Faculty, Staff and Student Publications
Prion diseases are 100% fatal infectious neurodegenerative diseases affecting the brains of humans and other mammals. The disease is caused by the formation and replication of prions, composed exclusively of the misfolded prion protein (PrPSc). We invented and developed the protein misfolding cyclic amplification (PMCA) technology for in vitro prion replication, which allow us to replicate the infectious agent and it is commonly used for ultra-sensitive prion detection in biological fluids, tissues and environmental samples. In this article, we studied whether PMCA can be used to screen for chemical compounds that block prion replication. A small set of compounds previously …
G Protein Selectivity Profile Of Gpr56/Adgrg1 And Its Effect On Downstream Effectors, Raida Jallouli, Ana L Moreno-Salinas, Andréanne Laniel, Brian Holleran, Charlotte Avet, Joan Jacob, Trang Hoang, Christine Lavoie, Kendra S Carmon, Michel Bouvier, Richard Leduc
G Protein Selectivity Profile Of Gpr56/Adgrg1 And Its Effect On Downstream Effectors, Raida Jallouli, Ana L Moreno-Salinas, Andréanne Laniel, Brian Holleran, Charlotte Avet, Joan Jacob, Trang Hoang, Christine Lavoie, Kendra S Carmon, Michel Bouvier, Richard Leduc
Faculty, Staff and Student Publications
GPR56, an adhesion G-protein coupled receptor (aGPCRs) with constitutive and ligand-promoted activity, is involved in many physiological and pathological processes. Whether the receptor's constitutive or ligand-promoted activation occur through the same molecular mechanism, and whether different activation modes lead to functional selectivity between G proteins is unknown. Here we show that GPR56 constitutively activates both G12 and G13. Unlike constitutive activation and activation with 3-α-acetoxydihydrodeoxygedunin (3αDOG), stimulation with an antibody, 10C7, directed against GPR56's extracellular domain (ECD) led to an activation that favors G13 over G12. An autoproteolytically deficient mutant, GPR56-T383A, was also activated by 10C7 indicating that the tethered …
A Genetic Screen In Drosophila Uncovers A Role For Senseless-2 In Surface Glia In The Peripheral Nervous System To Regulate Cns Morphology, Haluk Lacin, Yuqing Zhu, Jose T Dipaola, Beth A Wilson, Yi Zhu, James B Skeath
A Genetic Screen In Drosophila Uncovers A Role For Senseless-2 In Surface Glia In The Peripheral Nervous System To Regulate Cns Morphology, Haluk Lacin, Yuqing Zhu, Jose T Dipaola, Beth A Wilson, Yi Zhu, James B Skeath
2020-Current year OA Pubs
Despite increasing in mass approximately 100-fold during larval life, the Drosophila CNS maintains its characteristic form. Dynamic interactions between the overlying basement membrane and underlying surface glia are known to regulate CNS structure in Drosophila, but the genes and pathways that establish and maintain CNS morphology during development remain poorly characterized. To identify genes that regulate CNS shape in Drosophila, we conducted an EMS-based, forward genetic screen of the second chromosome, uncovered 50 mutations that disrupt CNS structure, and mapped these alleles to 17 genes. Analysis of whole genome sequencing data wedded to genetic studies uncovered the affected gene for …
Prospects And Challenges Of Tissue-Derived Extracellular Vesicles, Justin C Lee, Roslyn M Ray, Tristan A Scott
Prospects And Challenges Of Tissue-Derived Extracellular Vesicles, Justin C Lee, Roslyn M Ray, Tristan A Scott
Faculty, Staff and Students Publications
Extracellular vesicles (EVs) are considered a vital component of cell-to-cell communication and represent a new frontier in diagnostics and a means to identify pathways for therapeutic intervention. Recently, studies have revealed the importance of tissue-derived EVs (Ti-EVs), which are EVs present in the interstitial spaces between cells, as they better represent the underlying physiology of complex, multicellular tissue microenvironments in biology and disease. EVs are native, lipid bilayer membraned nano-sized particles produced by all cells that are packaged with varied functional biomolecules including proteins, lipids, and nucleic acids. They are implicated in short- and long-range cellular communication and may elicit …
Myc Induces Oncogenic Stress Through Rna Decay And Ribonucleotide Catabolism In Breast Cancer, Jitendra K Meena, Jarey H Wang, Nicholas J Neill, Dianne Keough, Nagireddy Putluri, Panagiotis Katsonis, Amanda M Koire, Hyemin Lee, Elizabeth A Bowling, Siddhartha Tyagi, Mayra Orellana, Rocio Dominguez-Vidaña, Heyuan Li, Kenneth Eagle, Charles Danan, Hsiang-Ching Chung, Andrew D Yang, William Wu, Sarah J Kurley, Brian M Ho, Joseph R Zoeller, Calla M Olson, Kristen L Meerbrey, Olivier Lichtarge, Arun Sreekumar, Clifford C Dacso, Luke W Guddat, Dominik Rejman, Dana Hocková, Zlatko Janeba, Lukas M Simon, Charles Y Lin, Monica C Pillon, Thomas F Westbrook
Myc Induces Oncogenic Stress Through Rna Decay And Ribonucleotide Catabolism In Breast Cancer, Jitendra K Meena, Jarey H Wang, Nicholas J Neill, Dianne Keough, Nagireddy Putluri, Panagiotis Katsonis, Amanda M Koire, Hyemin Lee, Elizabeth A Bowling, Siddhartha Tyagi, Mayra Orellana, Rocio Dominguez-Vidaña, Heyuan Li, Kenneth Eagle, Charles Danan, Hsiang-Ching Chung, Andrew D Yang, William Wu, Sarah J Kurley, Brian M Ho, Joseph R Zoeller, Calla M Olson, Kristen L Meerbrey, Olivier Lichtarge, Arun Sreekumar, Clifford C Dacso, Luke W Guddat, Dominik Rejman, Dana Hocková, Zlatko Janeba, Lukas M Simon, Charles Y Lin, Monica C Pillon, Thomas F Westbrook
Faculty, Staff and Students Publications
Upregulation of MYC is a hallmark of cancer, wherein MYC drives oncogenic gene expression and elevates total RNA synthesis across cancer cell transcriptomes. Although this transcriptional anabolism fuels cancer growth and survival, the consequences and metabolic stresses induced by excess cellular RNA are poorly understood. Herein, we discover that RNA degradation and downstream ribonucleotide catabolism is a novel mechanism of MYC-induced cancer cell death. Combining genetics and metabolomics, we find that MYC increases RNA decay through the cytoplasmic exosome, resulting in the accumulation of cytotoxic RNA catabolites and reactive oxygen species. Notably, tumor-derived exosome mutations abrogate MYC-induced cell death, suggesting …
Pancreatic Epithelial Il17/Il17ra Signaling Drives B7-H4 Expression To Promote Tumorigenesis, Susana Castro-Pando, Rian M Howell, Le Li, Marilina Mascaro, Erika Y Faraoni, Olivereen Le Roux, David Romanin, Virginia Tahan, Erick Riquelme, Yu Zhang, Jay K Kolls, James P Allison, Guillermina Lozano, Seyed J Moghaddam, Florencia Mcallister
Pancreatic Epithelial Il17/Il17ra Signaling Drives B7-H4 Expression To Promote Tumorigenesis, Susana Castro-Pando, Rian M Howell, Le Li, Marilina Mascaro, Erika Y Faraoni, Olivereen Le Roux, David Romanin, Virginia Tahan, Erick Riquelme, Yu Zhang, Jay K Kolls, James P Allison, Guillermina Lozano, Seyed J Moghaddam, Florencia Mcallister
Faculty, Staff and Student Publications
IL17 is required for the initiation and progression of pancreatic cancer, particularly in the context of inflammation, as previously shown by genetic and pharmacological approaches. However, the cellular compartment and downstream molecular mediators of IL17-mediated pancreatic tumorigenesis have not been fully identified. This study examined the cellular compartment required by generating transgenic animals with IL17 receptor A (IL17RA), which was genetically deleted from either the pancreatic epithelial compartment or the hematopoietic compartment via generation of IL17RA-deficient (IL17-RA-/-) bone marrow chimeras, in the context of embryonically activated or inducible Kras. Deletion of IL17RA from the pancreatic epithelial compartment, but not from …
Angiotensin-(1-9) Retro-Enantiomer Peptide With Cardioprotective Activity, Yvo Flores, Gerald Zapata-Torres, Agustín Nuñez, Douglas J Matthies, Larissa Alemán, Carolina Hernández-Fuentes, Gina Sánchez, Eyleen Araya, Fanny Guzman, Zully Pedrozo, Salvador Guardiola, Mónica Varese, Ernest Giralt, Ivan Maslov, Mark Del Borgo, Robert E Widdop, Silvana Valdebenito, Eliseo A Eugenin, Mario Chiong, Joseph A Hill, María Paz Ocaranza, Marcelo J Kogan, Sergio Lavandero
Angiotensin-(1-9) Retro-Enantiomer Peptide With Cardioprotective Activity, Yvo Flores, Gerald Zapata-Torres, Agustín Nuñez, Douglas J Matthies, Larissa Alemán, Carolina Hernández-Fuentes, Gina Sánchez, Eyleen Araya, Fanny Guzman, Zully Pedrozo, Salvador Guardiola, Mónica Varese, Ernest Giralt, Ivan Maslov, Mark Del Borgo, Robert E Widdop, Silvana Valdebenito, Eliseo A Eugenin, Mario Chiong, Joseph A Hill, María Paz Ocaranza, Marcelo J Kogan, Sergio Lavandero
Faculty, Staff and Student Publications
No abstract provided.
The Cancer-Associated Secretory Phenotype: A New Frontier In Targeted Therapeutics, Xiaochao Tan, Guan-Yu Xiao, Priyam Banerjee, Shike Wang, Jonathan M Kurie
The Cancer-Associated Secretory Phenotype: A New Frontier In Targeted Therapeutics, Xiaochao Tan, Guan-Yu Xiao, Priyam Banerjee, Shike Wang, Jonathan M Kurie
Faculty, Staff and Student Publications
No abstract provided.
Targeting Akr1b10 By Drug Repurposing With Epalrestat Overcomes Chemoresistance In Non-Small Cell Lung Cancer Patient-Derived Tumor Organoids, Kanve N Suvilesh, Yariswamy Manjunath, Yulia I Nussbaum, Mohamed Gadelkarim, Murugesan Raju, Akhil Srivastava, Guangfu Li, Wesley C Warren, Chi-Ren Shyu, Feng Gao, Matthew A Ciorba, Jonathan B Mitchem, Satyanarayana Rachagani, Jussuf T Kaifi
Targeting Akr1b10 By Drug Repurposing With Epalrestat Overcomes Chemoresistance In Non-Small Cell Lung Cancer Patient-Derived Tumor Organoids, Kanve N Suvilesh, Yariswamy Manjunath, Yulia I Nussbaum, Mohamed Gadelkarim, Murugesan Raju, Akhil Srivastava, Guangfu Li, Wesley C Warren, Chi-Ren Shyu, Feng Gao, Matthew A Ciorba, Jonathan B Mitchem, Satyanarayana Rachagani, Jussuf T Kaifi
2020-Current year OA Pubs
PURPOSE: Systemic treatments given to patients with non-small cell lung cancer (NSCLC) are often ineffective due to drug resistance. In the present study, we investigated patient-derived tumor organoids (PDTO) and matched tumor tissues from surgically treated patients with NSCLC to identify drug repurposing targets to overcome resistance toward standard-of-care platinum-based doublet chemotherapy.
EXPERIMENTAL DESIGN: PDTOs were established from 10 prospectively enrolled patients with non-metastatic NSCLC from resected tumors. PDTOs were compared with matched tumor tissues by histopathology/immunohistochemistry, whole exome sequencing, and transcriptome sequencing. PDTO growths and drug responses were determined by measuring 3D tumoroid volumes, cell viability, and proliferation/apoptosis. Differential …
Enhlink Infers Distal And Context-Specific Enhancer-Promoter Linkages., Olivier Poirion, Wulin Zuo, Catrina Spruce, Candice N Baker, Sandra Daigle, Ashley A Olson, Daniel A Skelly, Elissa J Chesler, Christopher L. Baker, Brian S White
Enhlink Infers Distal And Context-Specific Enhancer-Promoter Linkages., Olivier Poirion, Wulin Zuo, Catrina Spruce, Candice N Baker, Sandra Daigle, Ashley A Olson, Daniel A Skelly, Elissa J Chesler, Christopher L. Baker, Brian S White
Faculty Research 2024
Enhlink is a computational tool for scATAC-seq data analysis, facilitating precise interrogation of enhancer function at the single-cell level. It employs an ensemble approach incorporating technical and biological covariates to infer condition-specific regulatory DNA linkages. Enhlink can integrate multi-omic data for enhanced specificity, when available. Evaluation with simulated and real data, including multi-omic datasets from the mouse striatum and novel promoter capture Hi-C data, demonstrate that Enhlink outperfoms alternative methods. Coupled with eQTL analysis, it identified a putative super-enhancer in striatal neurons. Overall, Enhlink offers accuracy, power, and potential for revealing novel biological insights in gene regulation.
Fetal Mavs And Type I Ifn Signaling Pathways Control Zikv Infection In The Placenta And Maternal Decidua, Yael Alippe, Leran Wang, Reyan Coskun, Stéfanie P Muraro, Fang R Zhao, Michelle Elam-Noll, J Michael White, Daiana M Vota, Vanesa C Hauk, Jeffrey I Gordon, Scott A Handley, Michael S Diamond
Fetal Mavs And Type I Ifn Signaling Pathways Control Zikv Infection In The Placenta And Maternal Decidua, Yael Alippe, Leran Wang, Reyan Coskun, Stéfanie P Muraro, Fang R Zhao, Michelle Elam-Noll, J Michael White, Daiana M Vota, Vanesa C Hauk, Jeffrey I Gordon, Scott A Handley, Michael S Diamond
2020-Current year OA Pubs
The contribution of placental immune responses to congenital Zika virus (ZIKV) syndrome remains poorly understood. Here, we leveraged a mouse model of ZIKV infection to identify mechanisms of innate immune restriction exclusively in the fetal compartment of the placenta. ZIKV principally infected mononuclear trophoblasts in the junctional zone, which was limited by mitochondrial antiviral-signaling protein (MAVS) and type I interferon (IFN) signaling mechanisms. Single nuclear RNA sequencing revealed MAVS-dependent expression of IFN-stimulated genes (ISGs) in spongiotrophoblasts but not in other placental cells that use alternate pathways to induce ISGs. ZIKV infection of Ifnar1-/- or Mavs-/- placentas was associated with greater …