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Articles 901 - 930 of 7166
Full-Text Articles in Entire DC Network
Parp Inhibitor Response Is Enhanced In Prostate Cancer When Xrcc1 Expression Is Reduced, Kaveri Goel, Vani Venkatappa, Kimiko L Krieger, Dongquan Chen, Arun Sreekumar, Natalie R Gassman
Parp Inhibitor Response Is Enhanced In Prostate Cancer When Xrcc1 Expression Is Reduced, Kaveri Goel, Vani Venkatappa, Kimiko L Krieger, Dongquan Chen, Arun Sreekumar, Natalie R Gassman
Faculty, Staff and Students Publications
Prostate cancer (PCa) is the second most common cancer worldwide and the fifth leading cause of cancer-related deaths among men. The emergence of metastatic castration-resistant prostate cancer (mCRPC) after androgen deprivation therapy (ADT) exemplifies the complex disease management for PCa. PARP inhibitors (PARPis) are being tested to treat mCRPC in tumors with defective homologous recombination repair (HRR) to address this complexity. However, increasing resistance towards PARPi in HRR-deficient patients and the low percentage of HRR-defective mCRPC patients requires the identification of new genes whose deficiency can be exploited for PARPi treatment. XRCC1 is a DNA repair protein critical in the …
Interactions Between Adgrf1 (Gpr110) And Extracellular Matrix Proteins Govern Its Effects On Tumorigenesis In Her2-Positive Breast Cancer, Noor Mazin Abdulkareem, Raksha Bhat, Micah Castillo, Sung Yun Jung, Suhas Vasaikar, Sarmistha Nanda, Alexis Ruiz, Martin Shea, Wangjia Cao, Jamunarani Veeraraghavan, Hee-Yong Kim, Tasneem Bawa-Khalfe, Tahir Hussain, Xinli Liu, Preethi Gunaratne, Rachel Schiff, Meghana V Trivedi
Interactions Between Adgrf1 (Gpr110) And Extracellular Matrix Proteins Govern Its Effects On Tumorigenesis In Her2-Positive Breast Cancer, Noor Mazin Abdulkareem, Raksha Bhat, Micah Castillo, Sung Yun Jung, Suhas Vasaikar, Sarmistha Nanda, Alexis Ruiz, Martin Shea, Wangjia Cao, Jamunarani Veeraraghavan, Hee-Yong Kim, Tasneem Bawa-Khalfe, Tahir Hussain, Xinli Liu, Preethi Gunaratne, Rachel Schiff, Meghana V Trivedi
Faculty, Staff and Students Publications
Background and purpose: We and others have previously shown that ADGRF1, an adhesion G protein-coupled receptor, is overexpressed and associated with poor survival in many cancers, including human epidermal growth factor receptor-2 (HER2) breast cancer (BC). Also, we have reported the tumour-promoting function of ADGRF1 using preclinical models of HER2+ BC. In this study, we investigated the effect of ADGRF1 overexpression in an orthotopic in vivo model as well as downstream signalling of ADGRF1 in HER2+ BC.
Experimental approach: We utilized a doxycycline (Dox)-induced ADGRF1 overexpression system in HER2+ BC cell lines and performed various in vitro and in vivo …
Characteristic Profiling Of Cho-Cell Expressed Mers-Cov Rbd-Fc, Mashal M Almutairi, Yi-Lin Chen, Jungsoon Lee, Zhuyun Liu, Ulrich Strych, Peter J Hotez, Maria Elena Bottazzi, Wen-Hsiang Chen
Characteristic Profiling Of Cho-Cell Expressed Mers-Cov Rbd-Fc, Mashal M Almutairi, Yi-Lin Chen, Jungsoon Lee, Zhuyun Liu, Ulrich Strych, Peter J Hotez, Maria Elena Bottazzi, Wen-Hsiang Chen
Faculty, Staff and Students Publications
The ongoing circulation of the Middle East Respiratory Syndrome coronavirus (MERS-CoV) in camels across Asia, the Middle East, and Africa, along with its occasional transmission to humans, demonstrates a need for a MERS vaccine. Previously, we have reported a receptor binding domain (RBD) of MERS-CoV fused with human Fc as a promising vaccine antigen (MERS-CoV RBD-Fc). We generated a stable recombinant CHO cell line expressing such a protein and developed a basic production process suitable for future technological transfer to pilot-scale manufacture. In this study, we employed various in-house analytical assays to examine the characteristics of purified RBD-Fc protein and …
Biomolecular Condensates In Immune Cell Fate, Srikanth Kodali, Caroline M Sands, Lei Guo, Yun Huang, Bruno Di Stefano
Biomolecular Condensates In Immune Cell Fate, Srikanth Kodali, Caroline M Sands, Lei Guo, Yun Huang, Bruno Di Stefano
Faculty, Staff and Students Publications
Fate decisions during immune cell development require temporally precise changes in gene expression. Evidence suggests that the dynamic modulation of these changes is associated with the formation of diverse, membrane-less nucleoprotein assemblies that are termed biomolecular condensates. These condensates are thought to orchestrate fate-determining transcriptional and post-transcriptional processes by locally and transiently concentrating DNA or RNA molecules alongside their regulatory proteins. Findings have established a link between condensate formation and the gene regulatory networks that ensure the proper development of immune cells. Conversely, condensate dysregulation has been linked to impaired immune cell fates, including ageing and malignant transformation. This Review …
Innovations In Intestinal Organoid Technology Featuring An Open Apical Surface, Ye Chen, Yi Wang
Innovations In Intestinal Organoid Technology Featuring An Open Apical Surface, Ye Chen, Yi Wang
2020-Current year OA Pubs
Since the development of the three-dimensional (3D) "mini-gut" culture system, adult stem cell-derived organoid technology has rapidly advanced, providing in vitro models that replicate key cellular, molecular, and physiological properties of multiple organs. The 3D intestinal organoid system has resolved many long-standing challenges associated with immortalized or cancer cell cultures, offering unparalleled capabilities for modeling gastrointestinal development and diseases. However, significant limitations remain, including restricted accessibility to the epithelial apical surface for studying host-microbe interactions, interruptions in modeling chronic gastrointestinal diseases due to frequent passaging and dissociation, and the absence of mechanical cues such as peristalsis and luminal flow, which …
Measles, Mumps, Rubella Immunization And The Resurgence Of Measles In America, Peter J Hotez
Measles, Mumps, Rubella Immunization And The Resurgence Of Measles In America, Peter J Hotez
Faculty, Staff and Students Publications
No abstract provided.
Aged Regulatory T Cells Fail To Control Autoimmune Lacrimal Gland Pathogenic Cd4+ T Cells, Kaitlin K Scholand, Laura Schaefer, Gowthaman Govindarajan, Zhiyuan Yu, Jeremias G Galletti, Cintia S De Paiva
Aged Regulatory T Cells Fail To Control Autoimmune Lacrimal Gland Pathogenic Cd4+ T Cells, Kaitlin K Scholand, Laura Schaefer, Gowthaman Govindarajan, Zhiyuan Yu, Jeremias G Galletti, Cintia S De Paiva
Faculty, Staff and Students Publications
CD25KO mice are a model of Sjögren disease. CD25KO mice have severe inflammation and infiltrating lymphocytes to the lacrimal glands (LG). Whether the pathogenicity of CD25KO CD4+ T cells can be controlled in vivo by Tregs is unknown. Eight-week-old B6 and CD25KO mice LGs were submitted for RNA bulk sequencing. A total of 3481 genes were differentially expressed in CD25KO LG compared to B6. Tear washing analysis identified CD25KO mice had elevated protein levels of TNF, IFN-γ, and CCL5 and decreased protein levels of IL-12p40 and VEGF-A. Co-adoptive transfer of CD25KO CD4+ T cells with either young or aged B6 …
The Aging Ovary Stands On The Shoulders Of Giant Multinucleated Cells, Avery A Ahmed, Stephanie A Pangas
The Aging Ovary Stands On The Shoulders Of Giant Multinucleated Cells, Avery A Ahmed, Stephanie A Pangas
Faculty, Staff and Students Publications
Reproductive aging is associated with declining fertility and increasing inflammation, though these events are not well understood. An exciting new study in PLOS Biology utilizes cutting-edge technologies to characterize the role of multinucleated giant cells in ovarian aging.
G-Protein Coupled Receptors In Metabolic Reprogramming And Cancer, Songyeon Ahn, Benny Abraham Kaipparettu
G-Protein Coupled Receptors In Metabolic Reprogramming And Cancer, Songyeon Ahn, Benny Abraham Kaipparettu
Faculty, Staff and Students Publications
G-protein coupled receptors (GPCR) are one of the frequently investigated drug targets. GPCRs are involved in many human pathophysiologies that lead to various disease conditions, such as cancer, diabetes, and obesity. GPCR receptor activates multiple signaling pathways depending on the ligand and tissue type. However, this review will be limited to the GPCR-mediated metabolic modulations and the activation of relevant signaling pathways in cancer therapy. Cancer cells often have reprogrammed cell metabolism to support tumor growth and metastatic plasticity. Many aggressive cancer cells maintain a hybrid metabolic status, using both glycolysis and mitochondrial metabolism for better metabolic plasticity. In addition …
Rna Interference In Protozoan Parasites And Its Application, Lon-Fye Lye, Deborah E Dobson, Stephen M Beverley, Min-Che Tung
Rna Interference In Protozoan Parasites And Its Application, Lon-Fye Lye, Deborah E Dobson, Stephen M Beverley, Min-Che Tung
2020-Current year OA Pubs
RNA interference (RNAi) is a biological process in which RNA molecules are involved in sequence-specific suppression of gene expression, via small RNA triggers derived from double-stranded RNA that can target specific genes; it is a natural process that plays a role in both the regulation of protein synthesis and in immunity. Discovery of RNAi by Fire and Mello in 1998 had a profound impact on unraveling novel aspects of eukaryotic biology. RNA interference (RNAi) has proven to be an immensely useful tool for studying gene function and validation of potential drug targets in almost all organisms. A great advance in …
Anti-Viral Cd8 Central Memory Veto Cells As A New Platform For Car T Cell Therapy, Wei-Hsin Liu, Anat Globerson Levin, Assaf Lask, Galit Horn, Tova Waks, Bar Nathansohn Levi, Irit Milman Krentsis, Einav Shoshan, Xiaohua Su, Maksim Mamonkin, Richard E Champlin, Yair Reisner, Esther Bachar Lustig
Anti-Viral Cd8 Central Memory Veto Cells As A New Platform For Car T Cell Therapy, Wei-Hsin Liu, Anat Globerson Levin, Assaf Lask, Galit Horn, Tova Waks, Bar Nathansohn Levi, Irit Milman Krentsis, Einav Shoshan, Xiaohua Su, Maksim Mamonkin, Richard E Champlin, Yair Reisner, Esther Bachar Lustig
Faculty, Staff and Student Publications
Central memory CD8 T cells exhibit marked veto activity enhancing engraftment in several mouse models of T cell-depleted bone marrow (TDBM) allografting. Graft-versus-host disease (GVHD) can be prevented by stimulation of mouse or human memory CD8 T cells against their cognate antigens under cytokine deprivation, in the early phase of culture followed by further expansion with IL21, IL15, and IL7. Thus, human anti-viral CD8 central memory veto T cells generated from CMV and EBV-positive donors are currently evaluated in a clinical trial at MD Anderson Cancer Centre (MDACC). Results in 15 patients indicate a low risk of GVHD. Considering that …
Neovascular Pruning By Ido1 Inhibitors Can Potentiate Immunogenic Cytotoxicity Of Ischemia-Targeted Agents To Synergistically Enhance Anti-Pd-1 Responsiveness, Shih-Chun Shen, Souvik Dey, James B. Duhadaway, Erika Sutanto-Ward, Maurice T. Hampton, Serguei V. Kozlov, George C. Prendergast, Alexander J. Muller
Neovascular Pruning By Ido1 Inhibitors Can Potentiate Immunogenic Cytotoxicity Of Ischemia-Targeted Agents To Synergistically Enhance Anti-Pd-1 Responsiveness, Shih-Chun Shen, Souvik Dey, James B. Duhadaway, Erika Sutanto-Ward, Maurice T. Hampton, Serguei V. Kozlov, George C. Prendergast, Alexander J. Muller
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
BACKGROUND: Strategies for deploying indoleamine 2,3-dioxygenase 1 (IDO1)-targeted therapies for use against cancer have focused on IDO1's role in promoting peripheral immune tolerance that shields tumors from effector T cells. However, preclinical investigation of both primary and metastatic tumor development in the lungs has uncovered a previously unappreciated role for IDO1 in directing a counterregulatory response to interferon (IFN)-γ that realigns the local inflammatory environment to promote tumor neovascularization. Understanding how to therapeutically leverage the ability of IDO1 inhibitors to subvert inflammatory neovascularization within the tumor microenvironment has potential ramifications for future clinical development of these compounds.
METHODS: Pulmonary metastases …
Runx2 Is Essential For Maintaining Synchondrosis Chondrocytes And Cranial Base Growth, Shawn A Hallett, Ashley Dixon, Isabella Marrale, Lena Batoon, José Brenes, Annabelle Zhou, Ariel Arbiv, Vesa Kaartinen, Benjamin Allen, Wanida Ono, Renny T Franceschi, Noriaki Ono
Runx2 Is Essential For Maintaining Synchondrosis Chondrocytes And Cranial Base Growth, Shawn A Hallett, Ashley Dixon, Isabella Marrale, Lena Batoon, José Brenes, Annabelle Zhou, Ariel Arbiv, Vesa Kaartinen, Benjamin Allen, Wanida Ono, Renny T Franceschi, Noriaki Ono
Faculty, Staff and Student Publications
The cranial base synchondroses, comprised of opposite-facing bidirectional chondrocyte layers, drive anteroposterior cranial base growth. In humans, RUNX2 haploinsufficiency causes cleidocranial dysplasia associated with deficient midfacial growth. However, how RUNX2 regulates chondrocytes in the cranial base synchondroses remains unknown. To address this, we inactivated Runx2 in postnatal synchondrosis chondrocytes using a tamoxifen-inducible Fgfr3-creER (Fgfr3-Runx2cKO) mouse model. Fgfr3-Runx2cKO mice displayed skeletal dwarfism and reduced anteroposterior cranial base growth associated with premature synchondrosis ossification due to impaired chondrocyte proliferation, accelerated hypertrophy, apoptosis, and osteoclast-mediated cartilage resorption. Lineage tracing reveals that Runx2-deficient Fgfr3+ cells failed to differentiate into osteoblasts. Notably, Runx2-deficient chondrocytes showed …
Spatiotemporal Calcium Signaling Patterns Underlying Opposing Effects Of Histamine And Tas2r Agonists In Airway Smooth Muscle, Stanley Conaway, Joshua Richard, Deepak A. Deshpande
Spatiotemporal Calcium Signaling Patterns Underlying Opposing Effects Of Histamine And Tas2r Agonists In Airway Smooth Muscle, Stanley Conaway, Joshua Richard, Deepak A. Deshpande
Center for Translational Medicine Faculty Papers
Intracellular calcium (Ca2+) release via phospholipase C (PLC) following G-protein-coupled receptor (GPCR) activation is typically linked to membrane depolarization and airway smooth muscle (ASM) contraction. However, recent findings show that bitter taste receptor agonists, such as chloroquine (CQ), induce a paradoxical and potent relaxation response despite activating the Ca2+ signaling pathway. This relaxation has been hypothesized to be driven by a distinct compartmentalization of calcium ions toward the cellular periphery, subsequently leading to membrane hyperpolarization, in contrast to the contractile effects of histamine. In this study, we further investigate the spatiotemporal dynamics of Ca2+ signaling in …
Stathmin-2 Enhances Motor Axon Regeneration After Injury Independent Of Its Binding To Tubulin., Melinda S Beccari, Olatz Arnold-Garcia, Michael W Baughn, Jonathan W Artates, Melissa Mcalonis-Downes, Jaisen Lim, Dulce Fernanda Leyva-Cázares, Hugo Isaac Rubio-Lara, Andrea Ramirez-Rodriguez, Carol N Bernal-Buenrostro, Brian Murgia-Bay, Carolina K Rangel, Dong Hyun Kim, Ze'ev Melamed, Cathleen Lutz, Clotilde Lagier-Tourenne, Kevin D Corbett, Jone López-Erauskin, Don W Cleveland
Stathmin-2 Enhances Motor Axon Regeneration After Injury Independent Of Its Binding To Tubulin., Melinda S Beccari, Olatz Arnold-Garcia, Michael W Baughn, Jonathan W Artates, Melissa Mcalonis-Downes, Jaisen Lim, Dulce Fernanda Leyva-Cázares, Hugo Isaac Rubio-Lara, Andrea Ramirez-Rodriguez, Carol N Bernal-Buenrostro, Brian Murgia-Bay, Carolina K Rangel, Dong Hyun Kim, Ze'ev Melamed, Cathleen Lutz, Clotilde Lagier-Tourenne, Kevin D Corbett, Jone López-Erauskin, Don W Cleveland
Faculty Research 2025
Stathmin-2 (also known as SCG10) is encoded by the STMN2 gene, whose mRNA is one of the most abundantly expressed in human motor neurons. In almost all instances of ALS and other TDP-43 proteinopathies, stathmin-2 encoding mRNAs are cryptically spliced and polyadenylated in motor neurons, a pathogenic consequence of nuclear loss of function of the RNA binding protein TDP-43. While stathmin-2 has been shown to enhance regeneration after axonal injury to axons of cultured motor neurons, here, we show that after crush injury within the adult murine nervous system of wild-type or stathmin-2-null mice, the presence of stathmin-2 reduces …
Optogenetic Activation Of Cortical Microglia Promotes Neuronal Activity And Pain Hypersensitivity, Min-Hee Yi, Yi Liu, Yong U Liu, Jinkyung Lee, Priyanka Hanumaihgari, Sebastian Parusel, Dale B Bosco, Lingxiao Wang, Jiaying Zheng, Wu Shi, Lattawat Eauchai, Supin Chompoopong, Christine L Hunt, Long-Jun Wu
Optogenetic Activation Of Cortical Microglia Promotes Neuronal Activity And Pain Hypersensitivity, Min-Hee Yi, Yi Liu, Yong U Liu, Jinkyung Lee, Priyanka Hanumaihgari, Sebastian Parusel, Dale B Bosco, Lingxiao Wang, Jiaying Zheng, Wu Shi, Lattawat Eauchai, Supin Chompoopong, Christine L Hunt, Long-Jun Wu
The Brown Foundation: Institute of Molecular Medicine
Chronic pain following peripheral nerve injury is accompanied by increased neuronal activity in the somatosensory cortex. However, whether and how cortical microglia contribute to these changes is less understood. To this end, we applied an optogenetic strategy to specifically target cortical microglia and investigate their function in behavioral pain sensitization. We found that optogenetic activation of microglia in the primary somatosensory cortex (S1) via red-activated channelrhodopsin (ReaChR) triggered pain hypersensitivity and affective-motivational responses in mice. Remarkably, S1-targeted optogenetic stimulation increased microglial landscape changes and ATP release. In addition, optogenetic stimulation altered the microglial proteomic profile, upregulated neuronal c-Fos expression, and …
Mechanisms Of Photoreceptor Protection Upon Targeting The Nrl-Nr2e3 Pathway, Daniel P Murphy, Alexander V Kolesnikov, Cynthia L Montana, Zaid M Khaja, Yu Liu, Vladimir J Kefalov, Joseph C Corbo
Mechanisms Of Photoreceptor Protection Upon Targeting The Nrl-Nr2e3 Pathway, Daniel P Murphy, Alexander V Kolesnikov, Cynthia L Montana, Zaid M Khaja, Yu Liu, Vladimir J Kefalov, Joseph C Corbo
2020-Current year OA Pubs
Acute knockout of the rod photoreceptor transcription factor
Control Of Alveolar Bone Development, Homeostasis, And Socket Healing By Salt-Inducible Kinases, Nicha Tokavanich, Byron Chan, Katelyn Strauss, Christian D Castro Andrade, Yuki Arai, Mizuki Nagata, Marc Foretz, Daniel J Brooks, Noriaki Ono, Wanida Ono, Marc N Wein
Control Of Alveolar Bone Development, Homeostasis, And Socket Healing By Salt-Inducible Kinases, Nicha Tokavanich, Byron Chan, Katelyn Strauss, Christian D Castro Andrade, Yuki Arai, Mizuki Nagata, Marc Foretz, Daniel J Brooks, Noriaki Ono, Wanida Ono, Marc N Wein
Faculty, Staff and Student Publications
Alveolar bone supports and anchors teeth. The parathyroid hormone-related protein (PTHrP) pathway plays a key role in alveolar bone biology. Salt-inducible kinases (SIKs) are important downstream regulators of PTH/PTHrP signaling in the appendicular skeleton, where SIK inhibition increases bone formation and trabecular bone mass. However, the function of these kinases in alveolar bone remains unknown. Here, we report a critical role for SIK2/SIK3 in alveolar bone development, homeostasis, and socket healing after tooth extraction. Inducible SIK2/SIK3 (Ubq-creERt;Sik2f/f;Sik3f/f) deletion led to dramatic alveolar bone defects without changes in tooth eruption. Ablating these kinases impairs alveolar bone formation due to disrupted osteoblast …
The Effect Of Celecoxib And Mumab911 On Strain Adaptive Bone Remodeling And Fracture Repair In Female Mice: Implications For Rapidly Progressive Osteoarthritis, Nicholas Ruggiero, Alexandra Ciuciu, Ashkan Sedigh, Ibtesam Rajpar, David Shelton, Patrice Belanger, Kathryn Gropp, John A. Collins, Theresa A. Freeman, Ryan E. Tomlinson
The Effect Of Celecoxib And Mumab911 On Strain Adaptive Bone Remodeling And Fracture Repair In Female Mice: Implications For Rapidly Progressive Osteoarthritis, Nicholas Ruggiero, Alexandra Ciuciu, Ashkan Sedigh, Ibtesam Rajpar, David Shelton, Patrice Belanger, Kathryn Gropp, John A. Collins, Theresa A. Freeman, Ryan E. Tomlinson
Department of Orthopaedic Surgery Faculty Papers
Debilitating pain is the primary clinical feature of osteoarthritis (OA) that drives the enormous healthcare costs. Osteoarthritis-related pain is often treated with non-steroidal anti-inflammatory drugs (NSAIDs), which effectively relieve pain and inflammation by inhibition of prostaglandin synthesis. Antibodies directed against nerve growth factor (NGF) were tested some time ago as an alternative potential analgesic for musculoskeletal pain, including osteoarthritis-related pain. Unfortunately, clinical development of these drugs was put on hold due to adverse outcomes - primarily rapidly progressive osteoarthritis. Both prostaglandin synthesis and NGF have been implicated as critical mediators of strain adaptive bone remodeling, which may play a role …
Multicomponent Parenteral Lipid Emulsions Do Not Prevent Liver Injury In Neonatal Pigs With Obstructive Cholestasis, Greg Guthrie, Caitlin Vonderohe, Valeria Meléndez Hebib, Barbara Stoll, Douglas Burrin
Multicomponent Parenteral Lipid Emulsions Do Not Prevent Liver Injury In Neonatal Pigs With Obstructive Cholestasis, Greg Guthrie, Caitlin Vonderohe, Valeria Meléndez Hebib, Barbara Stoll, Douglas Burrin
Children’s Nutrition Research Center Staff Publications
Biliary atresia (BA) is a pediatric liver disease that often necessitates parenteral nutrition (PN) to support growth due to impaired liver function. While soy-based lipid emulsions (SLE) are commonly used in PN, they may contribute to cholestatic liver injury. In contrast, mixed lipid emulsions (MLE) show promise in preventing cholestasis in infants without BA, potentially by restoring bile flow. However, their effectiveness in patients of complete bile duct obstruction, as seen in BA, remains uncertain. To explore the potential benefits of MLE in BA, we utilized a neonatal pig model of bile duct ligation (BDL). Pigs underwent either BDL or …
The Perk/Atf4 Pathway Is Required For Metabolic Reprogramming And Progressive Lung Fibrosis, Jyotsana Pandey, Jennifer L Larson-Casey, Mallikarjun H Patil, Chao He, Nisarat Pinthong, A Brent Carter
The Perk/Atf4 Pathway Is Required For Metabolic Reprogramming And Progressive Lung Fibrosis, Jyotsana Pandey, Jennifer L Larson-Casey, Mallikarjun H Patil, Chao He, Nisarat Pinthong, A Brent Carter
Faculty, Staff and Students Publications
Asbestosis is a prototypical type of fibrosis that is progressive and does not resolve. ER stress is increased in multiple cell types that contribute to fibrosis; however, the mechanism(s) by which ER stress in lung macrophages contributes to fibrosis is poorly understood. Here, we show that ER stress resulted in protein kinase RNA-like ER kinase (PERK; Eif2ak3) activation in humans with asbestosis. Similar results were seen in asbestos-injured mice. Mice harboring a conditional deletion of Eif2ak3 were protected from fibrosis. Lung macrophages from asbestosis individuals had evidence of metabolic reprogramming to fatty acid oxidation (FAO). Eif2ak3fl/fl mice had increased oxygen …
In Vivo Crispr Activation Screen Identifies Acyl-Coa-Binding Protein As A Driver Of Bone Metastasis, Hongqi Teng, Qinglei Hang, Caishang Zheng, Yuelong Yan, Shaomin Liu, Yang Zhao, Yalan Deng, Litong Nie, Weiche Wu, Marisela Sheldon, Zachary Yu, Wei Shi, Jianxuan Gao, Chenling Meng, Consuelo Martinez, Jie Zhang, Fan Yao, Yutong Sun, Di Zhao, Boyi Gan, Tong Meng, Li Ma
In Vivo Crispr Activation Screen Identifies Acyl-Coa-Binding Protein As A Driver Of Bone Metastasis, Hongqi Teng, Qinglei Hang, Caishang Zheng, Yuelong Yan, Shaomin Liu, Yang Zhao, Yalan Deng, Litong Nie, Weiche Wu, Marisela Sheldon, Zachary Yu, Wei Shi, Jianxuan Gao, Chenling Meng, Consuelo Martinez, Jie Zhang, Fan Yao, Yutong Sun, Di Zhao, Boyi Gan, Tong Meng, Li Ma
Faculty, Staff and Student Publications
One of the most common sites of cancer metastasis is to the bone. Bone metastasis is associated with substantial morbidity and mortality, and current therapeutic interventions remain largely palliative. Metastasizing tumor cells need to reprogram their metabolic states to adapt to the nutrient environment of distant organs; however, the role and translational relevance of lipid metabolism in bone metastasis remain unclear. Here, we used an in vivo CRISPR activation screening system coupled with positive selection to identify acyl-coenzyme A (CoA) binding protein (ACBP) as a bone metastasis driver. In nonmetastatic and weakly metastatic cancer cells, overexpression of wild-type ACBP, but …
Caspase-11 Drives Macrophage Hyperinflammation In Models Of Polg-Related Mitochondrial Disease., Jordyn J Vanportfliet, Yuanjiu Lei, Muthumeena Ramanathan, Camila Guerra Martinez, Jessica Wong, Tim J Stodola, Brian Hoffmann, Kathryn Pflug, Raquel Sitcheran, Stephen C. Kneeland, Stephen A Murray, Peter J Mcguire, Carolyn L Cannon, A Phillip West
Caspase-11 Drives Macrophage Hyperinflammation In Models Of Polg-Related Mitochondrial Disease., Jordyn J Vanportfliet, Yuanjiu Lei, Muthumeena Ramanathan, Camila Guerra Martinez, Jessica Wong, Tim J Stodola, Brian Hoffmann, Kathryn Pflug, Raquel Sitcheran, Stephen C. Kneeland, Stephen A Murray, Peter J Mcguire, Carolyn L Cannon, A Phillip West
Faculty Research 2025
Mitochondrial diseases (MtD) represent a significant public health challenge due to their heterogenous clinical presentation, often severe and progressive symptoms, and lack of effective therapies. Environmental exposures, such bacterial and viral infection, can further compromise mitochondrial function and exacerbate the progression of MtD. However, the underlying immune alterations that enhance immunopathology in MtD remain unclear. Here we employ in vitro and in vivo approaches to clarify the molecular and cellular basis for innate immune hyperactivity in models of polymerase gamma (Polg)-related MtD. We reveal that type I interferon (IFN-I)-mediated upregulation of caspase-11 and guanylate-binding proteins (GBP) increase macrophage sensing of …
Histone Methyltransferase Ash1l Primes Metastases And Metabolic Reprogramming Of Macrophages In The Bone Niche, Chenling Meng, Kevin Lin, Wei Shi, Hongqi Teng, Xinhai Wan, Anna Debruine, Yin Wang, Xin Liang, Javier Leo, Feiyu Chen, Qianlin Gu, Jie Zhang, Vivien Van, Kiersten L Maldonado, Boyi Gan, Li Ma, Yue Lu, Di Zhao
Histone Methyltransferase Ash1l Primes Metastases And Metabolic Reprogramming Of Macrophages In The Bone Niche, Chenling Meng, Kevin Lin, Wei Shi, Hongqi Teng, Xinhai Wan, Anna Debruine, Yin Wang, Xin Liang, Javier Leo, Feiyu Chen, Qianlin Gu, Jie Zhang, Vivien Van, Kiersten L Maldonado, Boyi Gan, Li Ma, Yue Lu, Di Zhao
Faculty, Staff and Student Publications
Bone metastasis is a major cause of cancer death; however, the epigenetic determinants driving this process remain elusive. Here, we report that histone methyltransferase ASH1L is genetically amplified and is required for bone metastasis in men with prostate cancer. ASH1L rewires histone methylations and cooperates with HIF-1α to induce pro-metastatic transcriptome in invading cancer cells, resulting in monocyte differentiation into lipid-associated macrophage (LA-TAM) and enhancing their pro-tumoral phenotype in the metastatic bone niche. We identified IGF-2 as a direct target of ASH1L/HIF-1α and mediates LA-TAMs' differentiation and phenotypic changes by reprogramming oxidative phosphorylation. Pharmacologic inhibition of the ASH1L-HIF-1α-macrophages axis elicits …
Ccaat/Enhancer-Binding Proteins Α And Β Regulate Ovulation And Gene Expression Via Dose- And Stage-Dependent Mechanisms, Hanxue Zhang, Rainer B Lanz, Jimmy Dhillon, Paul D Soloway, Bo Shui, Yi Athena Ren
Ccaat/Enhancer-Binding Proteins Α And Β Regulate Ovulation And Gene Expression Via Dose- And Stage-Dependent Mechanisms, Hanxue Zhang, Rainer B Lanz, Jimmy Dhillon, Paul D Soloway, Bo Shui, Yi Athena Ren
Faculty, Staff and Students Publications
The preovulatory luteinizing hormone (LH) surge orchestrates complex cellular and molecular events leading to ovulation. CCAAT/enhancer-binding proteins α and β (C/EBPα/β) are transcription factors acutely induced by the LH surge and crucial for ovulation and granulosa cell luteinization. However, biological processes (BPs) and their regulatory mechanisms downstream of C/EBPα/β in the preovulatory ovary are not completely understood. To address this knowledge gap, we generated Cebpa/bfl/fl;Pgr-Cre mutants and compared them with Cebpa/bfl/fl;Cyp19a1-Cre mutant female mice: Cebpa/bfl/fl;Cyp19a1-Cre mutants have undetectable levels of C/EBPα/β throughout the preovulatory stages and do not ovulate, aligning with previous reports; and Cebpa/bfl/fl;Pgr-Cre mutants present gradual depletion of …
Functional Analysis Of Pathogenic Variants In Lamb1-Related Leukoencephalopathy Reveals Genotype-Phenotype Correlations And Suggests Its Role In Glial Cells, Rei Yasuda, Hirokazu Hashimoto, Mikiko Oka, Jung-Wan Mok, Marium Waqar, Brigitte Dauwalder, Oguz Kanca, Toshiki Mizuno, Shinya Yamamoto
Functional Analysis Of Pathogenic Variants In Lamb1-Related Leukoencephalopathy Reveals Genotype-Phenotype Correlations And Suggests Its Role In Glial Cells, Rei Yasuda, Hirokazu Hashimoto, Mikiko Oka, Jung-Wan Mok, Marium Waqar, Brigitte Dauwalder, Oguz Kanca, Toshiki Mizuno, Shinya Yamamoto
Faculty, Staff and Students Publications
Laminin B1 (LAMB1) is one of the extracellular matrix (ECM) proteins that make up the basement membrane. Early frameshift, late frameshift, and missense variants in LAMB1 have been reported to cause rare monogenic neurological disorders that are collectively known as LAMB1-related leukoencephalopathy. Although there is some genotype-phenotype correlation, functional consequences of pathogenic LAMB1 variants are largely unknown. In this study, we aimed to elucidate function of the fly ortholog of this gene (LanB1) in the nervous system and to further study the functional consequences of the LAMB1 variants using Drosophila melanogaster. We found that the LanB1 gene is expressed on …
St6galnac-I Regulates Tumor Cell Sialylation Via Nectin2/Muc5ac-Mediated Immunosuppression And Angiogenesis In Non-Small Cell Lung Cancer, Muthamil Iniyan Appadurai, Sanjib Chaudhary, Ashu Shah, Gopalakrishnan Natarajan, Zahraa W. Alsafwani, Parvez Khan, Dhananjay D. Shinde, Subodh M. Lele, Lynette M. Smith, Mohd W. Nasser, Surinder K. Batra, Apar Kishor Ganti, Imayavaramban Lakshmanan
St6galnac-I Regulates Tumor Cell Sialylation Via Nectin2/Muc5ac-Mediated Immunosuppression And Angiogenesis In Non-Small Cell Lung Cancer, Muthamil Iniyan Appadurai, Sanjib Chaudhary, Ashu Shah, Gopalakrishnan Natarajan, Zahraa W. Alsafwani, Parvez Khan, Dhananjay D. Shinde, Subodh M. Lele, Lynette M. Smith, Mohd W. Nasser, Surinder K. Batra, Apar Kishor Ganti, Imayavaramban Lakshmanan
Journal Articles: Biochemistry & Molecular Biology
Glycosylation controls immune evasion, tumor progression, and metastasis. However, how tumor cell sialylation regulates immune evasion remains poorly characterized. ST6GalNAc-I, a sialyltransferase that conjugates sialic acid to the glycans in glycoproteins, was overexpressed in an aggressive-type KPA (KrasG12D/+ Trp53R172H/+ Ad-Cre) lung adenocarcinoma (LUAD) model and patient samples. Proteomic and biochemical analysis indicated that ST6GalNAc-I mediated NECTIN2 sialylation in LUAD cells. ST6GalNAc-I-deficient tumor cells cocultured with T cells were more susceptible to T cell-mediated tumor cell killing, indicating a key role for NECTIN2 in T cell dysfunction. Mice injected with St6galnac-I-knockdown syngeneic cells showed reduced lung tumor incidence and Nectin2/Tigit-associated immunosuppression. …
The Lung Cancer Autochthonous Model Gene Expression Database Enables Cross-Study Comparisons Of The Transcriptomic Landscapes Across Mouse Models, Ling Cai, Fangjiang Wu, Qinbo Zhou, Ying Gao, Bo Yao, Ralph J Deberardinis, George K Acquaah-Mensah, Vassilis Aidinis, Jennifer E Beane, Shyam Biswal, Ting Chen, Carla P Concepcion-Crisol, Barbara M Grüner, Deshui Jia, Robert A Jones, Jonathan M Kurie, Min Gyu Lee, Per Lindahl, Yonathan Lissanu, Corina Lorz, David Macpherson, Rosanna Martinelli, Pawel K Mazur, Sarah A Mazzilli, Shinji Mii, Herwig P Moll, Roger A Moorehead, Edward E Morrisey, Sheng Rong Ng, Matthew G Oser, Arun R Pandiri, Charles A Powell, Giorgio Ramadori, Mirentxu Santos, Eric L Snyder, Rocio Sotillo, Kang-Yi Su, Tetsuro Taki, Kekoa Taparra, Phuoc T Tran, Yifeng Xia, J Edward Van Veen, Monte M Winslow, Guanghua Xiao, Charles M Rudin, Trudy G Oliver, Yang Xie, John D Minna
The Lung Cancer Autochthonous Model Gene Expression Database Enables Cross-Study Comparisons Of The Transcriptomic Landscapes Across Mouse Models, Ling Cai, Fangjiang Wu, Qinbo Zhou, Ying Gao, Bo Yao, Ralph J Deberardinis, George K Acquaah-Mensah, Vassilis Aidinis, Jennifer E Beane, Shyam Biswal, Ting Chen, Carla P Concepcion-Crisol, Barbara M Grüner, Deshui Jia, Robert A Jones, Jonathan M Kurie, Min Gyu Lee, Per Lindahl, Yonathan Lissanu, Corina Lorz, David Macpherson, Rosanna Martinelli, Pawel K Mazur, Sarah A Mazzilli, Shinji Mii, Herwig P Moll, Roger A Moorehead, Edward E Morrisey, Sheng Rong Ng, Matthew G Oser, Arun R Pandiri, Charles A Powell, Giorgio Ramadori, Mirentxu Santos, Eric L Snyder, Rocio Sotillo, Kang-Yi Su, Tetsuro Taki, Kekoa Taparra, Phuoc T Tran, Yifeng Xia, J Edward Van Veen, Monte M Winslow, Guanghua Xiao, Charles M Rudin, Trudy G Oliver, Yang Xie, John D Minna
Faculty, Staff and Student Publications
Lung cancer, the leading cause of cancer mortality, exhibits diverse histological subtypes and genetic complexities. Numerous preclinical mouse models have been developed to study lung cancer, but data from these models are disparate, siloed, and difficult to compare in a centralized fashion. In this study, we established the Lung Cancer Autochthonous Model Gene Expression Database (LCAMGDB), an extensive repository of 1,354 samples from 77 transcriptomic datasets covering 974 samples from genetically engineered mouse models (GEMMs), 368 samples from carcinogen-induced models, and 12 samples from a spontaneous model. Meticulous curation and collaboration with data depositors produced a robust and comprehensive database, …
G-Quadruplex Stabilizer Cx-5461 Effectively Combines With Radiotherapy To Target Α-Thalassemia/Mental Retardation X-Linked-Deficient Malignant Glioma, Sharvari Dharmaiah, Prit Benny Malgulwar, William E Johnson, Brandon A Chen, Vladislav Sharin, Benjamin T Whitfield, Christian Alvarez, Vasudev Tadimeti, Ahsan S Farooqi, Jason T Huse
G-Quadruplex Stabilizer Cx-5461 Effectively Combines With Radiotherapy To Target Α-Thalassemia/Mental Retardation X-Linked-Deficient Malignant Glioma, Sharvari Dharmaiah, Prit Benny Malgulwar, William E Johnson, Brandon A Chen, Vladislav Sharin, Benjamin T Whitfield, Christian Alvarez, Vasudev Tadimeti, Ahsan S Farooqi, Jason T Huse
Faculty, Staff and Student Publications
Background: Inactivation of α-thalassemia/mental retardation X-linked (ATRX) represents a defining molecular feature in large subsets of malignant glioma. ATRX deficiency gives rise to abnormal G-quadruplex (G4) DNA secondary structures, enhancing replication stress and genomic instability. Building on earlier work, we evaluated the extent to which pharmacological G4 stabilization selectively enhances DNA damage and cell death in ATRX-deficient preclinical glioma models.
Methods: Using the G4 stabilizer CX-5461, we treated patient-derived glioma stem cells (GSCs) in vitro and GSC flank and intracranial murine xenografts in vivo to evaluate efficacy as both a single agent and in combination with ionizing radiation (IR), the …
Ubiquitin-Conjugating Enzyme Ube2n Modulates Proteostasis In Immunoproteasome-Positive Acute Myeloid Leukemia, Chiharu Ishikawa, Laura Barreyro, Avery M Sampson, Kathleen M Hueneman, Kwangmin Choi, Sophia Y Philbrook, Issac Choi, Lyndsey C Bolanos, Mark Wunderlich, Andrew G Volk, Stephanie S Watowich, Kenneth D Greis, Daniel T Starczynowski
Ubiquitin-Conjugating Enzyme Ube2n Modulates Proteostasis In Immunoproteasome-Positive Acute Myeloid Leukemia, Chiharu Ishikawa, Laura Barreyro, Avery M Sampson, Kathleen M Hueneman, Kwangmin Choi, Sophia Y Philbrook, Issac Choi, Lyndsey C Bolanos, Mark Wunderlich, Andrew G Volk, Stephanie S Watowich, Kenneth D Greis, Daniel T Starczynowski
Faculty, Staff and Student Publications
Altered protein homeostasis through proteasomal degradation of ubiquitinated proteins is a hallmark of many cancers. Ubiquitination, coordinated by E1, E2, and E3 enzymes, involves up to 40 E2-conjugating enzymes in humans to specify substrates and ubiquitin linkages. In a screen for E2 dependencies in acute myeloid leukemia (AML), ubiquitin conjugating enzyme E2 N (UBE2N) emerged as the top candidate. To investigate UBE2N's role in AML, we characterized an enzymatically defective mouse model of UBE2N, revealing UBE2N's requirement in AML without an impact on normal hematopoiesis. Unlike other E2s, which mediate lysine-48 (K48) polyubiquitination and degradation of proteins, UBE2N primarily synthesizes …