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Articles 3151 - 3180 of 7169

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Variation In Histone Configurations Correlates With Gene Expression Across Nine Inbred Strains Of Mice., Anna L. Tyler, Catrina Spruce, Romy Kursawe, Annat Haber, Robyn L Ball, Wendy A Pitman, Alexander D Fine, Narayanan Raghupathy, Michael Walker, Vivek M. Philip, Christopher L. Baker, J Matthew Mahoney, Gary Churchill, Jennifer J. Trowbridge, Michael L. Stitzel, Kenneth Paigen, Petko M. Petkov, Gregory W. Carter Jun 2023

Variation In Histone Configurations Correlates With Gene Expression Across Nine Inbred Strains Of Mice., Anna L. Tyler, Catrina Spruce, Romy Kursawe, Annat Haber, Robyn L Ball, Wendy A Pitman, Alexander D Fine, Narayanan Raghupathy, Michael Walker, Vivek M. Philip, Christopher L. Baker, J Matthew Mahoney, Gary Churchill, Jennifer J. Trowbridge, Michael L. Stitzel, Kenneth Paigen, Petko M. Petkov, Gregory W. Carter

Faculty Research 2023

The diversity outbred (DO) mice and their inbred founders are widely used models of human disease. However, although the genetic diversity of these mice has been well documented, their epigenetic diversity has not. Epigenetic modifications, such as histone modifications and DNA methylation, are important regulators of gene expression, and as such are a critical mechanistic link between genotype and phenotype. Therefore, creating a map of epigenetic modifications in the DO mice and their founders is an important step toward understanding mechanisms of gene regulation and the link to disease in this widely used resource. To this end, we performed a …


Chow Diet In Mouse Aging Studies: Nothing Regular About It., Jennifer Lee, Chloe Purello, Sarah L Booth, Brian Bennett, Christopher D Wiley, Ron Korstanje Jun 2023

Chow Diet In Mouse Aging Studies: Nothing Regular About It., Jennifer Lee, Chloe Purello, Sarah L Booth, Brian Bennett, Christopher D Wiley, Ron Korstanje

Faculty Research 2023

Chow diet is used in the majority of rodent studies and, although assumed to be standardized for dietary source and nutritional contents, it varies widely across commercial formulations. Similarly, current approaches to study aging in rodents involve a single-diet formulation across the lifespan and overlook age-specific nutritional requirements, which may have long-term effects on aging processes. Together, these nutrition-based disparities represent major gaps in geroscience research, affecting the interpretation and reproducibility of the studies. This perspective aims to raise awareness on the importance of rodent diet formulation and proposes that geroscientists include detailed descriptions of all experimental diets and feeding …


Chronic, Mild Hypothermic Environmental Temperature Does Not Ameliorate Cognitive Deficits In An Alzheimer's Disease Mouse., Samuel Mcfadden, Lindsey N Sime, Makayla F Cox, Caleigh A Findley, Mackenzie R Peck, Kathleen Quinn, Yimin Fang, Andrzej Bartke, Erin R Hascup, Kevin N Hascup Jun 2023

Chronic, Mild Hypothermic Environmental Temperature Does Not Ameliorate Cognitive Deficits In An Alzheimer's Disease Mouse., Samuel Mcfadden, Lindsey N Sime, Makayla F Cox, Caleigh A Findley, Mackenzie R Peck, Kathleen Quinn, Yimin Fang, Andrzej Bartke, Erin R Hascup, Kevin N Hascup

Articles

Metabolic dysfunction increases with age and is a contributing factor to Alzheimer's disease (AD) development. We have previously observed impaired insulin sensitivity and glucose homeostasis in the APP/PS1 model of AD. To improve these parameters, we chronically exposed male and female mice to mild hypothermic environmental temperature (eT), which positively modulates metabolism. Although a hypothermic eT normalized insulin sensitivity, glucose tolerance was still impaired in both sexes of AD mice. We observed increased plasma glucagon and B-cell activating factor in both sexes, but additional sexually dimorphic mechanisms may explain the impaired glucose homeostasis in AD mice. Hepatic Glut2 was decreased …


Replicative Acinetobacter Baumannii Strains Interfere With Phagosomal Maturation By Modulating The Vacuolar Ph, Jesus S. Distel, Gisela Di Venanzio, Joseph J. Mackel, David A. Rosen, Mario F. Feldman Jun 2023

Replicative Acinetobacter Baumannii Strains Interfere With Phagosomal Maturation By Modulating The Vacuolar Ph, Jesus S. Distel, Gisela Di Venanzio, Joseph J. Mackel, David A. Rosen, Mario F. Feldman

2020-Current year OA Pubs

Bacterial pneumonia is a common infection of the lower respiratory tract that can afflict patients of all ages. Multidrug-resistant strains of Acinetobacter baumannii are increasingly responsible for causing nosocomial pneumonias, thus posing an urgent threat. Alveolar macrophages play a critical role in overcoming respiratory infections caused by this pathogen. Recently, we and others have shown that new clinical isolates of A. baumannii, but not the common lab strain ATCC 19606 (19606), can persist and replicate in macrophages within spacious vacuoles that we called Acinetobacter Containing Vacuoles (ACV). In this work, we demonstrate that the modern A. baumannii clinical isolate 398, …


Uridine-Derived Ribose Fuels Glucose-Restricted Pancreatic Cancer, Zeribe C Nwosu, Matthew H Ward, Leah P Shriver, Gary J Patti, Et Al. Jun 2023

Uridine-Derived Ribose Fuels Glucose-Restricted Pancreatic Cancer, Zeribe C Nwosu, Matthew H Ward, Leah P Shriver, Gary J Patti, Et Al.

2020-Current year OA Pubs

Pancreatic ductal adenocarcinoma (PDA) is a lethal disease notoriously resistant to therapy


Peptidoglycan Recognition In Drosophila Is Mediated By Lysmd3/4, Mark Snee, Jason Wever, Jennifer Guyton, Ryan Beehler-Evans, Christine C Yokoyama, Craig A Micchelli Jun 2023

Peptidoglycan Recognition In Drosophila Is Mediated By Lysmd3/4, Mark Snee, Jason Wever, Jennifer Guyton, Ryan Beehler-Evans, Christine C Yokoyama, Craig A Micchelli

2020-Current year OA Pubs

Microbial recognition is a key step in regulating the immune signaling pathways of multicellular organisms. Peptidoglycan, a component of the bacterial cell wall, exhibits immune stimulating activity in both plants and animals. Lysin motif domain (LysMD) family proteins are ancient peptidoglycan receptors that function in bacteriophage and plants. This report focuses on defining the role of LysMD-containing proteins in animals. Here, we characterize a novel transmembrane LysMD family protein. Loss-of-function mutations at the lysMD3/4 locus in Drosophila are associated with systemic innate immune activation following challenge, so we refer to this gene as immune active (ima). We show that Ima …


Deficiency In Galectin-3, -8, And -9 Impairs Immunity To Chronic Mycobacterium Tuberculosis Infection But Not Acute Infection With Multiple Intracellular Pathogens, Huntly M. Morrison, Wandy L. Beatty, Et Al. Jun 2023

Deficiency In Galectin-3, -8, And -9 Impairs Immunity To Chronic Mycobacterium Tuberculosis Infection But Not Acute Infection With Multiple Intracellular Pathogens, Huntly M. Morrison, Wandy L. Beatty, Et Al.

2020-Current year OA Pubs

Macrophages employ an array of pattern recognition receptors to detect and eliminate intracellular pathogens that access the cytosol. The cytosolic carbohydrate sensors Galectin-3, -8, and -9 (Gal-3, Gal-8, and Gal-9) recognize damaged pathogen-containing phagosomes, and Gal-3 and Gal-8 are reported to restrict bacterial growth via autophagy in cultured cells. However, the contribution of these galectins to host resistance during bacterial infection in vivo remains unclear. We found that Gal-9 binds directly to Mycobacterium tuberculosis (Mtb) and Salmonella enterica serovar Typhimurium (Stm) and localizes to Mtb in macrophages. To determine the combined contribution of membrane damage-sensing galectins to immunity, we generated …


Central Carbon Flux Controls Growth/Damage Balance For Streptococcus Pyogenes, Joseph A. Merriman, Wei Xu, Michael G. Caparon Jun 2023

Central Carbon Flux Controls Growth/Damage Balance For Streptococcus Pyogenes, Joseph A. Merriman, Wei Xu, Michael G. Caparon

2020-Current year OA Pubs

Microbial pathogens balance growth against tissue damage to achieve maximum fitness. Central carbon metabolism is connected to growth, but how it influences growth/damage balance is largely unknown. Here we examined how carbon flux through the exclusively fermentative metabolism of the pathogenic lactic acid bacterium Streptococcus pyogenes impacts patterns of growth and tissue damage. Using a murine model of soft tissue infection, we systematically examined single and pair-wise mutants that constrained carbon flux through the three major pathways that S. pyogenes employs for reduction of the glycolytic intermediate pyruvate, revealing distinct disease outcomes. Its canonical lactic acid pathway (via lactate dehydrogenase) …


The Mitophagy Receptor Bnip3 Is Critical For The Regulation Of Metabolic Homeostasis And Mitochondrial Function In The Nucleus Pulposus Cells Of The Intervertebral Disc, Vedavathi Madhu, Miriam Hernandez-Meadows, Paige K Boneski, Yunping Qiu, Anyonya R Guntur, Irwin J Kurland, Ruteja A Barve, Makarand V Risbud Jun 2023

The Mitophagy Receptor Bnip3 Is Critical For The Regulation Of Metabolic Homeostasis And Mitochondrial Function In The Nucleus Pulposus Cells Of The Intervertebral Disc, Vedavathi Madhu, Miriam Hernandez-Meadows, Paige K Boneski, Yunping Qiu, Anyonya R Guntur, Irwin J Kurland, Ruteja A Barve, Makarand V Risbud

2020-Current year OA Pubs

The contribution of mitochondria to the metabolic function of hypoxic NP cells has been overlooked. We have shown that NP cells contain networked mitochondria and that mitochondrial translocation of BNIP3 mediates hypoxia-induced mitophagy. However, whether BNIP3 also plays a role in governing mitochondrial function and metabolism in hypoxic NP cells is not known. BNIP3 knockdown altered mitochondrial morphology, and number, and increased mitophagy. Interestingly, BNIP3 deficiency in NP cells reduced glycolytic capacity reflected by lower production of lactate/H


A Guide To The Brain Initiative Cell Census Network Data Ecosystem, Michael Hawrylycz, Maryann E Martone, Giorgio A Ascoli, Jan G Bjaalie, Hong-Wei Dong, Satrajit S Ghosh, Jesse Gillis, Ronna Hertzano, David R Haynor, Patrick R Hof, Yongsoo Kim, Ed Lein, Yufeng Liu, Jeremy A Miller, Partha P Mitra, Eran Mukamel, Lydia Ng, David Osumi-Sutherland, Hanchuan Peng, Patrick L Ray, Raymond Sanchez, Aviv Regev, Alex Ropelewski, Richard H Scheuermann, Shawn Zheng Kai Tan, Carol L Thompson, Timothy Tickle, Hagen Tilgner, Merina Varghese, Brock Wester, Owen White, Hongkui Zeng, Brian Aevermann, David Allemang, Seth Ament, Thomas L Athey, Cody Baker, Katherine S Baker, Pamela M Baker, Anita Bandrowski, Samik Banerjee, Prajal Bishwakarma, Ambrose Carr, Min Chen, Roni Choudhury, Jonah Cool, Heather Creasy, Florence D'Orazi, Kylee Degatano, Benjamin Dichter, Song-Lin Ding, Tim Dolbeare, Joseph R Ecker, Rongxin Fang, Jean-Christophe Fillion-Robin, Timothy P Fliss, James Gee, Tom Gillespie, Nathan Gouwens, Guo-Qiang Zhang, Yaroslav O Halchenko, Nomi L Harris, Brian R Herb, Houri Hintiryan, Gregory Hood, Sam Horvath, Bingxing Huo, Dorota Jarecka, Shengdian Jiang, Farzaneh Khajouei, Elizabeth A Kiernan, Huseyin Kir, Lauren Kruse, Changkyu Lee, Boudewijn Lelieveldt, Yang Li, Hanqing Liu, Lijuan Liu, Anup Markuhar, James Mathews, Kaylee L Mathews, Chris Mezias, Michael I Miller, Tyler Mollenkopf, Shoaib Mufti, Christopher J Mungall, Joshua Orvis, Maja A Puchades, Lei Qu, Joseph P Receveur, Bing Ren, Nathan Sjoquist, Brian Staats, Daniel Tward, Cindy T J Van Velthoven, Quanxin Wang, Fangming Xie, Hua Xu, Zizhen Yao, Zhixi Yun, Yun Renee Zhang, W Jim Zheng, Brian Zingg Jun 2023

A Guide To The Brain Initiative Cell Census Network Data Ecosystem, Michael Hawrylycz, Maryann E Martone, Giorgio A Ascoli, Jan G Bjaalie, Hong-Wei Dong, Satrajit S Ghosh, Jesse Gillis, Ronna Hertzano, David R Haynor, Patrick R Hof, Yongsoo Kim, Ed Lein, Yufeng Liu, Jeremy A Miller, Partha P Mitra, Eran Mukamel, Lydia Ng, David Osumi-Sutherland, Hanchuan Peng, Patrick L Ray, Raymond Sanchez, Aviv Regev, Alex Ropelewski, Richard H Scheuermann, Shawn Zheng Kai Tan, Carol L Thompson, Timothy Tickle, Hagen Tilgner, Merina Varghese, Brock Wester, Owen White, Hongkui Zeng, Brian Aevermann, David Allemang, Seth Ament, Thomas L Athey, Cody Baker, Katherine S Baker, Pamela M Baker, Anita Bandrowski, Samik Banerjee, Prajal Bishwakarma, Ambrose Carr, Min Chen, Roni Choudhury, Jonah Cool, Heather Creasy, Florence D'Orazi, Kylee Degatano, Benjamin Dichter, Song-Lin Ding, Tim Dolbeare, Joseph R Ecker, Rongxin Fang, Jean-Christophe Fillion-Robin, Timothy P Fliss, James Gee, Tom Gillespie, Nathan Gouwens, Guo-Qiang Zhang, Yaroslav O Halchenko, Nomi L Harris, Brian R Herb, Houri Hintiryan, Gregory Hood, Sam Horvath, Bingxing Huo, Dorota Jarecka, Shengdian Jiang, Farzaneh Khajouei, Elizabeth A Kiernan, Huseyin Kir, Lauren Kruse, Changkyu Lee, Boudewijn Lelieveldt, Yang Li, Hanqing Liu, Lijuan Liu, Anup Markuhar, James Mathews, Kaylee L Mathews, Chris Mezias, Michael I Miller, Tyler Mollenkopf, Shoaib Mufti, Christopher J Mungall, Joshua Orvis, Maja A Puchades, Lei Qu, Joseph P Receveur, Bing Ren, Nathan Sjoquist, Brian Staats, Daniel Tward, Cindy T J Van Velthoven, Quanxin Wang, Fangming Xie, Hua Xu, Zizhen Yao, Zhixi Yun, Yun Renee Zhang, W Jim Zheng, Brian Zingg

Faculty, Staff and Student Publications

Characterizing cellular diversity at different levels of biological organization and across data modalities is a prerequisite to understanding the function of cell types in the brain. Classification of neurons is also essential to manipulate cell types in controlled ways and to understand their variation and vulnerability in brain disorders. The BRAIN Initiative Cell Census Network (BICCN) is an integrated network of data-generating centers, data archives, and data standards developers, with the goal of systematic multimodal brain cell type profiling and characterization. Emphasis of the BICCN is on the whole mouse brain with demonstration of prototype feasibility for human and nonhuman …


A Highly Selective Humanized Ddr1 Mab Reverses Immune Exclusion By Disrupting Collagen Fiber Alignment In Breast Cancer, Junquan Liu, Huai-Chin Chiang, Wei Xiong, Victor Laurent, Samuel C Griffiths, Jasmin Dülfer, Hui Deng, Xiujie Sun, Y Whitney Yin, Wenliang Li, Laurent P Audoly, Zhiqiang An, Thomas Schürpf, Rong Li, Ningyan Zhang Jun 2023

A Highly Selective Humanized Ddr1 Mab Reverses Immune Exclusion By Disrupting Collagen Fiber Alignment In Breast Cancer, Junquan Liu, Huai-Chin Chiang, Wei Xiong, Victor Laurent, Samuel C Griffiths, Jasmin Dülfer, Hui Deng, Xiujie Sun, Y Whitney Yin, Wenliang Li, Laurent P Audoly, Zhiqiang An, Thomas Schürpf, Rong Li, Ningyan Zhang

Faculty, Staff and Student Publications

BACKGROUND: Immune exclusion (IE) where tumors deter the infiltration of immune cells into the tumor microenvironment has emerged as a key mechanism underlying immunotherapy resistance. We recently reported a novel role of discoidin domain-containing receptor 1 (DDR1) in promoting IE in breast cancer and validated its critical role in IE using neutralizing rabbit monoclonal antibodies (mAbs) in multiple mouse tumor models.

METHODS: To develop a DDR1-targeting mAb as a potential cancer therapeutic, we humanized mAb9 with a complementarity-determining region grafting strategy. The humanized antibody named PRTH-101 is currently being tested in a Phase 1 clinical trial. We determined the binding …


Maternal Embryonic Leucine Zipper Kinase Is Associated With Metastasis In Triple-Negative Breast Cancer, Xuemei Xie, Gaurav B Chauhan, Ramakrishna Edupuganti, Takahiro Kogawa, Jihyun Park, Moises Tacam, Alex W Tan, Mohd Mughees, Fnu Vidhu, Diane D Liu, Juliana M Taliaferro, Mary Kathryn Pitner, Luke S Browning, Ju-Hyeon Lee, Yu Shen, Jian Wang, Naoto T Ueno, Savitri Krishnamurthy, Gabriel N Hortobagyi, Debu Tripathy, Steven J Van Laere, Geoffrey Bartholomeusz, Kevin N Dalby, Chandra Bartholomeusz Jun 2023

Maternal Embryonic Leucine Zipper Kinase Is Associated With Metastasis In Triple-Negative Breast Cancer, Xuemei Xie, Gaurav B Chauhan, Ramakrishna Edupuganti, Takahiro Kogawa, Jihyun Park, Moises Tacam, Alex W Tan, Mohd Mughees, Fnu Vidhu, Diane D Liu, Juliana M Taliaferro, Mary Kathryn Pitner, Luke S Browning, Ju-Hyeon Lee, Yu Shen, Jian Wang, Naoto T Ueno, Savitri Krishnamurthy, Gabriel N Hortobagyi, Debu Tripathy, Steven J Van Laere, Geoffrey Bartholomeusz, Kevin N Dalby, Chandra Bartholomeusz

Faculty, Staff and Student Publications

UNLABELLED: Triple-negative breast cancer (TNBC) has high relapse and metastasis rates and a high proportion of cancer stem-like cells (CSC), which possess self-renewal and tumor initiation capacity. MELK (maternal embryonic leucine zipper kinase), a protein kinase of the Snf1/AMPK kinase family, is known to promote CSC maintenance and malignant transformation. However, the role of MELK in TNBC metastasis is unknown; we sought to address this in the current study. We found that

SIGNIFICANCE: These findings indicate that MELK is a driver of aggressiveness and metastasis in TNBC.


Facial Analytics Based On A Coordinate Extrapolation System (Zface) For Morphometric Phenotyping Of Developing Zebrafish, Lorena Maili, Oscar E Ruiz, Philip H Kahan, Frankie Chiu, Stephen T Larson, S Shahrukh Hashmi, Jacqueline T Hecht, George T Eisenhoffer Jun 2023

Facial Analytics Based On A Coordinate Extrapolation System (Zface) For Morphometric Phenotyping Of Developing Zebrafish, Lorena Maili, Oscar E Ruiz, Philip H Kahan, Frankie Chiu, Stephen T Larson, S Shahrukh Hashmi, Jacqueline T Hecht, George T Eisenhoffer

Faculty, Staff and Student Publications

Facial development requires a complex and coordinated series of cellular events that, when perturbed, can lead to structural birth defects. A quantitative approach to quickly assess morphological changes could address how genetic or environmental inputs lead to differences in facial shape and promote malformations. Here, we report on a method to rapidly analyze craniofacial development in zebrafish embryos using facial analytics based on a coordinate extrapolation system, termed zFACE. Confocal images capture facial structures and morphometric data are quantified based on anatomical landmarks present during development. The quantitative morphometric data can detect phenotypic variation and inform on changes in facial …


Trpv4 Expression In The Renal Tubule Is Necessary For Maintaining Whole Body K+ Homeostasis, Anna Stavniichuk, Kyrylo Pyrshev, Oleg Zaika, Viktor N Tomilin, Mariya Kordysh, Monika Lakk, David Križaj, Oleh Pochynyuk Jun 2023

Trpv4 Expression In The Renal Tubule Is Necessary For Maintaining Whole Body K+ Homeostasis, Anna Stavniichuk, Kyrylo Pyrshev, Oleg Zaika, Viktor N Tomilin, Mariya Kordysh, Monika Lakk, David Križaj, Oleh Pochynyuk

Faculty, Staff and Student Publications

The Ca2+-permeable transient receptor potential vanilloid type 4 (TRPV4) channel serves as the sensor of tubular flow, thus being well suited to govern mechanosensitive K+ transport in the distal renal tubule. Here, we directly tested whether the TRPV4 function is significant in affecting K+ balance. We used balance metabolic cage experiments and systemic measurements with different K+ feeding regimens [high (5% K+), regular (0.9% K+), and low (<0.01% K+)] in newly created transgenic mice with selective TRPV4 deletion in the renal tubule (TRPV4fl/fl-Pax8Cre) and their littermate controls (TRPV4fl/fl). Deletion was verified by the absence of TRPV4 protein expression and lack of TRPV4-dependent Ca2+ influx. There were no differences in plasma electrolytes, urinary volume, and K+ levels at baseline. In contrast, plasma K+ levels were significantly elevated in TRPV4fl/fl-Pax8Cre mice on high K+ intake. K+-loaded knockout mice exhibited lower urinary K+ levels than TRPV4fl/fl mice, which was accompanied by higher aldosterone levels by day 7. Moreover, TRPV4fl/fl-Pax8Cre mice had more efficient renal K+ conservation and higher plasma K+ levels in the state of dietary K+ deficiency. H+-K+-ATPase levels were significantly increased in TRPV4fl/fl-Pax8Cre mice …


Smooth Muscle-Alpha Actin R149c Pathogenic Variant Downregulates Integrin Recruitment At Cell-Matrix Adhesions And Decreases Cellular Contractility, Krishna R Ojha, Hyoseon Kim, Samuel Padgham, Laura Hopkins, Robert J Zamen, Abhijnan Chattopadhyay, Gang Han, Dianna M Milewicz, Michael P Massett, Andreea Trache Jun 2023

Smooth Muscle-Alpha Actin R149c Pathogenic Variant Downregulates Integrin Recruitment At Cell-Matrix Adhesions And Decreases Cellular Contractility, Krishna R Ojha, Hyoseon Kim, Samuel Padgham, Laura Hopkins, Robert J Zamen, Abhijnan Chattopadhyay, Gang Han, Dianna M Milewicz, Michael P Massett, Andreea Trache

Faculty, Staff and Student Publications

Thoracic aortic aneurysm is found in patients with ACTA2 pathogenic variants. ACTA2 missense variants are associated with impaired aortic smooth muscle cell (SMC) contraction. This study tested the hypothesis that the Acta2R149C/+ variant alters actin isoform expression and decreases integrin recruitment, thus, reducing aortic contractility. Stress relaxation measurements in thoracic aortic rings showed two functional regimes with a reduction of stress relaxation in the aorta from Acta2R149C/+ mice at low tension, but not at high tension values. Contractile responses to phenylephrine and potassium chloride were 50% lower in Acta2R149C/+ mice than in wild-type (WT) mice. Additionally, SMC were immunofluorescently labeled …


Ift74 Variants Cause Skeletal Ciliopathy And Motile Cilia Defects In Mice And Humans., Zeineb Bakey, Oscar A. Cabrera, Julia Hoefele, Dinu Antony, Kaman Wu, Michael W. Stuck, Dimitra Micha, Thibaut Eguether, Abigail O. Smith, Nicole N. Van Der Wel, Matias Wagner, Lara Strittmatter, Philip L. Beales, Julie A. Jonassen, Isabelle Thiffault, Maxime Cadieux-Dion, Laura Boyes, Saba Sharif, Beyhan Tüysüz, Desiree Dunstheimer, Hans W M Niessen, William Devine, Cecilia W. Lo, Hannah M. Mitchison, Miriam Schmidts, Gregory J. Pazour Jun 2023

Ift74 Variants Cause Skeletal Ciliopathy And Motile Cilia Defects In Mice And Humans., Zeineb Bakey, Oscar A. Cabrera, Julia Hoefele, Dinu Antony, Kaman Wu, Michael W. Stuck, Dimitra Micha, Thibaut Eguether, Abigail O. Smith, Nicole N. Van Der Wel, Matias Wagner, Lara Strittmatter, Philip L. Beales, Julie A. Jonassen, Isabelle Thiffault, Maxime Cadieux-Dion, Laura Boyes, Saba Sharif, Beyhan Tüysüz, Desiree Dunstheimer, Hans W M Niessen, William Devine, Cecilia W. Lo, Hannah M. Mitchison, Miriam Schmidts, Gregory J. Pazour

Manuscripts, Articles, Book Chapters and Other Papers

Motile and non-motile cilia play critical roles in mammalian development and health. These organelles are composed of a 1000 or more unique proteins, but their assembly depends entirely on proteins synthesized in the cell body and transported into the cilium by intraflagellar transport (IFT). In mammals, malfunction of non-motile cilia due to IFT dysfunction results in complex developmental phenotypes that affect most organs. In contrast, disruption of motile cilia function causes subfertility, disruption of the left-right body axis, and recurrent airway infections with progressive lung damage. In this work, we characterize allele specific phenotypes resulting from IFT74 dysfunction in human …


Effects Of Different Spectrum Of Leds On Retinal Degeneration Through Regulating Endoplasmic Reticulum Stress, Wenyi Chen, Rong Lin, Kunhong Xiao, Kun Yuan, Zhongjiang Chen, Yan Huang Jun 2023

Effects Of Different Spectrum Of Leds On Retinal Degeneration Through Regulating Endoplasmic Reticulum Stress, Wenyi Chen, Rong Lin, Kunhong Xiao, Kun Yuan, Zhongjiang Chen, Yan Huang

Faculty, Staff and Student Publications

PURPOSE: To evaluate the impact of full-spectrum light-emitting diodes (LEDs) on albino guinea pigs' retina and investigate the roles of short-wavelength opsin (S-opsin) and endoplasmic reticulum (ER) stress in light-induced retinal degeneration (LIRD).

METHODS: Three-week-old albino guinea pigs (n = 30) were distributed into five groups under 12/12 light/dark cycles with indoor natural light (NC; 300-500 lux, n = 6), full-spectrum LEDs (FL; 300 lux, n = 6; 3000 lux, n = 6), and commercial cold-white LEDs (CL; 300 lux, n = 6; 3000 lux, n = 6) and raised for 28 days. Hematoxylin and eosin staining and transmission electron …


Ccr7 Mediated Mimetic Dendritic Cell Vaccine Homing In Lymph Node For Head And Neck Squamous Cell Carcinoma Therapy, Jiabin Xu, Hong Liu, Tao Wang, Zhenfu Wen, Haolin Chen, Zeyu Yang, Liyan Li, Shan Yu, Siyong Gao, Le Yang, Kan Li, Jingyuan Li, Xiang Li, Lixin Liu, Guiqing Liao, Yongming Chen, Yujie Liang Jun 2023

Ccr7 Mediated Mimetic Dendritic Cell Vaccine Homing In Lymph Node For Head And Neck Squamous Cell Carcinoma Therapy, Jiabin Xu, Hong Liu, Tao Wang, Zhenfu Wen, Haolin Chen, Zeyu Yang, Liyan Li, Shan Yu, Siyong Gao, Le Yang, Kan Li, Jingyuan Li, Xiang Li, Lixin Liu, Guiqing Liao, Yongming Chen, Yujie Liang

Faculty, Staff and Student Publications

Immunotherapy has been recognized as one of the most promising treatment strategies for head and neck squamous cell carcinoma (HNSCC). As a pioneering trend of immunotherapy, dendritic cell (DC) vaccines have displayed the ability to prime an immune response, while the insufficient immunogenicity and low lymph node (LN) targeting efficiency, resulted in an unsubstantiated therapeutic efficacy in clinical trials. Herein, a hybrid nanovaccine (Hy-M-Exo) is developed via fusing tumor-derived exosome (TEX) and dendritic cell membrane vesicle (DCMV). The hybrid nanovaccine inherited the key protein for lymphatic homing, CCR7, from DCMV and demonstrated an enhanced efficiency of LN targeting. Meanwhile, the …


A 3d Perfusable Platform For In Vitro Culture Of Patient Derived Xenografts, Lindsey K Sablatura, Kristin M Bircsak, Peter Shepherd, Madhavi Bathina, Karla Queiroz, Mary C Farach-Carson, Rick A Kittles, Pamela E Constantinou, Anthony Saleh, Nora M Navone, Daniel A Harrington Jun 2023

A 3d Perfusable Platform For In Vitro Culture Of Patient Derived Xenografts, Lindsey K Sablatura, Kristin M Bircsak, Peter Shepherd, Madhavi Bathina, Karla Queiroz, Mary C Farach-Carson, Rick A Kittles, Pamela E Constantinou, Anthony Saleh, Nora M Navone, Daniel A Harrington

Faculty, Staff and Student Publications

Many advanced cancer models, such as patient-derived xenografts (PDXs), offer significant benefits in their preservation of the native tumor's heterogeneity and susceptibility to treatments, but face significant barriers to use in their reliance on a rodent host for propagation and screening. PDXs remain difficult to implement in vitro, particularly in configurations that enable both detailed cellular analysis and high-throughput screening (HTS). Complex multilineage co-cultures with stromal fibroblasts, endothelium, and other cellular and structural components of the tumor microenvironment (TME) further complicate ex vivo implementation. Herein, the culture of multiple prostate cancer (PCa)-derived PDX models as 3D clusters within engineered biomimetic …


The Tempo And Mode Of Gene Regulatory Programs During Bacterial Infection, Rocio Diaz Escarcega, Abhijeet A Patil, Matthew D Meyer, Jose F Moruno-Manchon, Alexander D Silvagnoli, Louise D Mccullough, Andrey S Tsvetkov Jun 2023

The Tempo And Mode Of Gene Regulatory Programs During Bacterial Infection, Rocio Diaz Escarcega, Abhijeet A Patil, Matthew D Meyer, Jose F Moruno-Manchon, Alexander D Silvagnoli, Louise D Mccullough, Andrey S Tsvetkov

Faculty, Staff and Student Publications

Tardigrades are microscopic invertebrates, which are capable of withstanding extreme environmental conditions, including high levels of radiation. A Tardigrade protein, Dsup (Damage Suppressor), protects the Tardigrade's DNA during harsh environmental stress and X-rays. When expressed in cancer cells, Dsup protects DNA from single- and double-strand breaks (DSBs) induced by radiation, increases survival of irradiated cells, and protects DNA from reactive oxygen species. These unusual properties of Dsup suggested that understanding how the protein functions may help in the design of small molecules that could protect humans during radiotherapy or space travel. Here, we investigated if Dsup is protective in cortical …


Targeting Unc51-Like Autophagy Activating Kinase 1 (Ulk1) Overcomes Adaptive Drug Resistance In Acute Myelogenous Leukemia, Seemana Bhattacharya, Sujan Piya, Huaxian Ma, Priyanka Sharma, Qi Zhang, Natalia Baran, Vivian R Ruvolo, Teresa Mcqueen, R Eric Davis, Rasoul Pourebrahim, Marina Konopleva, Hagop Kantarjian, Nicholas D P Cosford, Michael Andreeff, Gautam Borthakur Jun 2023

Targeting Unc51-Like Autophagy Activating Kinase 1 (Ulk1) Overcomes Adaptive Drug Resistance In Acute Myelogenous Leukemia, Seemana Bhattacharya, Sujan Piya, Huaxian Ma, Priyanka Sharma, Qi Zhang, Natalia Baran, Vivian R Ruvolo, Teresa Mcqueen, R Eric Davis, Rasoul Pourebrahim, Marina Konopleva, Hagop Kantarjian, Nicholas D P Cosford, Michael Andreeff, Gautam Borthakur

Faculty, Staff and Student Publications

Despite effective new therapies, adaptive resistance remains the main obstacle in AML therapy. Autophagy induction is a key mechanism for adaptive resistance. Leukemic blasts at diagnosis express higher levels of the apical autophagy kinase ULK1 compared to normal hematopoietic cells. Exposure to chemotherapy and targeted agents upregulate ULK1, hence we hypothesize that developing ULK1 inhibitors may present the unique opportunity for clinical translation of autophagy inhibition. Accordingly, we demonstrate that ULK1 inhibition, by genetic and pharmacological means, suppresses treatment-induced autophagy, overcomes adaptive drug-resistance, and synergizes with chemotherapy and emerging anti-leukemia agents like venetoclax (ABT-199). The study next aims at exploring …


Aibp Regulates Trpv1 Activation In Chemotherapy-Induced Peripheral Neuropathy By Controlling Lipid Raft Dynamics And Proximity To Tlr4 In Dorsal Root Ganglion Neurons, Juliana M Navia-Pelaez, Julia Borges Paes Lemes, Leonardo Gonzalez, Lauriane Delay, Luciano Dos Santos Aggum Capettini, Jenny W Lu, Gilson Gonçalves Dos Santos, Ann M Gregus, Patrick M Dougherty, Tony L Yaksh, Yury I Miller Jun 2023

Aibp Regulates Trpv1 Activation In Chemotherapy-Induced Peripheral Neuropathy By Controlling Lipid Raft Dynamics And Proximity To Tlr4 In Dorsal Root Ganglion Neurons, Juliana M Navia-Pelaez, Julia Borges Paes Lemes, Leonardo Gonzalez, Lauriane Delay, Luciano Dos Santos Aggum Capettini, Jenny W Lu, Gilson Gonçalves Dos Santos, Ann M Gregus, Patrick M Dougherty, Tony L Yaksh, Yury I Miller

Faculty, Staff and Student Publications

Nociceptive afferent signaling evoked by inflammation and nerve injury is mediated by the opening of ligand-gated and voltage-gated receptors or channels localized to cholesterol-rich lipid raft membrane domains. Dorsal root ganglion (DRG) nociceptors express high levels of toll-like receptor 4 (TLR4), which also localize to lipid rafts. Genetic deletion or pharmacologic blocking of TLR4 diminishes pain associated with chemotherapy-induced peripheral neuropathy (CIPN). In DRGs of mice with paclitaxel-induced CIPN, we analyzed DRG neuronal lipid rafts, expression of TLR4, activation of transient receptor potential cation channel subfamily V member 1 (TRPV1), and TLR4-TRPV1 interaction. Using proximity ligation assay, flow cytometry, and …


X-Linked Variations In Shroom4 Are Implicated In Congenital Anomalies Of The Urinary Tract And The Anorectal, Cardiovascular And Central Nervous Systems, Caroline M. Kolvenbach, Tim Felger, Luca Schierbaum, Isabelle Thiffault, T Pastinen, Maria Szczepańska, Marcin Zaniew, Piotr Adamczyk, Allan Bayat, Öznur Yilmaz, Tobias T. Lindenberg, Holger Thiele, Friedhelm Hildebrandt, Katrin Hinderhofer, Ute Moog, Alina C Hilger, Bonnie Sullivan, Lauren E. Bartik, Piotr Gnyś, Phillip Grote, Benjamin Odermatt, Heiko M. Reutter, Gabriel C. Dworschak Jun 2023

X-Linked Variations In Shroom4 Are Implicated In Congenital Anomalies Of The Urinary Tract And The Anorectal, Cardiovascular And Central Nervous Systems, Caroline M. Kolvenbach, Tim Felger, Luca Schierbaum, Isabelle Thiffault, T Pastinen, Maria Szczepańska, Marcin Zaniew, Piotr Adamczyk, Allan Bayat, Öznur Yilmaz, Tobias T. Lindenberg, Holger Thiele, Friedhelm Hildebrandt, Katrin Hinderhofer, Ute Moog, Alina C Hilger, Bonnie Sullivan, Lauren E. Bartik, Piotr Gnyś, Phillip Grote, Benjamin Odermatt, Heiko M. Reutter, Gabriel C. Dworschak

Manuscripts, Articles, Book Chapters and Other Papers

Background: SHROOM4 is thought to play an important role in cytoskeletal modification and development of the early nervous system. Previously, single-nucleotide variants (SNVs) or copy number variations (CNVs) in SHROOM4 have been associated with the neurodevelopmental disorder Stocco dos Santos syndrome, but not with congenital anomalies of the urinary tract and the visceral or the cardiovascular system.

Methods: Here, exome sequencing and CNV analyses besides expression studies in zebrafish and mouse and knockdown (KD) experiments using a splice blocking morpholino in zebrafish were performed to study the role of SHROOM4 during embryonic development.

Results: In this study, we identified putative …


Targeting Fatty Acid Reprogramming Suppresses Carm1-Expressing Ovarian Cancer, Simona Lombardi, Aaron R Goldman, Hsin-Yao Tang, Andrew V Kossenkov, Heng Liu, Wei Zhou, Meenhard Herlyn, Jianhuang Lin, Rugang Zhang Jun 2023

Targeting Fatty Acid Reprogramming Suppresses Carm1-Expressing Ovarian Cancer, Simona Lombardi, Aaron R Goldman, Hsin-Yao Tang, Andrew V Kossenkov, Heng Liu, Wei Zhou, Meenhard Herlyn, Jianhuang Lin, Rugang Zhang

Faculty, Staff and Student Publications

The arginine methyltransferase CARM1 exhibits high expression levels in several human cancers, with the trend also observed in ovarian cancer. However, therapeutic approaches targeting tumors that overexpress CARM1 have not been explored. Cancer cells exploit metabolic reprogramming such as fatty acids for their survival. Here we report that CARM1 promotes monounsaturated fatty acid synthesis and fatty acid reprogramming represents a metabolic vulnerability for CARM1-expressing ovarian cancer. CARM1 promotes the expression of genes encoding rate-limiting enzymes of de novo fatty acid metabolism such as acetyl-CoA carboxylase 1 (ACC1) and fatty acid synthase (FASN). In addition, CARM1 upregulates stearoyl-CoA desaturase 1 (SCD1) …


Concomitant Targeting Of Flt3 And Btk Overcomes Flt3 Inhibitor Resistance In Acute Myeloid Leukemia Through The Inhibition Of Autophagy, Weiguo Zhang, Guopan Yu, Hongying Zhang, Mahesh Basyal, Charlie Ly, Bin Yuan, Vivian Ruvolo, Sujan Piya, Seemana Bhattacharya, Qi Zhang, Gautam Borthakur, Venkata Battula, Marina Konopleva, William G Rice, Michael Andreeff Jun 2023

Concomitant Targeting Of Flt3 And Btk Overcomes Flt3 Inhibitor Resistance In Acute Myeloid Leukemia Through The Inhibition Of Autophagy, Weiguo Zhang, Guopan Yu, Hongying Zhang, Mahesh Basyal, Charlie Ly, Bin Yuan, Vivian Ruvolo, Sujan Piya, Seemana Bhattacharya, Qi Zhang, Gautam Borthakur, Venkata Battula, Marina Konopleva, William G Rice, Michael Andreeff

Faculty, Staff and Student Publications

Strategies to overcome resistance to FMS-like tyrosine kinase 3 (FLT3)-targeted therapy in acute myeloid leukemia (AML) are urgently needed. We identified autophagy as one of the resistance mechanisms, induced by hypoxia and the bone marrow microenvironment via activation of Bruton tyrosine kinase (BTK). Suppressing autophagy/BTK sensitized FLT3- mutated AML to FLT3 inhibitor-induced apoptosis. Furthermore, co-targeting FLT3/BTK/aurora kinases with a novel multikinase inhibitor CG-806 (luxeptinib) induced profound apoptosis in FLT3-mutated AML by co-suppressing FLT3/BTK, antagonizing autophagy, and causing leukemia cell death in FLT3-wildtype AML by aurora kinase-mediated G2/M arrest and polyploidy, in addition to FLT3 inhibition. Thus, CG-806 exerted profound anti-leukemia …


Targeting Unc51-Like Autophagy Activating Kinase 1 (Ulk1) Overcomes Adaptive Drug Resistance In Acute Myelogenous Leukemia, Seemana Bhattacharya, Sujan Piya, Huaxian Ma, Priyanka Sharma, Qi Zhang, Natalia Baran, Vivian R Ruvolo, Teresa Mcqueen, R Eric Davis, Rasoul Pourebrahim, Marina Konopleva, Hagop Kantarjian, Nicholas D P Cosford, Michael Andreeff, Gautam Borthakur Jun 2023

Targeting Unc51-Like Autophagy Activating Kinase 1 (Ulk1) Overcomes Adaptive Drug Resistance In Acute Myelogenous Leukemia, Seemana Bhattacharya, Sujan Piya, Huaxian Ma, Priyanka Sharma, Qi Zhang, Natalia Baran, Vivian R Ruvolo, Teresa Mcqueen, R Eric Davis, Rasoul Pourebrahim, Marina Konopleva, Hagop Kantarjian, Nicholas D P Cosford, Michael Andreeff, Gautam Borthakur

Faculty, Staff and Student Publications

UNLABELLED: Despite effective new therapies, adaptive resistance remains the main obstacle in acute myelogenous leukemia (AML) therapy. Autophagy induction is a key mechanism for adaptive resistance. Leukemic blasts at diagnosis express higher levels of the apical autophagy kinase ULK1 compared with normal hematopoietic cells. Exposure to chemotherapy and targeted agents upregulate ULK1, hence we hypothesize that developing ULK1 inhibitors may present the unique opportunity for clinical translation of autophagy inhibition. Accordingly, we demonstrate that ULK1 inhibition, by genetic and pharmacologic means, suppresses treatment-induced autophagy, overcomes adaptive drug-resistance, and synergizes with chemotherapy and emerging antileukemia agents like venetoclax (ABT-199). The study …


Hes1 Marks Peri-Condensation Mesenchymal Cells That Generate Both Chondrocytes And Perichondrial Cells In Early Bone Development, Yuki Matsushita, Hiroaki Manabe, Takahiro Ohyama, Shogo Nakamura, Mizuki Nagata, Wanida Ono, Noriaki Ono Jun 2023

Hes1 Marks Peri-Condensation Mesenchymal Cells That Generate Both Chondrocytes And Perichondrial Cells In Early Bone Development, Yuki Matsushita, Hiroaki Manabe, Takahiro Ohyama, Shogo Nakamura, Mizuki Nagata, Wanida Ono, Noriaki Ono

Faculty, Staff and Student Publications

Bone development starts with condensations of undifferentiated mesenchymal cells that set a framework for future bones within the primordium. In the endochondral pathway, mesenchymal cells inside the condensation differentiate into chondrocytes and perichondrial cells in a SOX9-dependent mechanism. However, the identity of mesenchymal cells outside the condensation and how they participate in developing bones remain undefined. Here we show that mesenchymal cells surrounding the condensation contribute to both cartilage and perichondrium, robustly generating chondrocytes, osteoblasts, and marrow stromal cells in developing bones. Single-cell RNA-seq analysis of Prrx1-cre-marked limb bud mesenchymal cells at E11.5 reveals that Notch effector Hes1 is …


A Role For Protein Arginine Methyltransferase 7 In Repetitive And Mild Traumatic Brain Injury, Christina H Acosta, Garrett A Clemons, Cristiane T Citadin, William C Carr, Mariana Sayuri Berto Udo, Vesna Tesic, Henry W Sanicola, Anne H Freelin, Jamie B Toms, J Dedrick Jordan, Bharat Guthikonda, Celeste Yin-Chieh Wu, Reggie Hui-Chao Lee, Hung Wen Lin Jun 2023

A Role For Protein Arginine Methyltransferase 7 In Repetitive And Mild Traumatic Brain Injury, Christina H Acosta, Garrett A Clemons, Cristiane T Citadin, William C Carr, Mariana Sayuri Berto Udo, Vesna Tesic, Henry W Sanicola, Anne H Freelin, Jamie B Toms, J Dedrick Jordan, Bharat Guthikonda, Celeste Yin-Chieh Wu, Reggie Hui-Chao Lee, Hung Wen Lin

Faculty, Staff and Student Publications

Mild traumatic brain injury affects the largest proportion of individuals in the United States and world-wide. Pre-clinical studies of repetitive and mild traumatic brain injury (rmTBI) have been limited in their ability to recapitulate human pathology (i.e. diffuse rotational injury). We used the closed-head impact model of engineered rotation acceleration (CHIMERA) to simulate rotational injury observed in patients and to study the pathological outcomes post-rmTBI using C57BL/6J mice. Enhanced cytokine production was observed in both the cortex and hippocampus to suggest neuroinflammation. Furthermore, microglia were assessed via enhanced iba1 protein levels and morphological changes using immunofluorescence. In addition, LC/MS analyses …


Aibp Regulates Trpv1 Activation In Chemotherapy-Induced Peripheral Neuropathy By Controlling Lipid Raft Dynamics And Proximity To Tlr4 In Dorsal Root Ganglion Neurons, Juliana M Navia-Pelaez, Julia Borges Paes Lemes, Leonardo Gonzalez, Lauriane Delay, Luciano Dos Santos Aggum Capettini, Jenny W Lu, Gilson Gonçalves Dos Santos, Ann M Gregus, Patrick M Dougherty, Tony L Yaksh, Yury I Miller Jun 2023

Aibp Regulates Trpv1 Activation In Chemotherapy-Induced Peripheral Neuropathy By Controlling Lipid Raft Dynamics And Proximity To Tlr4 In Dorsal Root Ganglion Neurons, Juliana M Navia-Pelaez, Julia Borges Paes Lemes, Leonardo Gonzalez, Lauriane Delay, Luciano Dos Santos Aggum Capettini, Jenny W Lu, Gilson Gonçalves Dos Santos, Ann M Gregus, Patrick M Dougherty, Tony L Yaksh, Yury I Miller

Faculty, Staff and Student Publications

Nociceptive afferent signaling evoked by inflammation and nerve injury is mediated by the opening of ligand-gated and voltage-gated receptors or channels localized to cholesterol-rich lipid raft membrane domains. Dorsal root ganglion (DRG) nociceptors express high levels of toll-like receptor 4 (TLR4), which also localize to lipid rafts. Genetic deletion or pharmacologic blocking of TLR4 diminishes pain associated with chemotherapy-induced peripheral neuropathy (CIPN). In DRGs of mice with paclitaxel-induced CIPN, we analyzed DRG neuronal lipid rafts, expression of TLR4, activation of transient receptor potential cation channel subfamily V member 1 (TRPV1), and TLR4-TRPV1 interaction. Using proximity ligation assay, flow cytometry, and …


Adjuvant Therapy With Oncolytic Adenovirus Delta-24-Rgdox After Intratumoral Adoptive T-Cell Therapy Promotes Antigen Spread To Sustain Systemic Antitumor Immunity, Hong Jiang, Dong Ho Shin, Yanhua Yi, Xuejun Fan, Joy Gumin, Jiasen He, Andrew G Gillard, Frederick F Lang, Candelaria Gomez-Manzano, Juan Fueyo Jun 2023

Adjuvant Therapy With Oncolytic Adenovirus Delta-24-Rgdox After Intratumoral Adoptive T-Cell Therapy Promotes Antigen Spread To Sustain Systemic Antitumor Immunity, Hong Jiang, Dong Ho Shin, Yanhua Yi, Xuejun Fan, Joy Gumin, Jiasen He, Andrew G Gillard, Frederick F Lang, Candelaria Gomez-Manzano, Juan Fueyo

Faculty, Staff and Student Publications

Cancer cell heterogeneity and immunosuppressive tumor microenvironment (TME) pose a challenge in treating solid tumors with adoptive cell therapies targeting limited tumor-associated antigens (TAA), such as chimeric antigen receptor T-cell therapy. We hypothesize that oncolytic adenovirus Delta-24-RGDOX activates the TME and promote antigen spread to potentiate the abscopal effect of adoptive TAA-targeting T cells in localized intratumoral treatment. Herein, we used C57BL/6 mouse models with disseminated tumors derived from B16 melanoma cell lines to assess therapeutic effects and antitumor immunity. gp100-specific pmel-1 or ovalbumin (OVA)-specific OT-I T cells were injected into the first subcutaneous tumor, followed by three injections of …