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Distinct Intrinsic And Extrinsic Factors Differentially Regulate Skeletal Stem Cells In Calvaria Versus Long Bones During Bone Regeneration, Jea Solidum, Kohei Yamasaki, Youngjae Jeong, Laura Ortinau, Francisco Heralde, Dongsu Park Sep 2025

Distinct Intrinsic And Extrinsic Factors Differentially Regulate Skeletal Stem Cells In Calvaria Versus Long Bones During Bone Regeneration, Jea Solidum, Kohei Yamasaki, Youngjae Jeong, Laura Ortinau, Francisco Heralde, Dongsu Park

Faculty, Staff and Students Publications

Calvarial suture skeletal stem cells (Su-SSCs) are a distinct stem cell population for craniofacial bone formation by intramembranous ossification, compared to long bone periosteal SSCs (LB-PSSCs) with endochondral (osteochondrogenic) ossification. However, whether SSC intrinsic or extrinsic factors affect their differentiation process has not been well elucidated. Here, using an inducible Prx1-CreER-EGFP+/−;Rosa26-tdTomato mouse model, we observed that endogenous Prx1+ Su-SSCs and their orthotopic transplantation into calvarial injury do not form cartilage intermediates at the injury sites, while the transplantation of Prx1+ LB-PSSCs into LB injury induces osteochondrogenic differentiation, respectively. However, the heterotopic transplantation of Prx1+ Su-SSCs (Su-SSCs …


Lysosomes Signal Through The Epigenome To Regulate Longevity Across Generations, Qinghao Zhang, Weiwei Dang, Meng C Wang Sep 2025

Lysosomes Signal Through The Epigenome To Regulate Longevity Across Generations, Qinghao Zhang, Weiwei Dang, Meng C Wang

Faculty, Staff and Students Publications

The epigenome is sensitive to metabolic inputs and crucial for aging. Lysosomes act as a signaling hub to sense metabolic cues and regulate longevity. We find that lysosomal metabolic pathways signal through the epigenome to regulate transgenerational longevity in Caenorhabditis elegans. Activation of lysosomal lipid signaling and lysosomal adenosine monophosphate-activated protein kinase (AMPK) or reduction of lysosomal mechanistic-target-of-rapamycin (mTOR) signaling increased expression of a histone H3.3 variant and increased its methylation on K79, leading to lifespan extension across multiple generations. This transgenerational pro-longevity effect required intestine-to-germline transportation of histone H3.3 and a germline-specific H3K79 methyltransferase, and was recapitulated by …


Synthesis, Structure-Activity Relationships, And Antitumor Activities Of Quinoxiline-Containing Inhibitors Of The Protein-Protein Interactions Between Transcription Coactivator Af9/Enl And Dot1l/Af4, Chandra Bhushan Mishra, Xin Li, Bala Krishna Moku, Sehun Kwak, Dnyaneshwar N Garad, Yongcheng Song Sep 2025

Synthesis, Structure-Activity Relationships, And Antitumor Activities Of Quinoxiline-Containing Inhibitors Of The Protein-Protein Interactions Between Transcription Coactivator Af9/Enl And Dot1l/Af4, Chandra Bhushan Mishra, Xin Li, Bala Krishna Moku, Sehun Kwak, Dnyaneshwar N Garad, Yongcheng Song

Faculty, Staff and Students Publications

Mixed lineage leukemia (MLL) gene rearrangements cause ~75% of acute leukemia in infants and 5-10% in children and adults with poor clinical outcomes. Protein-protein interactions (PPI) between frequent MLL fusion partners AF9/ENL and AF4 or histone methyltransferase DOT1L are drug targets for MLL-rearranged (MLL-r) leukemia. Sixty-seven quinoxiline compounds were synthesized and tested for their ability to inhibit such PPIs. Compounds 16, 17, 59 and 63 were found to be potent inhibitors with IC50 values of 0.35-1.5 μM. Structure-activity relationships are discussed. Potent inhibitors can suppress expression of MLL target genes Myc and Meis1 and selectively block proliferation of MLL-r and …


Evolutionary Loss Of An Antibiotic Efflux Pump Increases Pseudomonas Aeruginosa Quorum Sensing Mediated Virulence In Vivo, Sheryl E Fernandes, Humberto Ortega, Mylene Vaillancourt, Anna Clara M Galdino, Aleksandr Stotland, Kyu Shik Mun, Diane Aguilar, Yohei Doi, Janet S Lee, Elizabeth B Burgener, Jeffrey E Barrick, Jeffrey W Schertzer, Peter Jorth Sep 2025

Evolutionary Loss Of An Antibiotic Efflux Pump Increases Pseudomonas Aeruginosa Quorum Sensing Mediated Virulence In Vivo, Sheryl E Fernandes, Humberto Ortega, Mylene Vaillancourt, Anna Clara M Galdino, Aleksandr Stotland, Kyu Shik Mun, Diane Aguilar, Yohei Doi, Janet S Lee, Elizabeth B Burgener, Jeffrey E Barrick, Jeffrey W Schertzer, Peter Jorth

2020-Current year OA Pubs

Antibiotic resistance is a threat to human health, yet recent work highlights how loss of resistance may drive pathogenesis in some bacteria. In two recent studies, we found that β-lactam antibiotics and nutrient stresses faced during infection selected for genetic inactivation of the Pseudomonas aeruginosa antibiotic efflux pump mexEFoprN. Unexpectedly, efflux pump mutations increased P. aeruginosa virulence during infection; however, neither the prevalence of mexEFoprN inactivating mutations in real human infections, nor the mechanisms driving increased virulence of efflux pump mutants are known. We hypothesized that human infection would select for virulence enhancing mutations. Using genome sequencing of clinical isolates, …


Site-1 Protease Is A Negative Regulator Of Sarcolipin Promoter Activity, Isha Sharma, Meredith O Kelly, Katelyn Hanners, Ella S Shin, Muhammad G Mousa, Shelby Ek, Gretchen A Meyer, Rita T Brookheart Sep 2025

Site-1 Protease Is A Negative Regulator Of Sarcolipin Promoter Activity, Isha Sharma, Meredith O Kelly, Katelyn Hanners, Ella S Shin, Muhammad G Mousa, Shelby Ek, Gretchen A Meyer, Rita T Brookheart

2020-Current year OA Pubs

The timed contraction and relaxation of myofibers in tissues such as the heart and skeletal muscle occur via the tightly regulated movement of calcium ions into and out of the sarcoplasmic reticulum (SR). In skeletal muscle, this phenomenon enables humans to exercise, perform day-to-day tasks, and to breathe. Sarcolipin, a small regulatory protein, prevents calcium ions from entering the SR by binding to and inhibiting SERCA, contributing to myofiber contraction. Disruptions in sarcolipin (SLN) expression are implicated in the pathophysiology of obesity and musculoskeletal disease. However, the mechanisms regulating sarcolipin expression are not clearly understood. We recently showed that site-1 …


Next-Gen Tools In Cancer Neuroscience, Vera Thiel, Debpali Sur, Caroline C Picoli, Tamara Mcerlain, Katalina Couto, David J Simon, Yuan Pan, Karen Olivia Dixon, Rajan P Kulkarni, Sebastien Talbot, Alexander Birbrair Sep 2025

Next-Gen Tools In Cancer Neuroscience, Vera Thiel, Debpali Sur, Caroline C Picoli, Tamara Mcerlain, Katalina Couto, David J Simon, Yuan Pan, Karen Olivia Dixon, Rajan P Kulkarni, Sebastien Talbot, Alexander Birbrair

Faculty, Staff and Student Publications

The emerging field of cancer neuroscience is rapidly evolving, driven by novel technologies and tools. These include advances in single-cell and spatial transcriptomics; genetic mouse models paired with automated high-throughput; and innovative optical electrophysiological approaches, optogenetics, chemogenetics, engineered viruses, and new methods for visualizing neuronal activity. Collectively, these technologies are revolutionizing how we investigate, manipulate, and characterize distinct components that contribute to the nervous system-cancer interface. In the present review, we discuss the key technologies that are closing the gap between oncology and neuroscience, highlighting the innovations that are propelling the cancer neuroscience field forward.


Rna/Dna-Binding Protein Tdp43 Regulates Dna Mismatch Repair Genes With Implications For Genome Stability, Vincent E Provasek, Albino Bacolla, Suganya Rangaswamy, Manohar Kodavati, Joy Mitra, Issa O Yusuf, Vikas H Malojirao, Velmarini Vasquez, Gavin W Britz, Guo-Min Li, Zuoshang Xu, Sankar Mitra, Ralph M Garruto, John A Tainer, Muralidhar L Hegde Sep 2025

Rna/Dna-Binding Protein Tdp43 Regulates Dna Mismatch Repair Genes With Implications For Genome Stability, Vincent E Provasek, Albino Bacolla, Suganya Rangaswamy, Manohar Kodavati, Joy Mitra, Issa O Yusuf, Vikas H Malojirao, Velmarini Vasquez, Gavin W Britz, Guo-Min Li, Zuoshang Xu, Sankar Mitra, Ralph M Garruto, John A Tainer, Muralidhar L Hegde

Faculty, Staff and Student Publications

TDP43 is an RNA/DNA-binding protein increasingly recognized for its role in neurodegenerative conditions, including amyotrophic lateral sclerosis (ALS) and frontotemporal dementia (FTD). As characterized by its aberrant nuclear export and cytoplasmic aggregation, TDP43 proteinopathy is a hallmark feature in over 95% of ALS/FTD cases, leading to detrimental cytosolic aggregates and a reduction in nuclear functionality in neurons. Building on our prior work linking TDP43 proteinopathy to the accumulation of DNA double-strand breaks (DSBs) in neurons, the present investigation uncovers a novel regulatory relationship between TDP43 and DNA mismatch repair (MMR) gene expression. Here, we show that TDP43 depletion or overexpression …


Atrial Fibroblast-Derived Macrophage Migration Inhibitory Factor Promotes Atrial Macrophage Accumulation In Postoperative Atrial Fibrillation, Joshua A Keefe, Jose Alberto Navarro-Garcia, Shuai Zhao, Mihail G Chelu, Xander Ht Wehrens Sep 2025

Atrial Fibroblast-Derived Macrophage Migration Inhibitory Factor Promotes Atrial Macrophage Accumulation In Postoperative Atrial Fibrillation, Joshua A Keefe, Jose Alberto Navarro-Garcia, Shuai Zhao, Mihail G Chelu, Xander Ht Wehrens

Faculty, Staff and Students Publications

New study: Blocking MIF protein prevents irregular heartbeats after surgery by reducing harmful immune cell buildup in the atria.


Sars-Cov-2 Nsp13 Interacts With Tead To Suppress Hippo-Yap Signaling, Fansen Meng, Jong Hwan Kim, Chang-Ru Tsai, Jeffrey D Steimle, Jun Wang, Yufeng Shi, Rich G Li, Bing Xie, Vaibhav Deshmukh, Shijie Liu, Xiao Li, James F Martin Sep 2025

Sars-Cov-2 Nsp13 Interacts With Tead To Suppress Hippo-Yap Signaling, Fansen Meng, Jong Hwan Kim, Chang-Ru Tsai, Jeffrey D Steimle, Jun Wang, Yufeng Shi, Rich G Li, Bing Xie, Vaibhav Deshmukh, Shijie Liu, Xiao Li, James F Martin

Faculty, Staff and Students Publications

The Hippo pathway controls organ development, homeostasis, and regeneration primarily by modulating YAP/TEAD-mediated gene expression. Although emerging studies report Hippo-YAP dysfunction after viral infection, it is largely unknown in the context of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). Here, we analyzed RNA sequencing data from human-induced pluripotent stem cell-derived cardiomyocytes (iPSC-CMs) and SARS-CoV-2-infected human lung samples, and observed a decrease in YAP target gene expression. In screening SARS-CoV-2 nonstructural proteins, we found that nonstructural protein 13 (NSP13), a conserved coronavirus helicase, inhibits YAP transcriptional activity independent of the upstream Hippo kinases LATS1/2. Consistently, introducing NSP13 into mouse cardiomyocytes suppresses …


Adsl Deficiency Is A Secondary Mitochondrial Disease Affecting Organelle Homeostasis And Erk2/Akt Signaling In A Linear Genotype-Phenotype Relation, Matteo Bordi, Beatrice Testa, Claudia Compagnucci, Fiorella Colasuonno, Francesca Cipressa, Elisabetta Betterini, Andrea Mancini, Claudia Carsetti, Illari Salvatori, Caterina Ferraina, Ming Yang, Rossella De Cegli, Eugenio Del Prete, Chiara Veroni, Salvatore Rizza, Sofia Mauri, Elena Ziviani, Marina Macchiaiolo, Davide Vecchio, Filippo Maria Panfili, Teresa Rizza, Gerrit Weber, Rosalba Carrozzo, Alberto Ferri, Silvia Campello, Andrea Ballabio, Christian Frezza, Gianluca Cestra, Marco Tartaglia, Andrea Bartuli, Francesco Cecconi Sep 2025

Adsl Deficiency Is A Secondary Mitochondrial Disease Affecting Organelle Homeostasis And Erk2/Akt Signaling In A Linear Genotype-Phenotype Relation, Matteo Bordi, Beatrice Testa, Claudia Compagnucci, Fiorella Colasuonno, Francesca Cipressa, Elisabetta Betterini, Andrea Mancini, Claudia Carsetti, Illari Salvatori, Caterina Ferraina, Ming Yang, Rossella De Cegli, Eugenio Del Prete, Chiara Veroni, Salvatore Rizza, Sofia Mauri, Elena Ziviani, Marina Macchiaiolo, Davide Vecchio, Filippo Maria Panfili, Teresa Rizza, Gerrit Weber, Rosalba Carrozzo, Alberto Ferri, Silvia Campello, Andrea Ballabio, Christian Frezza, Gianluca Cestra, Marco Tartaglia, Andrea Bartuli, Francesco Cecconi

Duncan NRI Faculty and Staff Publications

Adenylosuccinate lyase deficiency (ADSLd) is a rare autosomal recessive purine metabolism disorder with several clinical manifestations. While toxic substrate accumulation is a known hallmark, no additional molecular mechanisms have been established. Here, we show that ADSLd is associated with mitochondrial dysfunction, including increased fragmentation, impaired respiration, and reduced ATP production. The severity of mitochondrial impairment correlates with ADSLd pathology, especially in mitochondria-dependent tissues. We also identify defects in mitochondrial dynamics and transport linked to ERK2 and AKT suppression. Notably, overexpressing constitutively active ERK2 or supplementing purine intermediates partially rescues the mitochondrial phenotype. These findings suggest an alternative disease mechanism and …


Humanization Of Cd47 Enables Development Of Functional Human Neutrophils Via Postirradiation Remodeling Of The Bone Marrow, Esen Sefik, Liang Shan, Et Al. Sep 2025

Humanization Of Cd47 Enables Development Of Functional Human Neutrophils Via Postirradiation Remodeling Of The Bone Marrow, Esen Sefik, Liang Shan, Et Al.

2020-Current year OA Pubs

Murine and human immune systems differ significantly, particularly within the myeloid lineage. Humanized mice, generated by transplanting human hematopoietic stem, progenitor cells into genetically modified mice, are invaluable to study human immune development and function in vivo. However, a major limitation of current models is suboptimal myelopoiesis, particularly lack of functional human neutrophils, hampering the modeling of human immune responses and chronic diseases. Here, we describe a humanized mouse model, named MaGIC for genes replaced, in the


What Is Known About The Fish Intake Of People Living In Disadvantaged Communities In The Uk? A Scoping Review, Sarah Gale, Roseline Aboluwade, Louise Hunt, Clare Pettinger Sep 2025

What Is Known About The Fish Intake Of People Living In Disadvantaged Communities In The Uk? A Scoping Review, Sarah Gale, Roseline Aboluwade, Louise Hunt, Clare Pettinger

School of Health Professions

Fish provides essential nutrients, including protein, omega-3 fatty acids (oily fish) and other micronutrients, and may be seen to have a prominent role in protecting against non-communicable diseases, especially cardiovascular disease. Recent UK National Diet and Nutrition Survey analysis suggests people are not meeting their weekly fish intake recommendation of at least two portions per week, of which one should be oily. Lower socioeconomic groups are more likely to eat poor-quality diets, with low fish intake, resulting in poor health outcomes. The aim of this scoping review was to examine the factors influencing fish consumption in people living within ‘disadvantaged …


Protocol For Non-Invasive Pulsed-Doppler Evaluation Of Blood Flow In The Mouse Ophthalmic Artery, Radwa Awad, Emil Martin, Anilkumar K Reddy, Iraida Sharina Sep 2025

Protocol For Non-Invasive Pulsed-Doppler Evaluation Of Blood Flow In The Mouse Ophthalmic Artery, Radwa Awad, Emil Martin, Anilkumar K Reddy, Iraida Sharina

Faculty, Staff and Student Publications

The number of reliable and non-invasive techniques to characterize ocular blood flow is limited. Here, we present a protocol for identifying a soft tissue window in the orbital aperture using pulsed-Doppler ultrasonography to offer real-time, non-invasive blood flow velocity monitoring in the mouse ophthalmic artery. We describe steps for preparing a mouse, positioning the ultrasound probe, and acquiring and recording signals. We then detail procedures for analyzing results using a workstation equipped with Doppler flow velocity software. For complete details on the use and execution of this protocol, please refer to Sharina et al.


Blue-Shifted Ancyromonad Channelrhodopsins For Multiplex Optogenetics, Elena G Govorunova, Oleg A Sineshchekov, Hai Li, Yueyang Gou, Hongmei Chen, Shuyuan Yang, Yumei Wang, Stephen Mitchell, Alyssa Palmateer, Leonid S Brown, François St-Pierre, Mingshan Xue, John L Spudich Sep 2025

Blue-Shifted Ancyromonad Channelrhodopsins For Multiplex Optogenetics, Elena G Govorunova, Oleg A Sineshchekov, Hai Li, Yueyang Gou, Hongmei Chen, Shuyuan Yang, Yumei Wang, Stephen Mitchell, Alyssa Palmateer, Leonid S Brown, François St-Pierre, Mingshan Xue, John L Spudich

Duncan NRI Faculty and Staff Publications

Light-gated ion channels from protists (channelrhodopsins or ChRs) are optogenetic tools widely used for controlling neurons and cardiomyocytes. Multiplex optogenetic applications require spectrally separated molecules, which are difficult to engineer without disrupting channel function. Scanning numerous sequence databases, we identified three naturally blue-shifted ChRs from ancyromonads. They form a separate branch on the phylogenetic tree and contain residue motifs characteristic of anion ChRs (ACRs). However, only two conduct chloride, whereas the closely related Nutomonas longa homolog generates inward cation currents in mammalian cells under physiological conditions, significantly exceeding those by previously known tools with similar spectral maxima (peak absorption at …


Rapid Mapping Of Spinal And Supraspinal Connectome Via Self-Targeting Glucose-Based Carbon Dots, Yasin B. Seven, Elif S. Seven, Emel Kirbas Cilingir, Komal Parikh, Mehmet Aydin, Edward K. Luca, Jayakrishnan Nair, Roger M. Leblanc Sep 2025

Rapid Mapping Of Spinal And Supraspinal Connectome Via Self-Targeting Glucose-Based Carbon Dots, Yasin B. Seven, Elif S. Seven, Emel Kirbas Cilingir, Komal Parikh, Mehmet Aydin, Edward K. Luca, Jayakrishnan Nair, Roger M. Leblanc

Department of Physical Therapy Faculty Papers

The spinal cord is a highly dynamic network, playing significant roles in the vital functions of the brain. Disorders of the spinal cord, such as spinal cord injury and amyotrophic lateral sclerosis (ALS), are associated with neurodegeneration, often resulting in morbidity and mortality. The blood-brain barrier (BBB) poses a major challenge to imaging and therapeutic agents because less than 2% of small-molecule drugs and almost no large-molecule drugs can cross the BBB. Furthermore, spatial spectroscopy studies have shown highly heterogeneous BBB crossing with significant accumulation at the unintended brain regions. Thus, targeting systems that can cross the BBB at the …


Bard1: A Friend Or Foe In Pancreatic Ductal Adenocarcinoma?, Lily Zekavat, Aditi Jain Sep 2025

Bard1: A Friend Or Foe In Pancreatic Ductal Adenocarcinoma?, Lily Zekavat, Aditi Jain

Department of Surgery Faculty Papers

Pancreatic ductal adenocarcinoma (PDAC) is an aggressive solid malignancy with poor overall prognosis and limited response to standard treatments. Growing interest in the modulation of DNA repair mechanisms, including the homologous recombination (HR) repair pathway, has opened new avenues for therapeutic development. BARD1 (BRCA1-Associated RING Domain 1) plays a complex role in tumor biology, functioning either as a tumor suppressor or as an oncogenic driver, depending on isoform expression, cellular context, and regulatory environment. In this review, we examine the dual roles of BARD1, focusing on its regulation and paradoxical activities in PDAC. We summarize evidence that BARD1 and BARD1 …


Galntl5 Binds Galnac And Is Required For Migration Through The Uterotubal Junction And Sperm-Zona Pellucida Binding, Taichi Noda, Reika Uriu, Daisuke Mashiko, Hina Shinohara, Yongcun Qu, Ayumu Taira, Ryan M Matzuk, Duri Tahala, Motochika Nakano, Kimi Araki, Zhifeng Yu, Ying Zhang, Martin M Matzuk, Masahito Ikawa Sep 2025

Galntl5 Binds Galnac And Is Required For Migration Through The Uterotubal Junction And Sperm-Zona Pellucida Binding, Taichi Noda, Reika Uriu, Daisuke Mashiko, Hina Shinohara, Yongcun Qu, Ayumu Taira, Ryan M Matzuk, Duri Tahala, Motochika Nakano, Kimi Araki, Zhifeng Yu, Ying Zhang, Martin M Matzuk, Masahito Ikawa

Faculty, Staff and Students Publications

More than 20 genes expressed in the male reproductive tract have been identified as essential factors for sperm migration to and through the utero-tubal junction (UTJ), and they are divided into ADAM3-dependent and ADAM3-independent pathways. In parallel, sperm having UTJ migration defects also show impaired binding to the zona pellucida (ZP). Herein, we demonstrate that knockout of Galntl5, encoding a sperm surface protein, causes impaired sperm binding with the UTJ and ZP, and null males have severe infertility. GALNTL5 appreciably disappears in sperm lacking Adam3 or Lypd4, required for ADAM3-dependent and ADAM3-independent pathways, and GALNTL5 binds to N …


Galntl5 Binds Galnac And Is Required For Migration Through The Uterotubal Junction And Sperm-Zona Pellucida Binding, Taichi Noda, Reika Uriu, Daisuke Mashiko, Hina Shinohara, Yongcun Qu, Ayumu Taira, Ryan M Matzuk, Duri Tahala, Motochika Nakano, Kimi Araki, Zhifeng Yu, Ying Zhang, Martin M Matzuk, Masahito Ikawa Sep 2025

Galntl5 Binds Galnac And Is Required For Migration Through The Uterotubal Junction And Sperm-Zona Pellucida Binding, Taichi Noda, Reika Uriu, Daisuke Mashiko, Hina Shinohara, Yongcun Qu, Ayumu Taira, Ryan M Matzuk, Duri Tahala, Motochika Nakano, Kimi Araki, Zhifeng Yu, Ying Zhang, Martin M Matzuk, Masahito Ikawa

Faculty, Staff and Students Publications

Objective: To review the global impact of the COVID-19 pandemic on stroke care-metrics and report data from a health system in Houston.

Methods: We performed a meta-analysis of the published literature reporting stroke admissions, intracerebral hemorrhage (ICH) cases, number of thrombolysis (tPA) and thrombectomy (MT) cases, and time metrics (door to needle, DTN; and door to groin time, DTG) during the pandemic compared to prepandemic period. Within our hospital system, between January-June 2019 and January-June 2020, we compared the proportion of stroke admissions and door to tPA and MT times.

Results: A total of 32,640 stroke admissions from 29 studies …


Elevated Nr2f1 Underlies The Persistence Of Invasive Disease After Treatment Of Braf-Mutant Melanoma, Manoela Tiago, Timothy J Purwin, Casey D Stefanski, Renaira Oliveira Da Silva, Mitchell E Fane, Yash Chhabra, Jelan I Haj, Jessica Lf Teh, Rama Kadamb, Weijia Cai, Sheera R Rosenbaum, Vivian Chua, Nir Hacohen, Michael A Davies, Jessie Villanueva, Inna Chervoneva, Ashani T Weeraratna, Dan A Erkes, Claudia Capparelli, Julio A Aguirre-Ghiso, Andrew E Aplin Sep 2025

Elevated Nr2f1 Underlies The Persistence Of Invasive Disease After Treatment Of Braf-Mutant Melanoma, Manoela Tiago, Timothy J Purwin, Casey D Stefanski, Renaira Oliveira Da Silva, Mitchell E Fane, Yash Chhabra, Jelan I Haj, Jessica Lf Teh, Rama Kadamb, Weijia Cai, Sheera R Rosenbaum, Vivian Chua, Nir Hacohen, Michael A Davies, Jessie Villanueva, Inna Chervoneva, Ashani T Weeraratna, Dan A Erkes, Claudia Capparelli, Julio A Aguirre-Ghiso, Andrew E Aplin

Faculty, Staff and Student Publications

Despite the success of targeted inhibitors in cutaneous melanoma, therapeutic responses are limited by the aged tumor microenvironment and drug-tolerant residual cells. Given the similarities between drug tolerance and cellular dormancy, we studied the dormancy marker, nuclear receptor subfamily 2 group F member 1 (NR2F1), in response to BRAF-V600E inhibitors (BRAFi) plus MEK inhibitors (MEKi) in BRAF-mutant melanoma models. Transcriptomic analysis of melanoma patient samples treated with BRAFi + MEKi showed increased NR2F1. NR2F1 was highly expressed in the drug-tolerant invasive cell state of minimal residual disease in patient-derived and mouse-derived xenografts on BRAFi + MEKi. NR2F1 over-expression was sufficient …


Sorting Nexin 3 Promotes Ischemic Retinopathy Through Rip1- And Rip3-Mediated Myeloid Cell Necroptosis And Mitochondrial Fission, Jiaojiao Wang, Chunhong Zhou, Kai Zhuang, Jiami Zou, Wanlu Qiu, Mei Jin, Weile Ye, Pinglian Yang, Zhihua Zheng, Qing Zhou, Zunnan Huang, Yuanxiang Wang, Peiqing Liu, Jing Lu, Yuqing Huo, Zhiping Liu Sep 2025

Sorting Nexin 3 Promotes Ischemic Retinopathy Through Rip1- And Rip3-Mediated Myeloid Cell Necroptosis And Mitochondrial Fission, Jiaojiao Wang, Chunhong Zhou, Kai Zhuang, Jiami Zou, Wanlu Qiu, Mei Jin, Weile Ye, Pinglian Yang, Zhihua Zheng, Qing Zhou, Zunnan Huang, Yuanxiang Wang, Peiqing Liu, Jing Lu, Yuqing Huo, Zhiping Liu

Faculty, Staff and Students Publications

Proliferative retinopathy is a leading cause of irreversible blindness in humans; however, the molecular mechanisms behind the immune cell–mediated retinal angiogenesis remain poorly elucidated. Here, using single-cell RNA sequencing in an oxygen-induced retinopathy (OIR) model, we identified an enrichment of sorting nexin (SNX)-related pathways, with SNX3, a member of the SNX family that is involved in endosomal sorting and trafficking, being significantly upregulated in the myeloid cell subpopulations of OIR retinas. Immunostaining showed that SNX3 expression is markedly increased in the retinal microglia/macrophages of mice with OIR, which is mainly located within and around the neovascular tufts. Myeloid cell-specific deficiency …


Digitized Endocasts And Brains: A Perspective On Measurements And Historical Analyses Of The Evolution Of 172 Fossil And Extant Amniote Specimens, Harry J Jerison, Catherine M Early, Andrew A Farke, Ashley C Morhardt Sep 2025

Digitized Endocasts And Brains: A Perspective On Measurements And Historical Analyses Of The Evolution Of 172 Fossil And Extant Amniote Specimens, Harry J Jerison, Catherine M Early, Andrew A Farke, Ashley C Morhardt

2020-Current year OA Pubs

This perspective paper is intended to stimulate future research and discussion of brain evolution in amniotes by sharing 172 digitized endocasts of extinct and extant species spanning 60 million years. Using 3D digital surface scans of physical (


Notch1 Reverses Immune Suppression In Small Cell Lung Cancer Through Reactivation Of Sting, Yoo Sun Kim, Haobin Chen, Et Al. Sep 2025

Notch1 Reverses Immune Suppression In Small Cell Lung Cancer Through Reactivation Of Sting, Yoo Sun Kim, Haobin Chen, Et Al.

2020-Current year OA Pubs

Downregulation of antigen presentation and lack of immune infiltration are defining features of small cell lung cancer (SCLC), limiting response to immune checkpoint blockade (ICB). While a high-MHC class I, immune-inflamed subset benefits from ICB, underlying mechanisms of immune response in SCLC have yet to be elucidated. Here we show that in the IMpower133 clinical trial, high, but not low, NOTCH1 expression was significantly associated with longer survival with the addition of ICB to chemotherapy among approximately 80% of SCLC patients with NE-enriched tumors (ASCL1-enriched, HR 0.39, P = 0.0012; NEUROD1-enriched, HR 0.44, P = 0.024). Overexpression or pharmacologic activation …


Setd2 Suppresses Tumorigenesis In A Krasg12c-Driven Lung Cancer Model, And Its Catalytic Activity Is Regulated By Histone Acetylation, Ricardo J Mack, Natasha M Flores, Geoffrey C Fox, Hanyang Dong, Metehan Cebeci, Simone Hausmann, Tourkian Chasan, Jill M Dowen, Brian D Strahl, Pawel K Mazur, Or Gozani Sep 2025

Setd2 Suppresses Tumorigenesis In A Krasg12c-Driven Lung Cancer Model, And Its Catalytic Activity Is Regulated By Histone Acetylation, Ricardo J Mack, Natasha M Flores, Geoffrey C Fox, Hanyang Dong, Metehan Cebeci, Simone Hausmann, Tourkian Chasan, Jill M Dowen, Brian D Strahl, Pawel K Mazur, Or Gozani

Faculty, Staff and Student Publications

Histone H3 trimethylation at lysine 36 (H3K36me3) is a key chromatin modification that regulates fundamental physiological and pathological processes. In humans, SETD2 is the only known enzyme that catalyzes H3K36me3 in somatic cells and is implicated in tumor suppression across multiple cancer types. While there is considerable crosstalk between the SETD2-H3K36me3 axis and other epigenetic modifications, much remains to be understood. Here, we show that Setd2 functions as a potent tumor suppressor in a KRASG12C-driven lung adenocarcinoma (LUAD) mouse model, and that acetylation enhances SETD2 in vitro methylation of H3K36 on nucleosome substrates. In vivo, Setd2 ablation accelerates lethality in …


Developmental Transformations Of Purkinje Cells Tracked By Dna Electrokinetic Mobility, Cheryl Brandenburg, Garrett W Crutcher, Andrea J Romanowski, Sarah G Donofrio, Lita R Duraine, Richard N A Owusu-Mensah, Benjamin H Cooper, Izumi Sugihara, Gene J Blatt, Roy V Sillitoe, Alexandros Poulopoulos Sep 2025

Developmental Transformations Of Purkinje Cells Tracked By Dna Electrokinetic Mobility, Cheryl Brandenburg, Garrett W Crutcher, Andrea J Romanowski, Sarah G Donofrio, Lita R Duraine, Richard N A Owusu-Mensah, Benjamin H Cooper, Izumi Sugihara, Gene J Blatt, Roy V Sillitoe, Alexandros Poulopoulos

Duncan NRI Faculty and Staff Publications

Brain development begins with neurogenesis in progenitor zones and ends with expansive, intricately-patterned cellular diversity in the adult brain. We took advantage of bioelectric interactions between DNA and embryonic tissue to perform "stereo-tracking," a developmental targeting strategy that differentially labels cells at different depths within progenitor zones. This 3D labeling was achieved by delivery of plasmids with distinct electrokinetic mobilities in utero. We applied stereo-tracking with light sheet imaging in the cerebellum and identified that Purkinje cells follow embryonically committed developmental trajectories, linking distinct progenitor zone subfields to the mature topography of the cerebellar cortex. We additionally identified an unexpected …


Non-Neutralizing Antibodies To Influenza A Matrix-Protein-2-Ectodomain Are Broadly Effective Therapeutics And Resistant To Viral Escape Mutations., Teha Kim, Lynn Bimler, Sydney L Ronzulli, Amber Y Song, Scott K Johnson, Cheryl A Jones, S Mark Tompkins, Silke Paust Sep 2025

Non-Neutralizing Antibodies To Influenza A Matrix-Protein-2-Ectodomain Are Broadly Effective Therapeutics And Resistant To Viral Escape Mutations., Teha Kim, Lynn Bimler, Sydney L Ronzulli, Amber Y Song, Scott K Johnson, Cheryl A Jones, S Mark Tompkins, Silke Paust

Faculty Research 2025

Influenza A viruses remain a global health threat, yet no universal antibody therapy exists. Clinical programs have centered on neutralizing mAbs, only to be thwarted by strain specificity and rapid viral escape. We instead engineered three non-neutralizing IgG2a mAbs that target distinct, overlapping epitopes within the conserved N terminus of the M2 ectodomain (M2e). Combined at low dose, this "triple M2e-mAb" confers robust prophylactic and therapeutic protection in mice challenged with diverse human and zoonotic IAV strains, including highly pathogenic variants. Therapeutic efficacy depends on Fc-mediated effector activity via FcγRI, FcγRIII, and FcγRIV, rather than in vitro neutralization. Serial passaging …


A Novel Sialylation Pathway Mediated By Extracellular Vesicles In Aggressive Prostate Cancer, Camila A. Bach, Md Niamat Hossain, Ishan J. Chaudhari, Cecilia E. Verrillo, Nicole M. Naranjo, Isabella Amoroso, Anna Testa, Samuel Sey, W. Kevin Kelly, Susan L. Bellis, Aurelio Lorico, Ada G. Blidner, Gabriel A. Rabinovich, Lucia R. Languino Sep 2025

A Novel Sialylation Pathway Mediated By Extracellular Vesicles In Aggressive Prostate Cancer, Camila A. Bach, Md Niamat Hossain, Ishan J. Chaudhari, Cecilia E. Verrillo, Nicole M. Naranjo, Isabella Amoroso, Anna Testa, Samuel Sey, W. Kevin Kelly, Susan L. Bellis, Aurelio Lorico, Ada G. Blidner, Gabriel A. Rabinovich, Lucia R. Languino

Department of Pharmacology, Physiology, and Cancer Biology Faculty Papers

Altered cell surface glycosylation is a hallmark of cancer; among aberrant glycan structures, hypersialylated proteins contribute to disease progression. The enzyme ST6 β-galactoside α2,6-sialyltransferase 1 (ST6GAL1) mediates α2,6-linked sialylation of N-glycosylated proteins and is upregulated in many cancers, including prostate cancer (PrCa). We propose that ST6GAL1 may be released by cancer cells in small extracellular vesicles (sEVs) in the PrCa tumor microenvironment to potentially modulate cell surface sialylation in recipient cells. We isolated sEVs from PrCa cells by density gradient separation and characterized them by nanoparticle tracking analysis using ZetaView and immunoblotting analysis. We identified ST6GAL1 in both its membrane-bound …


Infusion Of Blood From Young And Old Mice Modulates Amyloid Pathology, Matias Pizarro, Ruben Gomez-Gutierrez, Ariel Caviedes, Catalina Valdes, Ute Woehlbier, Cristian Vargas, Mauricio Hernandez, Claudia Duran-Aniotz, Rodrigo Morales Sep 2025

Infusion Of Blood From Young And Old Mice Modulates Amyloid Pathology, Matias Pizarro, Ruben Gomez-Gutierrez, Ariel Caviedes, Catalina Valdes, Ute Woehlbier, Cristian Vargas, Mauricio Hernandez, Claudia Duran-Aniotz, Rodrigo Morales

Faculty, Staff and Student Publications

Alzheimer's disease (AD) is a neurodegenerative disease characterized by the accumulation of misfolded proteins in the brain. Recently, the impact of blood components in the progression of this disease has come to attention. This study investigates the effects of infusing blood from young and old wild-type mice into transgenic mice that model AD brain amyloidosis. Impaired memory and Aβ accumulation were observed in mice infused with blood from old donors. A proteomic analysis in the brain of these mice identified alterations in components related to synaptogenesis and the endocannabinoid system. The α2δ2 protein, associated with neuronal calcium regulation, was validated …


Loss Of Ptdss1 In Tumor Cells Improves Immunogenicity And Response To Anti-Pd-1 Therapy, Jielin Liu, Shelley Herbrich, Sreyashi Basu, Yulong Chen, Ashwat Nagarajan, Swetha Anandhan, Sangeeta Goswami, Liangwen Xiong, Baoxiang Guan, Padmanee Sharma Sep 2025

Loss Of Ptdss1 In Tumor Cells Improves Immunogenicity And Response To Anti-Pd-1 Therapy, Jielin Liu, Shelley Herbrich, Sreyashi Basu, Yulong Chen, Ashwat Nagarajan, Swetha Anandhan, Sangeeta Goswami, Liangwen Xiong, Baoxiang Guan, Padmanee Sharma

Faculty, Staff and Student Publications

PTDSS1 (phosphatidylserine synthase 1) encodes an enzyme that facilitates production of phosphatidylserine (PS), which mediates a global immunosuppressive signal. Here, based on in vivo CRISPR screen, we identified PTDSS1 as a target to improve anti-PD-1 therapy. Depletion of Ptdss1 in tumor cells increased expression of interferon-γ (IFN-γ)-regulated genes, including B2m, Cxcl9, Cxcl10, and Stat1, even in the absence of IFN-γ stimulation in vitro. Loss of Ptdss1 in tumor cells also led to increased expression of MHC-I, enhanced cytotoxicity of CD8+ T cells, and increased frequency of an iNOS+ myeloid subset. A gene signature derived from the …


Identification And Characterization Of A Metal Binding-Independent Rift Valley Fever Virus Endonuclease Inhibitor, Cara D Kirby, Gai Liu, Farheen Fatma, Maris R Pedlow, Narendran G-Dayanandan, Nitin Sharma, Zachary D Frey, Rachael E Rush, Steven C Cardinale, Andrzej M Krezel, Amy L Hartman, Terry L Bowlin, Daisy W Leung, Gaya K Amarasinghe Sep 2025

Identification And Characterization Of A Metal Binding-Independent Rift Valley Fever Virus Endonuclease Inhibitor, Cara D Kirby, Gai Liu, Farheen Fatma, Maris R Pedlow, Narendran G-Dayanandan, Nitin Sharma, Zachary D Frey, Rachael E Rush, Steven C Cardinale, Andrzej M Krezel, Amy L Hartman, Terry L Bowlin, Daisy W Leung, Gaya K Amarasinghe

2020-Current year OA Pubs

The viral cap-snatching mechanism, facilitated by the endonuclease (EndoN) domain of viral polymerases, is critical for viral gene transcription and translation and is therefore an attractive target for antiviral development. The successful development of EndoN inhibitor XOFLUZA (Baloxavir marboxil) has opened the possibility that the EndoN domain of negative-sense RNA viruses (NSVs) can be targeted in a similar fashion. Rift Valley Fever Virus (RVFV) belongs to the


Neurotransmitter Signaling In Molecular And Behavioral Immune Responses To Pathogens In C Elegans, Benson Otarigho, Alejandro Aballay Sep 2025

Neurotransmitter Signaling In Molecular And Behavioral Immune Responses To Pathogens In C Elegans, Benson Otarigho, Alejandro Aballay

Faculty, Staff and Student Publications

Neurotransmitter signaling pathways play major roles in both molecular and behavioral defenses against pathogen invasion, shaping the ability of Caenorhabditis elegans to sense and respond to environmental challenges. Given the conservation of neurotransmitter signaling pathways, their understanding may not only provide insights into the neurobiology of C. elegans but also has broader implications for our understanding of neural-immune interactions and host defense mechanisms in higher organisms. In this review, we discussed the literature on various neurotransmitter signaling pathways, including serotonergic, dopaminergic/octopaminergic, GABAergic, and glutamatergic pathways, and how these pathways modulate molecular and behavioral immune defense against pathogens.