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Molecular Basis Of Retinal Remodeling In A Zebrafish Model Of Retinitis Pigmentosa, Abirami Santhanam, Eyad Shihabeddin, Haichao Wei, Jiaqian Wu, John O'Brien Nov 2023

Molecular Basis Of Retinal Remodeling In A Zebrafish Model Of Retinitis Pigmentosa, Abirami Santhanam, Eyad Shihabeddin, Haichao Wei, Jiaqian Wu, John O'Brien

Faculty, Staff and Student Publications

A hallmark of inherited retinal degenerative diseases such as retinitis pigmentosa (RP) is progressive structural and functional remodeling of the remaining retinal cells as photoreceptors degenerate. Extensive remodeling of the retina stands as a barrier for the successful implementation of strategies to restore vision. To understand the molecular basis of remodeling, we performed analyses of single-cell transcriptome data from adult zebrafish retina of wild type AB strain (WT) and a P23H mutant rhodopsin transgenic model of RP with continuous degeneration and regeneration. Retinas from both female and male fish were pooled to generate each library, combining data from both sexes. …


Efficacy Of Futibatinib, An Irreversible Fibroblast Growth Factor Receptor Inhibitor, In Fgfr-Altered Breast Cancer, Turcin Saridogan, Argun Akcakanat, Ming Zhao, Kurt W Evans, Erkan Yuca, Stephen Scott, Bryce P Kirby, Xiaofeng Zheng, Min Jin Ha, Huiqin Chen, Patrick K S Ng, Timothy P Diperi, Gordon B Mills, Jordi Rodon Ahnert, Senthil Damodaran, Funda Meric-Bernstam Nov 2023

Efficacy Of Futibatinib, An Irreversible Fibroblast Growth Factor Receptor Inhibitor, In Fgfr-Altered Breast Cancer, Turcin Saridogan, Argun Akcakanat, Ming Zhao, Kurt W Evans, Erkan Yuca, Stephen Scott, Bryce P Kirby, Xiaofeng Zheng, Min Jin Ha, Huiqin Chen, Patrick K S Ng, Timothy P Diperi, Gordon B Mills, Jordi Rodon Ahnert, Senthil Damodaran, Funda Meric-Bernstam

Faculty, Staff and Student Publications

Several alterations in fibroblast growth factor receptor (FGFR) genes have been found in breast cancer; however, they have not been well characterized as therapeutic targets. Futibatinib (TAS-120; Taiho) is a novel, selective, pan-FGFR inhibitor that inhibits FGFR1-4 at nanomolar concentrations. We sought to determine futibatinib's efficacy in breast cancer models. Nine breast cancer patient-derived xenografts (PDXs) with various FGFR1-4 alterations and expression levels were treated with futibatinib. Antitumor efficacy was evaluated by change in tumor volume and time to tumor doubling. Alterations indicating sensitization to futibatinib in vivo were further characterized in vitro. FGFR gene expression between patient tumors and …


Architecture Of The Baculovirus Nucleocapsid Revealed By Cryo-Em, Xudong Jia, Yuanzhu Gao, Yuxuan Huang, Linjun Sun, Siduo Li, Hongmei Li, Xueqing Zhang, Yinyin Li, Jian He, Wenbi Wu, Harikanth Venkannagari, Kai Yang, Matthew L Baker, Qinfen Zhang Nov 2023

Architecture Of The Baculovirus Nucleocapsid Revealed By Cryo-Em, Xudong Jia, Yuanzhu Gao, Yuxuan Huang, Linjun Sun, Siduo Li, Hongmei Li, Xueqing Zhang, Yinyin Li, Jian He, Wenbi Wu, Harikanth Venkannagari, Kai Yang, Matthew L Baker, Qinfen Zhang

Faculty, Staff and Student Publications

Baculovirus Autographa californica multiple nucleopolyhedrovirus (AcMNPV) has been widely used as a bioinsecticide and a protein expression vector. Despite their importance, very little is known about the structure of most baculovirus proteins. Here, we show a 3.2 Å resolution structure of helical cylindrical body of the AcMNPV nucleocapsid, composed of VP39, as well as 4.3 Å resolution structures of both the head and the base of the nucleocapsid composed of over 100 protein subunits. AcMNPV VP39 demonstrates some features of the HK97-like fold and utilizes disulfide-bonds and a set of interactions at its C-termini to mediate nucleocapsid assembly and stability. …


Dynamics Of Cwd Prion Detection In Feces And Blood From Naturally Infected White-Tailed Deer, Francisca Bravo-Risi, Paulina Soto, Rebeca Benavente, Tracy A Nichols, Rodrigo Morales Nov 2023

Dynamics Of Cwd Prion Detection In Feces And Blood From Naturally Infected White-Tailed Deer, Francisca Bravo-Risi, Paulina Soto, Rebeca Benavente, Tracy A Nichols, Rodrigo Morales

Faculty, Staff and Student Publications

Chronic wasting disease (CWD) is a prion disease affecting cervids. Confirmatory testing of CWD is currently performed postmortem in obex and lymphoid tissues. Extensive evidence demonstrates the presence of infectious prions in feces of CWD-infected deer using in vitro prion-amplification techniques and bioassays. In experimental conditions, this has been achieved as soon as 6-month post-inoculation, suggesting this sample type is a candidate for antemortem diagnosis. In the present study, we optimized the detection of CWD-prions in fecal samples from naturally infected, pre-clinical white-tailed deer by comparing protocols aiming to concentrate CWD-prions with direct spiking of the sample into the PMCA …


Blood-Based Proteomic Signatures Associated With Men1-Related Duodenopancreatic Neuroendocrine Tumor Progression, Johannes F Fahrmann, Amanda R Wasylishen, Carolina R C Pieterman, Ehsan Irajizad, Jody Vykoukal, Ranran Wu, Jennifer B Dennison, Christine B Peterson, Hua Zhao, Kim-Anh Do, Daniel M Halperin, Sunita K Agarwal, Jenny E Blau, Smita Jha, Jaydira Del Rivero, Naris Nilubol, Mary F Walter, James M Welch, Lee S Weinstein, Menno R Vriens, Rachel S Van Leeuwaarde, Mark J C Van Treijen, Gerlof D Valk, Nancy D Perrier, Samir M Hanash, Hiroyuki Katayama Nov 2023

Blood-Based Proteomic Signatures Associated With Men1-Related Duodenopancreatic Neuroendocrine Tumor Progression, Johannes F Fahrmann, Amanda R Wasylishen, Carolina R C Pieterman, Ehsan Irajizad, Jody Vykoukal, Ranran Wu, Jennifer B Dennison, Christine B Peterson, Hua Zhao, Kim-Anh Do, Daniel M Halperin, Sunita K Agarwal, Jenny E Blau, Smita Jha, Jaydira Del Rivero, Naris Nilubol, Mary F Walter, James M Welch, Lee S Weinstein, Menno R Vriens, Rachel S Van Leeuwaarde, Mark J C Van Treijen, Gerlof D Valk, Nancy D Perrier, Samir M Hanash, Hiroyuki Katayama

Faculty, Staff and Student Publications

PURPOSE: Patients with multiple endocrine neoplasia type 1 (MEN1) are predisposed to develop duodenopancreatic neuroendocrine tumors (dpNETs), and metastatic dpNET is the primary cause of disease-related mortality. Presently, there is a paucity of prognostic factors that can reliably identify patients with MEN1-related dpNETS who are at high risk of distant metastasis. In the current study, we aimed to establish novel circulating molecular protein signatures associated with disease progression.

EXPERIMENTAL DESIGN: Mass spectrometry-based proteomic profiling was conducted on plasmas procured through an international collaboration between MD Anderson Cancer Center, the National Institutes of Health, and the University Medical Center Utrecht from …


Pmca Screening Of Retropharyngeal Lymph Nodes In White-Tailed Deer And Comparisons With Elisa And Ihc, Rebeca Benavente, J Hunter Reed, Mitch Lockwood, Rodrigo Morales Nov 2023

Pmca Screening Of Retropharyngeal Lymph Nodes In White-Tailed Deer And Comparisons With Elisa And Ihc, Rebeca Benavente, J Hunter Reed, Mitch Lockwood, Rodrigo Morales

Faculty, Staff and Student Publications

Chronic wasting disease (CWD) is a prion disease affecting cervids. CWD diagnosis is conducted through enzyme-linked immunosorbent assay (ELISA) and immunohistochemistry (IHC) in retropharyngeal lymph nodes. Unfortunately, these techniques have limited sensitivity against the biomarker (CWD-prions). Two in vitro prion amplification techniques, real-time quaking-induced conversion (RT-QuIC) and protein misfolding cyclic amplification (PMCA), have shown promise in detecting CWD-prions in tissues and bodily fluids. Recent studies have demonstrated that RT-QuIC yields similar results compared to ELISA and IHC. Here, we analyzed 1003 retropharyngeal lymph nodes (RPLNs) from Texas white-tailed deer. PMCA detected CWD at a higher rate compared to ELISA/IHC, identified …


Mutation Of Key Signaling Regulators Of Cerebrovascular Development In Vein Of Galen Malformations, Shujuan Zhao, Po-Ying Fu, Yung-Chun Wang, Sheng Chih Jin, Et Al. Nov 2023

Mutation Of Key Signaling Regulators Of Cerebrovascular Development In Vein Of Galen Malformations, Shujuan Zhao, Po-Ying Fu, Yung-Chun Wang, Sheng Chih Jin, Et Al.

2020-Current year OA Pubs

To elucidate the pathogenesis of vein of Galen malformations (VOGMs), the most common and most severe of congenital brain arteriovenous malformations, we performed an integrated analysis of 310 VOGM proband-family exomes and 336,326 human cerebrovasculature single-cell transcriptomes. We found the Ras suppressor p120 RasGAP (RASA1) harbored a genome-wide significant burden of loss-of-function de novo variants (2042.5-fold, p = 4.79 x 10


Nad+ Rescues Aging-Induced Blood-Brain Barrier Damage Via The Cx43-Parp1 Axis, Rui Zhan, Xia Meng, Dongping Tian, Jie Xu, Hongtu Cui, Jialei Yang, Yangkai Xu, Mingming Shi, Jing Xue, Weiwei Yu, Gaofei Hu, Ke Li, Xiaoxiao Ge, Qi Zhang, Mingming Zhao, Jianyong Du, Xin Guo, Wenli Xu, Yang Gao, Changyu Yao, Fan Chen, Yue Chen, Wenxin Shan, Yujie Zhu, Liang Ji, Bing Pan, Yan Yu, Wenguang Li, Xuyang Zhao, Qihua He, Xiaohui Liu, Yue Huang, Shengyou Liao, Bin Zhou, Dehua Chui, Y Eugene Chen, Zheng Sun, Erdan Dong, Yongjun Wang, Lemin Zheng Nov 2023

Nad+ Rescues Aging-Induced Blood-Brain Barrier Damage Via The Cx43-Parp1 Axis, Rui Zhan, Xia Meng, Dongping Tian, Jie Xu, Hongtu Cui, Jialei Yang, Yangkai Xu, Mingming Shi, Jing Xue, Weiwei Yu, Gaofei Hu, Ke Li, Xiaoxiao Ge, Qi Zhang, Mingming Zhao, Jianyong Du, Xin Guo, Wenli Xu, Yang Gao, Changyu Yao, Fan Chen, Yue Chen, Wenxin Shan, Yujie Zhu, Liang Ji, Bing Pan, Yan Yu, Wenguang Li, Xuyang Zhao, Qihua He, Xiaohui Liu, Yue Huang, Shengyou Liao, Bin Zhou, Dehua Chui, Y Eugene Chen, Zheng Sun, Erdan Dong, Yongjun Wang, Lemin Zheng

Faculty, Staff and Students Publications

Blood-brain barrier (BBB) function deteriorates during aging, contributing to cognitive impairment and neurodegeneration. It is unclear what drives BBB leakage in aging and how it can be prevented. Using single-nucleus transcriptomics, we identified decreased connexin 43 (CX43) expression in cadherin-5


The Role Of Noncoding Rnas In Pancreatic Birth Defects, Ziyue Zoey Yang, Ronald J Parchem Nov 2023

The Role Of Noncoding Rnas In Pancreatic Birth Defects, Ziyue Zoey Yang, Ronald J Parchem

Faculty, Staff and Students Publications

Congenital defects in the pancreas can cause severe health issues such as pancreatic cancer and diabetes which require lifelong treatment. Regenerating healthy pancreatic cells to replace malfunctioning cells has been considered a promising cure for pancreatic diseases including birth defects. However, such therapies are currently unavailable in the clinic. The developmental gene regulatory network underlying pancreatic development must be reactivated for in vivo regeneration and recapitulated in vitro for cell replacement therapy. Thus, understanding the mechanisms driving pancreatic development will pave the way for regenerative therapies. Pancreatic progenitor cells are the precursors of all pancreatic cells which use epigenetic changes …


A Paracrine Circuit Of Il-1Β/Il-1r1 Between Myeloid And Tumor Cells Drives Genotype-Dependent Glioblastoma Progression, Zhihong Chen, David H. Gutmann, Et Al. Nov 2023

A Paracrine Circuit Of Il-1Β/Il-1r1 Between Myeloid And Tumor Cells Drives Genotype-Dependent Glioblastoma Progression, Zhihong Chen, David H. Gutmann, Et Al.

2020-Current year OA Pubs

Monocytes and monocyte-derived macrophages (MDMs) from blood circulation infiltrate glioblastoma (GBM) and promote growth. Here, we show that PDGFB-driven GBM cells induce the expression of the potent proinflammatory cytokine IL-1β in MDM, which engages IL-1R1 in tumor cells, activates the NF-κB pathway, and subsequently leads to induction of monocyte chemoattractant proteins (MCPs). Thus, a feedforward paracrine circuit of IL-1β/IL-1R1 between tumors and MDM creates an interdependence driving PDGFB-driven GBM progression. Genetic loss or locally antagonizing IL-1β/IL-1R1 leads to reduced MDM infiltration, diminished tumor growth, and reduced exhausted CD8+ T cells and thereby extends the survival of tumor-bearing mice. In contrast …


Dietary L-Tryptophan Consumption Determines The Number Of Colonic Regulatory T Cells And Susceptibility To Colitis Via Gpr15, Nguyen Van, Karen Zhang, Rachel Wigmore, Anne Kennedy, Carolina Dasilva, Jialing Huang, Manju Ambelil, Jose Villagomez, Gerald O'Connor, Randy Longman, Miao Cao, Adam Snook, Michael Platten, Gerard Kasenty, Luis Sigal, George C Prendergast, Sangwon Kim Nov 2023

Dietary L-Tryptophan Consumption Determines The Number Of Colonic Regulatory T Cells And Susceptibility To Colitis Via Gpr15, Nguyen Van, Karen Zhang, Rachel Wigmore, Anne Kennedy, Carolina Dasilva, Jialing Huang, Manju Ambelil, Jose Villagomez, Gerald O'Connor, Randy Longman, Miao Cao, Adam Snook, Michael Platten, Gerard Kasenty, Luis Sigal, George C Prendergast, Sangwon Kim

Department of Microbiology and Immunology Faculty Papers

Environmental factors are the major contributor to the onset of immunological disorders such as ulcerative colitis. However, their identities remain unclear. Here, we discover that the amount of consumed L-Tryptophan (L-Trp), a ubiquitous dietary component, determines the transcription level of the colonic T cell homing receptor, GPR15, hence affecting the number of colonic FOXP3+ regulatory T (Treg) cells and local immune homeostasis. Ingested L-Trp is converted by host IDO1/2 enzymes, but not by gut microbiota, to compounds that induce GPR15 transcription preferentially in Treg cells via the aryl hydrocarbon receptor. Consequently, two weeks of dietary L-Trp supplementation nearly double …


Dhodh: A Promising Target In The Treatment Of T-Cell Acute Lymphoblastic Leukemia, Amy N Sexauer, Gabriela Alexe, Karin Gustafsson, Elizabeth Zanetakos, Jelena Milosevic, Mary Ayres, Varsha Gandhi, Yana Pikman, Kimberly Stegmaier, David B Sykes Nov 2023

Dhodh: A Promising Target In The Treatment Of T-Cell Acute Lymphoblastic Leukemia, Amy N Sexauer, Gabriela Alexe, Karin Gustafsson, Elizabeth Zanetakos, Jelena Milosevic, Mary Ayres, Varsha Gandhi, Yana Pikman, Kimberly Stegmaier, David B Sykes

Faculty, Staff and Student Publications

Patients with relapsed or refractory T-cell acute lymphoblastic leukemia (T-ALL) have a poor prognosis with few therapeutic options. With the goal of identifying novel therapeutic targets, we used data from the Dependency Map project to identify dihydroorotate dehydrogenase (DHODH) as one of the top metabolic dependencies in T-ALL. DHODH catalyzes the fourth step of de novo pyrimidine nucleotide synthesis. Small molecule inhibition of DHODH rapidly leads to the depletion of intracellular pyrimidine pools and forces cells to rely on extracellular salvage. In the absence of sufficient salvage, this intracellular nucleotide starvation results in the inhibition of DNA and RNA synthesis, …


Targeted Suppression Of Mtorc2 Reduces Seizures Across Models Of Epilepsy, James Okoh, Jacqunae Mays, Alexandre Bacq, Juan A Oses-Prieto, Stefka Tyanova, Chien-Ju Chen, Khalel Imanbeyev, Marion Doladilhe, Hongyi Zhou, Paymaan Jafar-Nejad, Alma Burlingame, Jeffrey Noebels, Stephanie Baulac, Mauro Costa-Mattioli Nov 2023

Targeted Suppression Of Mtorc2 Reduces Seizures Across Models Of Epilepsy, James Okoh, Jacqunae Mays, Alexandre Bacq, Juan A Oses-Prieto, Stefka Tyanova, Chien-Ju Chen, Khalel Imanbeyev, Marion Doladilhe, Hongyi Zhou, Paymaan Jafar-Nejad, Alma Burlingame, Jeffrey Noebels, Stephanie Baulac, Mauro Costa-Mattioli

Faculty, Staff and Students Publications

Epilepsy is a neurological disorder that poses a major threat to public health. Hyperactivation of mTOR complex 1 (mTORC1) is believed to lead to abnormal network rhythmicity associated with epilepsy, and its inhibition is proposed to provide some therapeutic benefit. However, mTOR complex 2 (mTORC2) is also activated in the epileptic brain, and little is known about its role in seizures. Here we discover that genetic deletion of mTORC2 from forebrain neurons is protective against kainic acid-induced behavioral and EEG seizures. Furthermore, inhibition of mTORC2 with a specific antisense oligonucleotide robustly suppresses seizures in several pharmacological and genetic mouse models …


Missense Mutations In Crx Homeodomain Cause Dominant Retinopathies Through Two Distinct Mechanisms, Yiqiao Zheng, Chi Sun, Xiaodong Zhang, Philip A Ruzycki, Shiming Chen Nov 2023

Missense Mutations In Crx Homeodomain Cause Dominant Retinopathies Through Two Distinct Mechanisms, Yiqiao Zheng, Chi Sun, Xiaodong Zhang, Philip A Ruzycki, Shiming Chen

2020-Current year OA Pubs

Homeodomain transcription factors (HD TFs) are instrumental to vertebrate development. Mutations in HD TFs have been linked to human diseases, but their pathogenic mechanisms remain elusive. Here, we use


Mechanical Loading And Hyperosmolarity As A Daily Resetting Cue For Skeletal Circadian Clocks, Michal Dudek, Dharshika R J Pathiranage, Beatriz Bano-Otalora, Anna Paszek, Natalie Rogers, Cátia F Gonçalves, Craig Lawless, Dong Wang, Zhuojing Luo, Liu Yang, Farshid Guilak, Judith A Hoyland, Qing-Jun Meng Nov 2023

Mechanical Loading And Hyperosmolarity As A Daily Resetting Cue For Skeletal Circadian Clocks, Michal Dudek, Dharshika R J Pathiranage, Beatriz Bano-Otalora, Anna Paszek, Natalie Rogers, Cátia F Gonçalves, Craig Lawless, Dong Wang, Zhuojing Luo, Liu Yang, Farshid Guilak, Judith A Hoyland, Qing-Jun Meng

2020-Current year OA Pubs

Daily rhythms in mammalian behaviour and physiology are generated by a multi-oscillator circadian system entrained through environmental cues (e.g. light and feeding). The presence of tissue niche-dependent physiological time cues has been proposed, allowing tissues the ability of circadian phase adjustment based on local signals. However, to date, such stimuli have remained elusive. Here we show that daily patterns of mechanical loading and associated osmotic challenge within physiological ranges reset circadian clock phase and amplitude in cartilage and intervertebral disc tissues in vivo and in tissue explant cultures. Hyperosmolarity (but not hypo-osmolarity) resets clocks in young and ageing skeletal tissues …


A Cre-Dependent Massively Parallel Reporter Assay Allows For Cell-Type Specific Assessment Of The Functional Effects Of Non-Coding Elements In Vivo, Tomas Lagunas Jr, Stephen P Plassmeyer, Anthony D Fischer, Ryan Z Friedman, Michael A Rieger, Din Selmanovic, Simona Sarafinovska, Yvette K Sol, Michael J Kasper, Stuart B Fass, Alessandra F Aguilar Lucero, Joon-Yong An, Stephan J Sanders, Barak A Cohen, Joseph D Dougherty Nov 2023

A Cre-Dependent Massively Parallel Reporter Assay Allows For Cell-Type Specific Assessment Of The Functional Effects Of Non-Coding Elements In Vivo, Tomas Lagunas Jr, Stephen P Plassmeyer, Anthony D Fischer, Ryan Z Friedman, Michael A Rieger, Din Selmanovic, Simona Sarafinovska, Yvette K Sol, Michael J Kasper, Stuart B Fass, Alessandra F Aguilar Lucero, Joon-Yong An, Stephan J Sanders, Barak A Cohen, Joseph D Dougherty

2020-Current year OA Pubs

The function of regulatory elements is highly dependent on the cellular context, and thus for understanding the function of elements associated with psychiatric diseases these would ideally be studied in neurons in a living brain. Massively Parallel Reporter Assays (MPRAs) are molecular genetic tools that enable functional screening of hundreds of predefined sequences in a single experiment. These assays have not yet been adapted to query specific cell types in vivo in a complex tissue like the mouse brain. Here, using a test-case 3'UTR MPRA library with genomic elements containing variants from autism patients, we developed a method to achieve …


Usp38 Exacerbates Atrial Inflammation, Fibrosis, And Susceptibility To Atrial Fibrillation After Myocardial Infarction In Mice, Yang Gong, Tingting Yu, Wei Shuai, Tao Chen, Jingjing Zhang, He Huang Nov 2023

Usp38 Exacerbates Atrial Inflammation, Fibrosis, And Susceptibility To Atrial Fibrillation After Myocardial Infarction In Mice, Yang Gong, Tingting Yu, Wei Shuai, Tao Chen, Jingjing Zhang, He Huang

Faculty, Staff and Student Publications

BACKGROUND: Inflammation plays an important role in the pathogenesis of atrial fibrillation (AF) after myocardial infarction (MI). The role of USP38, a member of the ubiquitin-specific protease family, on MI-induced atrial inflammation, fibrosis, and associated AF is unclear.

METHODS: In this study, we surgically constructed a mouse MI model using USP38 cardiac conditional knockout (USP38-CKO) and cardiac-specific overexpression (USP38-TG) mice and applied biochemical, histological, electrophysiological characterization and molecular biology to investigate the effects of USP38 on atrial inflammation, fibrosis, and AF and its mechanisms.

RESULTS: Our results revealed that USP38-CKO attenuates atrial inflammation, thereby ameliorating fibrosis, and abnormal electrophysiologic properties, …


Single-Cell Analysis Differentiates The Effects Of P53 Mutation And P53 Loss On Cell Compositions Of Oncogenic Kras-Driven Pancreatic Cancer, Xinlei Sun, Daowei Yang, Yang Chen Nov 2023

Single-Cell Analysis Differentiates The Effects Of P53 Mutation And P53 Loss On Cell Compositions Of Oncogenic Kras-Driven Pancreatic Cancer, Xinlei Sun, Daowei Yang, Yang Chen

Faculty, Staff and Student Publications

Pancreatic ductal adenocarcinoma (PDAC) is a devastating malignant disease with a dismal prognosis. In the past decades, a plethora of genetically engineered mouse models (GEMMs) with autochthonous pancreatic tumor development have greatly facilitated studies of pancreatic cancer. Commonly used GEMMs of PDAC often harbor the oncogenic KRAS driver mutation (KrasG12D), in combination with either p53 mutation by knock-in strategy (Trp53R172H) or p53 loss by conditional knockout (Trp53cKO) strategy, in pancreatic cell lineages. However, the systematic comparison of the tumor microenvironment between KrasG12D; Trp53R172H (KPmut) mouse models and KrasG12D; Trp53cKO (KPloss) mouse models …


Increase In Hnrnpa1 Expression Suffices To Kill Motor Neurons In Transgenic Rats, Xionghao Liu, Tingting Zhang, Qinxue Wu, Cao Huang, Xu-Gang Xia, Hongxia Zhou, Bo Huang Nov 2023

Increase In Hnrnpa1 Expression Suffices To Kill Motor Neurons In Transgenic Rats, Xionghao Liu, Tingting Zhang, Qinxue Wu, Cao Huang, Xu-Gang Xia, Hongxia Zhou, Bo Huang

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

A dominant mutation in hnRNPA1 causes amyotrophic lateral sclerosis (ALS), but it is not known whether this mutation leads to motor neuron death through increased or decreased function. To elucidate the relationship between pathogenic hnRNPA1 mutation and its native function, we created novel transgenic rats that overexpressed wildtype rat hnRNPA1 exclusively in motor neurons. This targeted expression of wildtype hnRNPA1 caused severe motor neuron loss and subsequent denervation muscle atrophy in transgenic rats that recapitulated the characteristics of ALS. These findings demonstrate that the augmentation of hnRNPA1 expression suffices to trigger motor neuron degeneration and the manifestation of ALS-like phenotypes. …


Repeated Multi-Domain Cognitive Training Prevents Cognitive Decline, Anxiety And Amyloid Pathology Found In A Mouse Model Of Alzheimer Disease, Jogender Mehla, Scott H Deibel, Hadil Karem, Nancy S Hong, Shakhawat R Hossain, Sean G Lacoursiere, Robert J Sutherland, Majid H Mohajerani, Robert J Mcdonald Nov 2023

Repeated Multi-Domain Cognitive Training Prevents Cognitive Decline, Anxiety And Amyloid Pathology Found In A Mouse Model Of Alzheimer Disease, Jogender Mehla, Scott H Deibel, Hadil Karem, Nancy S Hong, Shakhawat R Hossain, Sean G Lacoursiere, Robert J Sutherland, Majid H Mohajerani, Robert J Mcdonald

2020-Current year OA Pubs

Education, occupation, and an active lifestyle, comprising enhanced social, physical, and mental components are associated with improved cognitive functions in aged people and may delay the progression of various neurodegenerative diseases including Alzheimer's disease. To investigate this protective effect, 3-month-old APP


Mechanopathology Of Biofilm-Like Mycobacterium Tuberculosis Cords, Richa Mishra, Melanie Hannebelle, Vishal P Patil, Anaëlle Dubois, Cristina Garcia-Mouton, Gabriela M Kirsch, Maxime Jan, Kunal Sharma, Nicolas Guex, Jessica Sordet-Dessimoz, Jesus Perez-Gil, Manu Prakash, Graham W Knott, Neeraj Dhar, John D Mckinney, Vivek V Thacker Nov 2023

Mechanopathology Of Biofilm-Like Mycobacterium Tuberculosis Cords, Richa Mishra, Melanie Hannebelle, Vishal P Patil, Anaëlle Dubois, Cristina Garcia-Mouton, Gabriela M Kirsch, Maxime Jan, Kunal Sharma, Nicolas Guex, Jessica Sordet-Dessimoz, Jesus Perez-Gil, Manu Prakash, Graham W Knott, Neeraj Dhar, John D Mckinney, Vivek V Thacker

Faculty, Staff and Student Publications

Mycobacterium tuberculosis (Mtb) cultured axenically without detergent forms biofilm-like cords, a clinical identifier of virulence. In lung-on-chip (LoC) and mouse models, cords in alveolar cells contribute to suppression of innate immune signaling via nuclear compression. Thereafter, extracellular cords cause contact-dependent phagocyte death but grow intercellularly between epithelial cells. The absence of these mechanopathological mechanisms explains the greater proportion of alveolar lesions with increased immune infiltration and dissemination defects in cording-deficient Mtb infections. Compression of Mtb lipid monolayers induces a phase transition that enables mechanical energy storage. Agent-based simulations demonstrate that the increased energy storage capacity is sufficient for the formation …


Pericentrin Deficiency In Smooth Muscle Cells Augments Atherosclerosis Through Hsf1-Driven Cholesterol Biosynthesis And Perk Activation, Suravi Majumder, Abhijnan Chattopadhyay, Jamie M Wright, Pujun Guan, L Maximilian Buja, Callie S Kwartler, Dianna M Milewicz Nov 2023

Pericentrin Deficiency In Smooth Muscle Cells Augments Atherosclerosis Through Hsf1-Driven Cholesterol Biosynthesis And Perk Activation, Suravi Majumder, Abhijnan Chattopadhyay, Jamie M Wright, Pujun Guan, L Maximilian Buja, Callie S Kwartler, Dianna M Milewicz

Faculty, Staff and Student Publications

Microcephalic osteodysplastic primordial dwarfism type II (MOPDII) is caused by biallelic loss-of-function variants in pericentrin (PCNT), and premature coronary artery disease (CAD) is a complication of the syndrome. Histopathology of coronary arteries from patients with MOPDII who died of CAD in their 20s showed extensive atherosclerosis. Hyperlipidemic mice with smooth muscle cell-specific (SMC-specific) Pcnt deficiency (PcntSMC-/-) exhibited significantly greater atherosclerotic plaque burden compared with similarly treated littermate controls despite similar serum lipid levels. Loss of PCNT in SMCs induced activation of heat shock factor 1 (HSF1) and consequently upregulated the expression and activity of HMG-CoA reductase (HMGCR), the rate-limiting enzyme …


A Single Cell Genomics Atlas Of The Drosophila Larval Eye Reveals Distinct Photoreceptor Developmental Timelines, Komal Kumar Bollepogu Raja, Kelvin Yeung, Yoon-Kyung Shim, Yumei Li, Rui Chen, Graeme Mardon Nov 2023

A Single Cell Genomics Atlas Of The Drosophila Larval Eye Reveals Distinct Photoreceptor Developmental Timelines, Komal Kumar Bollepogu Raja, Kelvin Yeung, Yoon-Kyung Shim, Yumei Li, Rui Chen, Graeme Mardon

Faculty, Staff and Students Publications

The Drosophila eye is a powerful model system to study the dynamics of cell differentiation, cell state transitions, cell maturation, and pattern formation. However, a high-resolution single cell genomics resource that accurately profiles all major cell types of the larval eye disc and their spatiotemporal relationships is lacking. Here, we report transcriptomic and chromatin accessibility data for all known cell types in the developing eye. Photoreceptors appear as strands of cells that represent their dynamic developmental timelines. As photoreceptor subtypes mature, they appear to assume a common transcriptomic profile that is dominated by genes involved in axon function. We identify …


Of Foxes, Dancing Bears, And Wolves, John Rosegrant Nov 2023

Of Foxes, Dancing Bears, And Wolves, John Rosegrant

Journal of Tolkien Research

When in “On Fairy-stories” Tolkien expressed his Faërian wish to understand the proper speech of animals, he was longing to relate with animals in a way that combined communion with them and respect for their separate natures. But the exuberance with which Tolkien expressed this wish changed over time. His early writings are rampant with talking animals and other forms of human-animal condensation in which the animals nevertheless retain their own agency; later in life he grew uneasy with what he now believed to be unrealistic and un-Catholic formulations. Nevertheless, the Faërian wish was so important to him that he …


Dysregulated Cd200-Cd200r Signaling In Early Diabetes Modulates Microglia-Mediated Retinopathy, Charles W Pfeifer, James T Walsh, Andrea Santeford, Joseph B Lin, Wandy L Beatty, Ryo Terao, Yizhou A Liu, Keitaro Hase, Philip A Ruzycki, Rajendra S Apte Nov 2023

Dysregulated Cd200-Cd200r Signaling In Early Diabetes Modulates Microglia-Mediated Retinopathy, Charles W Pfeifer, James T Walsh, Andrea Santeford, Joseph B Lin, Wandy L Beatty, Ryo Terao, Yizhou A Liu, Keitaro Hase, Philip A Ruzycki, Rajendra S Apte

2020-Current year OA Pubs

Diabetic retinopathy (DR) is a neurovascular complication of diabetes. Recent investigations have suggested that early degeneration of the neuroretina may occur prior to the appearance of microvascular changes; however, the mechanisms underlying this neurodegeneration have been elusive. Microglia are the predominant resident immune cell in the retina and adopt dynamic roles in disease. Here, we show that ablation of retinal microglia ameliorates visual dysfunction and neurodegeneration in a type I diabetes mouse model. We also provide evidence of enhanced microglial contact and engulfment of amacrine cells, ultrastructural modifications, and transcriptome changes that drive inflammation and phagocytosis. We show that CD200-CD200R …


Immune Responses Induced At One Hour Post Cataract Surgery Wounding Of The Chick Lens, Jodirae Dedreu, Morgan Basta, Janice Walker, Sue Menko Nov 2023

Immune Responses Induced At One Hour Post Cataract Surgery Wounding Of The Chick Lens, Jodirae Dedreu, Morgan Basta, Janice Walker, Sue Menko

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

While the lens is an avascular tissue with an immune-privileged status, studies have now revealed that there are immune responses specifically linked to the lens. The response to lens injury, such as following cataract surgery, has been shown to involve the activation of the resident immune cell population of the lens and the induction of immunomodulatory factors by the wounded epithelium. However, there has been limited investigation into the immediate response of the lens to wounding, particularly those induced factors that are intrinsic to the lens and its associated resident immune cells. Using an established chick embryo ex vivo cataract …


Unc-49 Is A Redox-Sensitive Gabaa Receptor That Regulates The Mitochondrial Unfolded Protein Response Cell Nonautonomously, Franziska Pohl, Allison L Germann, Jack Mao, Sydney Hou, Bayode Bakare, Paul Kong Thoo Lin, Kyari Yates, Michael L Nonet, Gustav Akk, Kerry Kornfeld, Jason M Held Nov 2023

Unc-49 Is A Redox-Sensitive Gabaa Receptor That Regulates The Mitochondrial Unfolded Protein Response Cell Nonautonomously, Franziska Pohl, Allison L Germann, Jack Mao, Sydney Hou, Bayode Bakare, Paul Kong Thoo Lin, Kyari Yates, Michael L Nonet, Gustav Akk, Kerry Kornfeld, Jason M Held

2020-Current year OA Pubs

The γ-aminobutyric acid-mediated (GABAergic) system participates in many aspects of organismal physiology and disease, including proteostasis, neuronal dysfunction, and life-span extension. Many of these phenotypes are also regulated by reactive oxygen species (ROS), but the redox mechanisms linking the GABAergic system to these phenotypes are not well defined. Here, we report that GABAergic redox signaling cell nonautonomously activates many stress response pathways in


Glutamate Receptor Dysregulation And Platelet Glutamate Dynamics In Alzheimer's And Parkinson's Diseases: Insights Into Current Medications, Deepa Gautam, Ulhas Naik, Meghna Naik, Santosh Yadav, Rameshwar Nath Chaurasia, Debabrata Dash Nov 2023

Glutamate Receptor Dysregulation And Platelet Glutamate Dynamics In Alzheimer's And Parkinson's Diseases: Insights Into Current Medications, Deepa Gautam, Ulhas Naik, Meghna Naik, Santosh Yadav, Rameshwar Nath Chaurasia, Debabrata Dash

Cardeza Foundation for Hematologic Research

Two of the most prevalent neurodegenerative disorders (NDDs), Alzheimer's disease (AD) and Parkinson's disease (PD), present significant challenges to healthcare systems worldwide. While the etiologies of AD and PD differ, both diseases share commonalities in synaptic dysfunction, thereby focusing attention on the role of neurotransmitters. The possible functions that platelets may play in neurodegenerative illnesses including PD and AD are becoming more acknowledged. In AD, platelets have been investigated for their ability to generate amyloid-ß (Aß) peptides, contributing to the formation of neurotoxic plaques. Moreover, platelets are considered biomarkers for early AD diagnosis. In PD, platelets have been studied for …


Diagnostic And Commensal Staphylococcus Pseudintermedius Genomes Reveal Niche Adaptation Through Parallel Selection Of Defense Mechanisms, Sanjam S Sawhney, Rhiannon C Vargas, Meghan A Wallace, Carol E Muenks, Brian V Lubbers, Stephanie A Fritz, Carey-Ann D Burnham, Gautam Dantas Nov 2023

Diagnostic And Commensal Staphylococcus Pseudintermedius Genomes Reveal Niche Adaptation Through Parallel Selection Of Defense Mechanisms, Sanjam S Sawhney, Rhiannon C Vargas, Meghan A Wallace, Carol E Muenks, Brian V Lubbers, Stephanie A Fritz, Carey-Ann D Burnham, Gautam Dantas

2020-Current year OA Pubs

Staphylococcus pseudintermedius is historically understood as a prevalent commensal and pathogen of dogs, though modern clinical diagnostics reveal an expanded host-range that includes humans. It remains unclear whether differentiation across S. pseudintermedius populations is driven primarily by niche-type or host-species. We sequenced 501 diagnostic and commensal isolates from a hospital, veterinary diagnostic laboratory, and within households in the American Midwest, and performed a comparative genomics investigation contrasting human diagnostic, animal diagnostic, human colonizing, pet colonizing, and household-surface S. pseudintermedius isolates. Though indistinguishable by core and accessory gene architecture, diagnostic isolates harbor more encoded and phenotypic resistance, whereas colonizing and surface …


Tfeb And Tfe3 Control Glucose Homeostasis By Regulating Insulin Gene Expression, Adrien Pasquier, Nunzia Pastore, Luca D'Orsi, Rita Colonna, Alessandra Esposito, Veronica Maffia, Rossella De Cegli, Margherita Mutarelli, Susanna Ambrosio, Gennaro Tufano, Antonio Grimaldi, Marcella Cesana, Davide Cacchiarelli, Nathalie Delalleau, Gennaro Napolitano, Andrea Ballabio Nov 2023

Tfeb And Tfe3 Control Glucose Homeostasis By Regulating Insulin Gene Expression, Adrien Pasquier, Nunzia Pastore, Luca D'Orsi, Rita Colonna, Alessandra Esposito, Veronica Maffia, Rossella De Cegli, Margherita Mutarelli, Susanna Ambrosio, Gennaro Tufano, Antonio Grimaldi, Marcella Cesana, Davide Cacchiarelli, Nathalie Delalleau, Gennaro Napolitano, Andrea Ballabio

Duncan NRI Faculty and Staff Publications

To fulfill their function, pancreatic beta cells require precise nutrient-sensing mechanisms that control insulin production. Transcription factor EB (TFEB) and its homolog TFE3 have emerged as crucial regulators of the adaptive response of cell metabolism to environmental cues. Here, we show that TFEB and TFE3 regulate beta-cell function and insulin gene expression in response to variations in nutrient availability. We found that nutrient deprivation in beta cells promoted TFEB/TFE3 activation, which resulted in suppression of insulin gene expression. TFEB overexpression was sufficient to inhibit insulin transcription, whereas beta cells depleted of both TFEB and TFE3 failed to suppress insulin gene …