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Nitric Oxide Is Required For Lung Alveolarization Revealed By Deficiency Of Argininosuccinate Lyase, Zixue Jin, Ming-Ming Jiang, Brendan Lee Dec 2023

Nitric Oxide Is Required For Lung Alveolarization Revealed By Deficiency Of Argininosuccinate Lyase, Zixue Jin, Ming-Ming Jiang, Brendan Lee

Faculty, Staff and Students Publications

Inhaled nitric oxide (NO) therapy has been reported to improve lung growth in premature newborns. However, the underlying mechanisms by which NO regulates lung development remain largely unclear. NO is enzymatically produced by three isoforms of nitric oxide synthase (NOS) enzymes. NOS knockout mice are useful tools to investigate NO function in the lung. Each single NOS knockout mouse does not show obvious lung alveolar phenotype, likely due to compensatory mechanisms. While mice lacking all three NOS isoforms display impaired lung alveolarization, implicating NO plays a pivotal role in lung alveolarization. Argininosuccinate lyase (ASL) is the only mammalian enzyme capable …


Oncogenic Kras Drives Lipofibrogenesis To Promote Angiogenesis And Colon Cancer Progression, Wen-Hao Hsu, Kyle A Labella, Yiyun Lin, Ping Xu, Rumi Lee, Cheng-En Hsieh, Lei Yang, Ashley Zhou, Jonathan M Blecher, Chang-Jiun Wu, Kangyu Lin, Xiaoying Shang, Shan Jiang, Denise J Spring, Yan Xia, Peiwen Chen, John Paul Shen, Scott Kopetz, Ronald A Depinho Dec 2023

Oncogenic Kras Drives Lipofibrogenesis To Promote Angiogenesis And Colon Cancer Progression, Wen-Hao Hsu, Kyle A Labella, Yiyun Lin, Ping Xu, Rumi Lee, Cheng-En Hsieh, Lei Yang, Ashley Zhou, Jonathan M Blecher, Chang-Jiun Wu, Kangyu Lin, Xiaoying Shang, Shan Jiang, Denise J Spring, Yan Xia, Peiwen Chen, John Paul Shen, Scott Kopetz, Ronald A Depinho

Faculty, Staff and Student Publications

Oncogenic KRAS (KRAS*) contributes to many cancer hallmarks. In colorectal cancer, KRAS* suppresses antitumor immunity to promote tumor invasion and metastasis. Here, we uncovered that KRAS* transforms the phenotype of carcinoma-associated fibroblasts (CAF) into lipid-laden CAFs, promoting angiogenesis and tumor progression. Mechanistically, KRAS* activates the transcription factor CP2 (TFCP2) that upregulates the expression of the proadipogenic factors BMP4 and WNT5B, triggering the transformation of CAFs into lipid-rich CAFs. These lipid-rich CAFs, in turn, produce VEGFA to spur angiogenesis. In KRAS*-driven colorectal cancer mouse models, genetic or pharmacologic neutralization of TFCP2 reduced lipid-rich CAFs, lessened tumor angiogenesis, and improved overall survival. …


Sirtuin 6 Activation Rescues The Age-Related Decline In Dna Damage Repair In Primary Human Chondrocytes, Michaela E. Copp, Jacqueline Shine, Hannon L. Brown, Kirti R. Nimmala, Oliver B. Hansen, Susan Chubinskaya, John A. Collins, Richard F. Loeser, Brian O. Diekman Dec 2023

Sirtuin 6 Activation Rescues The Age-Related Decline In Dna Damage Repair In Primary Human Chondrocytes, Michaela E. Copp, Jacqueline Shine, Hannon L. Brown, Kirti R. Nimmala, Oliver B. Hansen, Susan Chubinskaya, John A. Collins, Richard F. Loeser, Brian O. Diekman

Department of Orthopaedic Surgery Faculty Papers

While advanced age is widely recognized as the greatest risk factor for osteoarthritis (OA), the biological mechanisms behind this connection remain unclear. Previous work has demonstrated that chondrocytes from older cadaveric donors have elevated levels of DNA damage as compared to chondrocytes from younger donors. The purpose of this study was to determine whether a decline in DNA repair efficiency is one explanation for the accumulation of DNA damage with age, and to quantify the improvement in repair with activation of Sirtuin 6 (SIRT6). After acute damage with irradiation, DNA repair was shown to be more efficient in chondrocytes from …


Therapeutic Effect Of Echinococcus Granulosus Cyst Fluid On Bacterial Sepsis In Mice, Shuying Wang, Donghui Jiang, Feifei Huang, Yayun Qian, Meitao Qi, Huihui Li, Xiaoli Wang, Zhi Wang, Kaigui Wang, Yin Wang, Pengfei Du, Bin Zhan, Rui Zhou, Liang Chu, Xiaodi Yang Dec 2023

Therapeutic Effect Of Echinococcus Granulosus Cyst Fluid On Bacterial Sepsis In Mice, Shuying Wang, Donghui Jiang, Feifei Huang, Yayun Qian, Meitao Qi, Huihui Li, Xiaoli Wang, Zhi Wang, Kaigui Wang, Yin Wang, Pengfei Du, Bin Zhan, Rui Zhou, Liang Chu, Xiaodi Yang

Faculty, Staff and Students Publications

BACKGROUND: The primary pathophysiological process of sepsis is to stimulate a massive release of inflammatory mediators to trigger systemic inflammatory response syndrome (SIRS), the major cause of multi-organ dysfunction and death. Like other helminths, Echinococcus granulosus induces host immunomodulation. We sought to determine whether E. granulosus cyst fluid (EgCF) displays a therapeutic effect on sepsis-induced inflammation and tissue damage in a mouse model.

METHODS: The anti-inflammatory effects of EgCF were determined by in vitro culture with bone marrow-derived macrophages (BMDMs) and in vivo treatment of BALB/C mice with cecal ligation and puncture (CLP)-induced sepsis. The macrophage phenotypes were determined by …


Proteogenomic Analysis Reveals Cytoplasmic Sequestration Of Runx1 By The Acute Myeloid Leukemia-Initiating Cbfb::Myh11 Oncofusion Protein, Ryan B. Day, Julia A. Hickman, Ziheng Xu, Casey Ds Katerndahl, Francesca Ferraro, Sai Makund Ramakrishnan, Petra Erdmann-Gilmore, Robert W. Sprung, Yiling Mi, R. Reid Townsend, Christopher A. Miller, Timothy J. Ley Dec 2023

Proteogenomic Analysis Reveals Cytoplasmic Sequestration Of Runx1 By The Acute Myeloid Leukemia-Initiating Cbfb::Myh11 Oncofusion Protein, Ryan B. Day, Julia A. Hickman, Ziheng Xu, Casey Ds Katerndahl, Francesca Ferraro, Sai Makund Ramakrishnan, Petra Erdmann-Gilmore, Robert W. Sprung, Yiling Mi, R. Reid Townsend, Christopher A. Miller, Timothy J. Ley

2020-Current year OA Pubs

Several canonical translocations produce oncofusion genes that can initiate acute myeloid leukemia (AML). Although each translocation is associated with unique features, the mechanisms responsible remain unclear. While proteins interacting with each oncofusion are known to be relevant for how they act, these interactions have not yet been systematically defined. To address this issue in an unbiased fashion, we fused a promiscuous biotin ligase (TurboID) in-frame with 3 favorable-risk AML oncofusion cDNAs (PML::RARA, RUNX1::RUNX1T1, and CBFB::MYH11) and identified their interacting proteins in primary murine hematopoietic cells. The PML::RARA- and RUNX1::RUNX1T1-TurboID fusion proteins labeled common and unique nuclear repressor complexes, implying their …


Docking For Ep4r Antagonists Active Against Inflammatory Pain, Stefan Gahbauer, Tao Che, Et Al. Dec 2023

Docking For Ep4r Antagonists Active Against Inflammatory Pain, Stefan Gahbauer, Tao Che, Et Al.

2020-Current year OA Pubs

The lipid prostaglandin E


Acss2 Gene Variants Determine Kidney Disease Risk By Controlling De Novo Lipogenesis In Kidney Tubules, Dhanunjay Mukhi, Lingzhi Li, Hongbo Liu, Tomohito Doke, Lakshmi P Kolligundla, Eunji Ha, Konstantin Kloetzer, Amin Abedini, Sarmistha Mukherjee, Junnan Wu, Poonam Dhillon, Hailong Hu, Dongyin Guan, Katsuhiko Funai, Kahealani Uehara, Paul M Titchenell, Joseph A Baur, Kathryn E Wellen, Katalin Susztak Dec 2023

Acss2 Gene Variants Determine Kidney Disease Risk By Controlling De Novo Lipogenesis In Kidney Tubules, Dhanunjay Mukhi, Lingzhi Li, Hongbo Liu, Tomohito Doke, Lakshmi P Kolligundla, Eunji Ha, Konstantin Kloetzer, Amin Abedini, Sarmistha Mukherjee, Junnan Wu, Poonam Dhillon, Hailong Hu, Dongyin Guan, Katsuhiko Funai, Kahealani Uehara, Paul M Titchenell, Joseph A Baur, Kathryn E Wellen, Katalin Susztak

Faculty, Staff and Students Publications

Worldwide, over 800 million people are affected by kidney disease, yet its pathogenesis remains elusive, hindering the development of novel therapeutics. In this study, we used kidney-specific expression of quantitative traits and single-nucleus open chromatin analysis to show that genetic variants linked to kidney dysfunction on chromosome 20 target the acyl-CoA synthetase short-chain family 2 (ACSS2). By generating ACSS2-KO mice, we demonstrated their protection from kidney fibrosis in multiple disease models. Our analysis of primary tubular cells revealed that ACSS2 regulated de novo lipogenesis (DNL), causing NADPH depletion and increasing ROS levels, ultimately leading to NLRP3-dependent pyroptosis. Additionally, we discovered …


Antiseizure Effects Of Peganum Harmala L. And Lavandula Angustifolia, Zahra Rahimian, Seyedhassan Sadrian, Mina Shahisavandi, Hadi Aligholi, Mohammad M. Zarshenas, Alireza Abyar, Zahra Zeraatpisheh, Ali A. Asadi-Pooya Dec 2023

Antiseizure Effects Of Peganum Harmala L. And Lavandula Angustifolia, Zahra Rahimian, Seyedhassan Sadrian, Mina Shahisavandi, Hadi Aligholi, Mohammad M. Zarshenas, Alireza Abyar, Zahra Zeraatpisheh, Ali A. Asadi-Pooya

Department of Neurology Faculty Papers

Peganum harmala L. and Lavandula angustifolia are two traditional herbs with probable antiseizure effects. This study evaluated the effects of these two herbal extracts on pentylenetetrazol- (PTZ-) induced seizures in mice. We prepared hydroalcoholic extracts using P. harmala seeds and the aerial parts of L. angustifolia and then randomly divided 190 mice into 19 groups. Normal saline (10 mg/kg), diazepam (2 mg/kg), P. harmala (2.5, 5, 10, 15, 30, 45, and 60 mg/kg), and L. angustifolia (200, 400, 600, and 800 mg/kg) were intraperitoneally (IP) administrated 30 min before an IP administration of PTZ (90 mg/kg). Animals were observed for …


Dna Methylation-Mediated Rbpjk Suppression Protects Against Fracture Nonunion Caused By Systemic Inflammation, Ding Xiao, Liang Fang, Zhongting Liu, Yonghua He, Jun Ying, Haocheng Qin, Aiwu Lu, Meng Shi, Tiandao Li, Bo Zhang, Jianjun Guan, Cuicui Wang, Yousef Abu-Amer, Jie Shen Dec 2023

Dna Methylation-Mediated Rbpjk Suppression Protects Against Fracture Nonunion Caused By Systemic Inflammation, Ding Xiao, Liang Fang, Zhongting Liu, Yonghua He, Jun Ying, Haocheng Qin, Aiwu Lu, Meng Shi, Tiandao Li, Bo Zhang, Jianjun Guan, Cuicui Wang, Yousef Abu-Amer, Jie Shen

2020-Current year OA Pubs

Challenging skeletal repairs are frequently seen in patients experiencing systemic inflammation. To tackle the complexity and heterogeneity of the skeletal repair process, we performed single-cell RNA sequencing and revealed that progenitor cells were one of the major lineages responsive to elevated inflammation and this response adversely affected progenitor differentiation by upregulation of Rbpjk in fracture nonunion. We then validated the interplay between inflammation (via constitutive activation of Ikk2, Ikk2ca) and Rbpjk specifically in progenitors by using genetic animal models. Focusing on epigenetic regulation, we identified Rbpjk as a direct target of Dnmt3b. Mechanistically, inflammation decreased Dnmt3b expression in progenitor cells, …


Hnf4Α Isoforms Regulate The Circadian Balance Between Carbohydrate And Lipid Metabolism In The Liver, Jonathan R Deans, Poonamjot Deol, Nina Titova, Sarah H Radi, Linh M Vuong, Jane R Evans, Songqin Pan, Johannes Fahrmann, Jun Yang, Bruce D Hammock, Oliver Fiehn, Baharan Fekry, Kristin Eckel-Mahan, Frances M Sladek Dec 2023

Hnf4Α Isoforms Regulate The Circadian Balance Between Carbohydrate And Lipid Metabolism In The Liver, Jonathan R Deans, Poonamjot Deol, Nina Titova, Sarah H Radi, Linh M Vuong, Jane R Evans, Songqin Pan, Johannes Fahrmann, Jun Yang, Bruce D Hammock, Oliver Fiehn, Baharan Fekry, Kristin Eckel-Mahan, Frances M Sladek

Faculty, Staff and Student Publications

Hepatocyte Nuclear Factor 4α (HNF4α), a master regulator of hepatocyte differentiation, is regulated by two promoters (P1 and P2) which drive the expression of different isoforms. P1-HNF4α is the major isoform in the adult liver while P2-HNF4α is thought to be expressed only in fetal liver and liver cancer. Here, we show that P2-HNF4α is indeed expressed in the normal adult liver at Zeitgeber time (ZT)9 and ZT21. Using exon swap mice that express only P2-HNF4α we show that this isoform orchestrates a distinct transcriptome and metabolome via unique chromatin and protein-protein interactions, including with different clock proteins at different …


Plasma Exchange Reduces Aβ Levels In Plasma And Decreases Amyloid Plaques In The Brain In A Mouse Model Of Alzheimer's Disease, Santiago Ramirez, Suelyn Koerich, Natalia Astudillo, Nicole De Gregorio, Rabab Al-Lahham, Tyler Allison, Natalia Pessoa Rocha, Fei Wang, Claudio Soto Dec 2023

Plasma Exchange Reduces Aβ Levels In Plasma And Decreases Amyloid Plaques In The Brain In A Mouse Model Of Alzheimer's Disease, Santiago Ramirez, Suelyn Koerich, Natalia Astudillo, Nicole De Gregorio, Rabab Al-Lahham, Tyler Allison, Natalia Pessoa Rocha, Fei Wang, Claudio Soto

Faculty, Staff and Student Publications

Alzheimer's disease (AD) is the most common type of dementia, characterized by the abnormal accumulation of protein aggregates in the brain, known as neurofibrillary tangles and amyloid-β (Aβ) plaques. It is believed that an imbalance between cerebral and peripheral pools of Aβ may play a relevant role in the deposition of Aβ aggregates. Therefore, in this study, we aimed to evaluate the effect of the removal of Aβ from blood plasma on the accumulation of amyloid plaques in the brain. We performed monthly plasma exchange with a 5% mouse albumin solution in the APP/PS1 mouse model from 3 to 7 …


Transient Receptor Potential Vanilloid 4-Dependent Microglial Function In Myelin Injury And Repair, Jameson P Holloman, Sophia H Dimas, Angela S Archambault, Fabia Filipello, Lixia Du, Jing Feng, Yonghui Zhao, Bryan Bollman, Laura Piccio, Andrew J Steelman, Hongzhen Hu, Gregory F Wu Dec 2023

Transient Receptor Potential Vanilloid 4-Dependent Microglial Function In Myelin Injury And Repair, Jameson P Holloman, Sophia H Dimas, Angela S Archambault, Fabia Filipello, Lixia Du, Jing Feng, Yonghui Zhao, Bryan Bollman, Laura Piccio, Andrew J Steelman, Hongzhen Hu, Gregory F Wu

2020-Current year OA Pubs

Microglia are found pathologically at all stages of multiple sclerosis (MS) lesion development and are hypothesized to contribute to both inflammatory injury and neuroprotection in the MS brain. Transient receptor potential vanilloid 4 (TRPV4) channels are widely expressed, play an important role as environmental sensors, and are involved in calcium homeostasis for a variety of cells. TRPV4 modulates myeloid cell phagocytosis in the periphery and microglial motility in the central nervous system. We hypothesized that TRPV4 deletion would alter microglia phagocytosis in vitro and lessen disease activity and demyelination in experimental autoimmune encephalitis (EAE) and cuprizone-induced demyelination. We found that …


Maternal Diet During Early Gestation Influences Postnatal Taste Activity-Dependent Pruning By Microglia, Chengsan Sun, Shuqiu Zheng, Justin S A Perry, Geoffrey T Norris, Mei Cheng, Fanzhen Kong, Rolf Skyberg, Jianhua Cang, Alev Erisir, Jonathan Kipnis, David L Hill Dec 2023

Maternal Diet During Early Gestation Influences Postnatal Taste Activity-Dependent Pruning By Microglia, Chengsan Sun, Shuqiu Zheng, Justin S A Perry, Geoffrey T Norris, Mei Cheng, Fanzhen Kong, Rolf Skyberg, Jianhua Cang, Alev Erisir, Jonathan Kipnis, David L Hill

2020-Current year OA Pubs

A key process in central sensory circuit development involves activity-dependent pruning of exuberant terminals. Here, we studied gustatory terminal field maturation in the postnatal mouse nucleus of the solitary tract (NST) during normal development and in mice where their mothers were fed a low NaCl diet for a limited period soon after conception. Pruning of terminal fields of gustatory nerves in controls involved the complement system and is likely driven by NaCl-elicited taste activity. In contrast, offspring of mothers with an early dietary manipulation failed to prune gustatory terminal fields even though peripheral taste activity developed normally. The ability to …


Neutralizing Antibodies Against Ebv Gp42 Show Potent In Vivo Protection And Define Novel Epitopes, Qian Wu, Ling Zhong, Dongmei Wei, Wanlin Zhang, Junping Hong, Yinfeng Kang, Kaiyun Chen, Yang Huang, Qingbing Zheng, Miao Xu, Mu-Sheng Zeng, Yi-Xin Zeng, Ningshao Xia, Qinjian Zhao, Claude Krummenacher, Yixin Chen, Xiao Zhang Dec 2023

Neutralizing Antibodies Against Ebv Gp42 Show Potent In Vivo Protection And Define Novel Epitopes, Qian Wu, Ling Zhong, Dongmei Wei, Wanlin Zhang, Junping Hong, Yinfeng Kang, Kaiyun Chen, Yang Huang, Qingbing Zheng, Miao Xu, Mu-Sheng Zeng, Yi-Xin Zeng, Ningshao Xia, Qinjian Zhao, Claude Krummenacher, Yixin Chen, Xiao Zhang

College of Science & Mathematics Departmental Research

Epstein-Barr virus (EBV) is the first reported human oncogenic virus and infects more than 95% of the human population worldwide. EBV latent infection in B lymphocytes is essential for viral persistence. Glycoprotein gp42 is an indispensable member of the triggering complex for EBV entry into B cells. The C-type lectin domain (CTLD) of gp42 plays a key role in receptor binding and is the major target of neutralizing antibodies. Here, we isolated two rabbit antibodies, 1A7 and 6G7, targeting gp42 CTLD with potent neutralizing activity against B cell infection. Antibody 6G7 efficiently protects humanized mice from lethal EBV challenge and …


The Alliance Of Genome Resources: Transforming Comparative Genomics., Carol J Bult, Paul W Sternberg Dec 2023

The Alliance Of Genome Resources: Transforming Comparative Genomics., Carol J Bult, Paul W Sternberg

Faculty Research 2023

Comparing genomic and biological characteristics across multiple species is essential to using model systems to investigate the molecular and cellular mechanisms underlying human biology and disease and to translate mechanistic insights from studies in model organisms for clinical applications. Building a scalable knowledge commons platform that supports cross-species comparison of rich, expertly curated knowledge regarding gene function, phenotype, and disease associations available for model organisms and humans is the primary mission of the Alliance of Genome Resources (the Alliance). The Alliance is a consortium of seven model organism knowledgebases (mouse, rat, yeast, nematode, zebrafish, frog, fruit fly) and the Gene …


Iron Promotes Glycolysis To Drive Colon Tumorigenesis., Zhaoli Liu, Luke Villareal, Lavanya Goodla, Hyeoncheol Kim, Daniel M. Falcon, Mohammad Haneef, David R. Martin, Li Zhang, Ho-Joon Lee, Daniel Kremer, Costas A. Lyssiotis, Yatrik M. Shah, Henry C. Lin, Hui-Kuan Lin, Xiang Xue Dec 2023

Iron Promotes Glycolysis To Drive Colon Tumorigenesis., Zhaoli Liu, Luke Villareal, Lavanya Goodla, Hyeoncheol Kim, Daniel M. Falcon, Mohammad Haneef, David R. Martin, Li Zhang, Ho-Joon Lee, Daniel Kremer, Costas A. Lyssiotis, Yatrik M. Shah, Henry C. Lin, Hui-Kuan Lin, Xiang Xue

Pathology Research and Scholarship

Colorectal cancer (CRC) is the third most common cancer and is also the third leading cause of cancer-related death in the USA. Understanding the mechanisms of growth and progression of CRC is essential to improve treatment. Macronutrients such as glucose are energy source for a cell. Many tumor cells exhibit increased aerobic glycolysis. Increased tissue micronutrient iron levels in both mice and humans are also associated with increased colon tumorigenesis. However, if iron drives colon carcinogenesis via affecting glucose metabolism is still not clear. Here we found the intracellular glucose levels in tumor colonoids were significantly increased after iron treatment.


Brain-Wide Correspondence Of Neuronal Epigenomics And Distant Projections, Jingtian Zhou, Zhuzhu Zhang, May Wu, Hanqing Liu, Yan Pang, Anna Bartlett, Zihao Peng, Wubin Ding, Angeline Rivkin, Will N Lagos, Elora Williams, Cheng-Ta Lee, Paula Assakura Miyazaki, Andrew Aldridge, Qiurui Zeng, J L Angelo Salinda, Naomi Claffey, Michelle Liem, Conor Fitzpatrick, Lara Boggeman, Zizhen Yao, Kimberly A Smith, Bosiljka Tasic, Jordan Altshul, Mia A Kenworthy, Cynthia Valadon, Joseph R Nery, Rosa G Castanon, Neelakshi S Patne, Minh Vu, Mohammad Rashid, Matthew Jacobs, Tony Ito, Julia Osteen, Nora Emerson, Jasper Lee, Silvia Cho, Jon Rink, Hsiang-Hsuan Huang, António Pinto-Duartec, Bertha Dominguez, Jared B Smith, Carolyn O'Connor, Hongkui Zeng, Shengbo Chen, Kuo-Fen Lee, Eran A Mukamel, Xin Jin, M Margarita Behrens, Joseph R Ecker, Edward M Callaway Dec 2023

Brain-Wide Correspondence Of Neuronal Epigenomics And Distant Projections, Jingtian Zhou, Zhuzhu Zhang, May Wu, Hanqing Liu, Yan Pang, Anna Bartlett, Zihao Peng, Wubin Ding, Angeline Rivkin, Will N Lagos, Elora Williams, Cheng-Ta Lee, Paula Assakura Miyazaki, Andrew Aldridge, Qiurui Zeng, J L Angelo Salinda, Naomi Claffey, Michelle Liem, Conor Fitzpatrick, Lara Boggeman, Zizhen Yao, Kimberly A Smith, Bosiljka Tasic, Jordan Altshul, Mia A Kenworthy, Cynthia Valadon, Joseph R Nery, Rosa G Castanon, Neelakshi S Patne, Minh Vu, Mohammad Rashid, Matthew Jacobs, Tony Ito, Julia Osteen, Nora Emerson, Jasper Lee, Silvia Cho, Jon Rink, Hsiang-Hsuan Huang, António Pinto-Duartec, Bertha Dominguez, Jared B Smith, Carolyn O'Connor, Hongkui Zeng, Shengbo Chen, Kuo-Fen Lee, Eran A Mukamel, Xin Jin, M Margarita Behrens, Joseph R Ecker, Edward M Callaway

Faculty, Staff and Student Publications

Single-cell analyses parse the brain’s billions of neurons into thousands of ‘cell-type’ clusters residing in different brain structures1. Many cell types mediate their functions through targeted long-distance projections allowing interactions between specific cell types. Here we used epi-retro-seq2 to link single-cell epigenomes and cell types to long-distance projections for 33,034 neurons dissected from 32 different regions projecting to 24 different targets (225 source-to-target combinations) across the whole mouse brain. We highlight uses of these data for interrogating principles relating projection types to transcriptomics and epigenomics, and for addressing hypotheses about cell types and connections related to genetics. …


A Transcriptomic Taxonomy Of Mouse Brain-Wide Spinal Projecting Neurons, Carla C Winter, Anne Jacobi, Junfeng Su, Leeyup Chung, Cindy T J Van Velthoven, Zizhen Yao, Changkyu Lee, Zicong Zhang, Shuguang Yu, Kun Gao, Geraldine Duque Salazar, Evgenii Kegeles, Yu Zhang, Makenzie C Tomihiro, Yiming Zhang, Zhiyun Yang, Junjie Zhu, Jing Tang, Xuan Song, Ryan J Donahue, Qing Wang, Delissa Mcmillen, Michael Kunst, Ning Wang, Kimberly A Smith, Gabriel E Romero, Michelle M Frank, Alexandra Krol, Riki Kawaguchi, Daniel H Geschwind, Guoping Feng, Lisa V Goodrich, Yuanyuan Liu, Bosiljka Tasic, Hongkui Zeng, Zhigang He Dec 2023

A Transcriptomic Taxonomy Of Mouse Brain-Wide Spinal Projecting Neurons, Carla C Winter, Anne Jacobi, Junfeng Su, Leeyup Chung, Cindy T J Van Velthoven, Zizhen Yao, Changkyu Lee, Zicong Zhang, Shuguang Yu, Kun Gao, Geraldine Duque Salazar, Evgenii Kegeles, Yu Zhang, Makenzie C Tomihiro, Yiming Zhang, Zhiyun Yang, Junjie Zhu, Jing Tang, Xuan Song, Ryan J Donahue, Qing Wang, Delissa Mcmillen, Michael Kunst, Ning Wang, Kimberly A Smith, Gabriel E Romero, Michelle M Frank, Alexandra Krol, Riki Kawaguchi, Daniel H Geschwind, Guoping Feng, Lisa V Goodrich, Yuanyuan Liu, Bosiljka Tasic, Hongkui Zeng, Zhigang He

Faculty, Staff and Student Publications

The brain controls nearly all bodily functions via spinal projecting neurons (SPNs) that carry command signals from the brain to the spinal cord. However, a comprehensive molecular characterization of brain-wide SPNs is still lacking. Here we transcriptionally profiled a total of 65,002 SPNs, identified 76 region-specific SPN types, and mapped these types into a companion atlas of the whole mouse brain1. This taxonomy reveals a three-component organization of SPNs: (1) molecularly homogeneous excitatory SPNs from the cortex, red nucleus and cerebellum with somatotopic spinal terminations suitable for point-to-point communication; (2) heterogeneous populations in the reticular formation with broad …


Single-Cell Analysis Of Chromatin Accessibility In The Adult Mouse Brain, Songpeng Zu, Yang Eric Li, Kangli Wang, Ethan J Armand, Sainath Mamde, Maria Luisa Amaral, Yuelai Wang, Andre Chu, Yang Xie, Michael Miller, Jie Xu, Zhaoning Wang, Kai Zhang, Bojing Jia, Xiaomeng Hou, Lin Lin, Qian Yang, Seoyeon Lee, Bin Li, Samantha Kuan, Hanqing Liu, Jingtian Zhou, Antonio Pinto-Duarte, Jacinta Lucero, Julia Osteen, Michael Nunn, Kimberly A Smith, Bosiljka Tasic, Zizhen Yao, Hongkui Zeng, Zihan Wang, Jingbo Shang, M Margarita Behrens, Joseph R Ecker, Allen Wang, Sebastian Preissl, Bing Ren Dec 2023

Single-Cell Analysis Of Chromatin Accessibility In The Adult Mouse Brain, Songpeng Zu, Yang Eric Li, Kangli Wang, Ethan J Armand, Sainath Mamde, Maria Luisa Amaral, Yuelai Wang, Andre Chu, Yang Xie, Michael Miller, Jie Xu, Zhaoning Wang, Kai Zhang, Bojing Jia, Xiaomeng Hou, Lin Lin, Qian Yang, Seoyeon Lee, Bin Li, Samantha Kuan, Hanqing Liu, Jingtian Zhou, Antonio Pinto-Duarte, Jacinta Lucero, Julia Osteen, Michael Nunn, Kimberly A Smith, Bosiljka Tasic, Zizhen Yao, Hongkui Zeng, Zihan Wang, Jingbo Shang, M Margarita Behrens, Joseph R Ecker, Allen Wang, Sebastian Preissl, Bing Ren

Faculty, Staff and Student Publications

Recent advances in single-cell technologies have led to the discovery of thousands of brain cell types; however, our understanding of the gene regulatory programs in these cell types is far from complete1-4. Here we report a comprehensive atlas of candidate cis-regulatory DNA elements (cCREs) in the adult mouse brain, generated by analysing chromatin accessibility in 2.3 million individual brain cells from 117 anatomical dissections. The atlas includes approximately 1 million cCREs and their chromatin accessibility across 1,482 distinct brain cell populations, adding over 446,000 cCREs to the most recent such annotation in the mouse genome. The mouse brain cCREs are …


Molecularly Defined And Spatially Resolved Cell Atlas Of The Whole Mouse Brain, Meng Zhang, Xingjie Pan, Won Jung, Aaron R Halpern, Stephen W Eichhorn, Zhiyun Lei, Limor Cohen, Kimberly A Smith, Bosiljka Tasic, Zizhen Yao, Hongkui Zeng, Xiaowei Zhuang Dec 2023

Molecularly Defined And Spatially Resolved Cell Atlas Of The Whole Mouse Brain, Meng Zhang, Xingjie Pan, Won Jung, Aaron R Halpern, Stephen W Eichhorn, Zhiyun Lei, Limor Cohen, Kimberly A Smith, Bosiljka Tasic, Zizhen Yao, Hongkui Zeng, Xiaowei Zhuang

Faculty, Staff and Student Publications

In mammalian brains, millions to billions of cells form complex interaction networks to enable a wide range of functions. The enormous diversity and intricate organization of cells have impeded our understanding of the molecular and cellular basis of brain function. Recent advances in spatially resolved single-cell transcriptomics have enabled systematic mapping of the spatial organization of molecularly defined cell types in complex tissues1-3, including several brain regions (for example, refs. 1-11). However, a comprehensive cell atlas of the whole brain is still missing. Here we imaged a panel of more than 1,100 genes in approximately 10 million cells across the …


Single-Cell Dna Methylome And 3d Multi-Omic Atlas Of The Adult Mouse Brain, Hanqing Liu, Qiurui Zeng, Jingtian Zhou, Anna Bartlett, Bang-An Wang, Peter Berube, Wei Tian, Mia Kenworthy, Jordan Altshul, Joseph R Nery, Huaming Chen, Rosa G Castanon, Songpeng Zu, Yang Eric Li, Jacinta Lucero, Julia K Osteen, Antonio Pinto-Duarte, Jasper Lee, Jon Rink, Silvia Cho, Nora Emerson, Michael Nunn, Carolyn O'Connor, Zhanghao Wu, Ion Stoica, Zizhen Yao, Kimberly A Smith, Bosiljka Tasic, Chongyuan Luo, Jesse R Dixon, Hongkui Zeng, Bing Ren, M Margarita Behrens, Joseph R Ecker Dec 2023

Single-Cell Dna Methylome And 3d Multi-Omic Atlas Of The Adult Mouse Brain, Hanqing Liu, Qiurui Zeng, Jingtian Zhou, Anna Bartlett, Bang-An Wang, Peter Berube, Wei Tian, Mia Kenworthy, Jordan Altshul, Joseph R Nery, Huaming Chen, Rosa G Castanon, Songpeng Zu, Yang Eric Li, Jacinta Lucero, Julia K Osteen, Antonio Pinto-Duarte, Jasper Lee, Jon Rink, Silvia Cho, Nora Emerson, Michael Nunn, Carolyn O'Connor, Zhanghao Wu, Ion Stoica, Zizhen Yao, Kimberly A Smith, Bosiljka Tasic, Chongyuan Luo, Jesse R Dixon, Hongkui Zeng, Bing Ren, M Margarita Behrens, Joseph R Ecker

Faculty, Staff and Student Publications

Cytosine DNA methylation is essential in brain development and is implicated in various neurological disorders. Understanding DNA methylation diversity across the entire brain in a spatial context is fundamental for a complete molecular atlas of brain cell types and their gene regulatory landscapes. Here we used single-nucleus methylome sequencing (snmC-seq3) and multi-omic sequencing (snm3C-seq)1 technologies to generate 301,626 methylomes and 176,003 chromatin conformation–methylome joint profiles from 117 dissected regions throughout the adult mouse brain. Using iterative clustering and integrating with companion whole-brain transcriptome and chromatin accessibility datasets, we constructed a methylation-based cell taxonomy with 4,673 cell groups and 274 …


Aging Differentially Affects Axonal Autophagosome Formation And Maturation, Heather Tsong, Erika Lf Holzbaur, Andrea Kh Stavoe Dec 2023

Aging Differentially Affects Axonal Autophagosome Formation And Maturation, Heather Tsong, Erika Lf Holzbaur, Andrea Kh Stavoe

Faculty, Staff and Student Publications

Misregulation of neuronal macroautophagy/autophagy has been implicated in age-related neurodegenerative diseases. We compared autophagosome formation and maturation in primary murine neurons during development and through aging to elucidate how aging affects neuronal autophagy. We observed an age-related decrease in the rate of autophagosome formation leading to a significant decrease in the density of autophagosomes along the axon. Next, we identified a surprising increase in the maturation of autophagic vesicles in neurons from aged mice. While we did not detect notable changes in endolysosomal content in the distal axon during early aging, we did observe a significant loss of acidified vesicles …


Ezh2 Cooperates With Brd4-Nut To Drive Nut Carcinoma Growth By Silencing Key Tumor Suppressor Genes, Yeying Huang, R Taylor Durall, Nhi M Luong, Hans J Hertzler, Julianna Huang, Prafulla C Gokhale, Brittaney A Leeper, Nicole S Persky, David E Root, Praju V Anekal, Paula D L M Montero Llopis, Clement N David, Jeffery L Kutok, Alejandra Raimondi, Karan Saluja, Jia Luo, Cynthia A Zahnow, Biniam Adane, Kimberly Stegmaier, Catherine E Hawkins, Christopher Ponne, Quan Le, Geoffrey I Shapiro, Madeleine E Lemieux, Kyle P Eagen, Christopher A French Dec 2023

Ezh2 Cooperates With Brd4-Nut To Drive Nut Carcinoma Growth By Silencing Key Tumor Suppressor Genes, Yeying Huang, R Taylor Durall, Nhi M Luong, Hans J Hertzler, Julianna Huang, Prafulla C Gokhale, Brittaney A Leeper, Nicole S Persky, David E Root, Praju V Anekal, Paula D L M Montero Llopis, Clement N David, Jeffery L Kutok, Alejandra Raimondi, Karan Saluja, Jia Luo, Cynthia A Zahnow, Biniam Adane, Kimberly Stegmaier, Catherine E Hawkins, Christopher Ponne, Quan Le, Geoffrey I Shapiro, Madeleine E Lemieux, Kyle P Eagen, Christopher A French

Faculty, Staff and Student Publications

NUT carcinoma (NC) is an aggressive carcinoma driven by the BRD4-NUT fusion oncoprotein, which activates chromatin to promote expression of pro-growth genes. BET bromodomain inhibitors (BETi) are a promising treatment for NC that can impede BRD4-NUT’s ability to activate genes, but the efficacy of BETi as monotherapy are limited. Here, we demonstrated that EZH2, which silences genes through establishment of repressive chromatin, is a dependency in NC. Inhibition of EZH2 with the clinical compound tazemetostat (taz) potently blocked growth of NC cells. Epigenetic and transcriptomic analysis revealed that taz reversed the EZH2-specific H3K27me3 silencing mark and restored expression of multiple …


An Ace2 Decamer Viral Trap As A Durable Intervention Solution For Current And Future Sars-Cov, Hailong Guo, Bomsoo Cho, Paul R Hinton, Sijia He, Yongjun Yu, Ashwin Kumar Ramesh, Jwala Priyadarsini Sivaccumar, Zhiqiang Ku, Kristen Campo, Sarah Holland, Sameer Sachdeva, Christopher Mensch, Mohamed Dawod, Annalis Whitaker, Philip Eisenhauer, Allison Falcone, Rebekah Honce, Jason W Botten, Stephen F Carroll, Bruce A Keyt, Andrew W Womack, William R Strohl, Kai Xu, Ningyan Zhang, Zhiqiang An, Sha Ha, John W Shiver, Tong-Ming Fu Dec 2023

An Ace2 Decamer Viral Trap As A Durable Intervention Solution For Current And Future Sars-Cov, Hailong Guo, Bomsoo Cho, Paul R Hinton, Sijia He, Yongjun Yu, Ashwin Kumar Ramesh, Jwala Priyadarsini Sivaccumar, Zhiqiang Ku, Kristen Campo, Sarah Holland, Sameer Sachdeva, Christopher Mensch, Mohamed Dawod, Annalis Whitaker, Philip Eisenhauer, Allison Falcone, Rebekah Honce, Jason W Botten, Stephen F Carroll, Bruce A Keyt, Andrew W Womack, William R Strohl, Kai Xu, Ningyan Zhang, Zhiqiang An, Sha Ha, John W Shiver, Tong-Ming Fu

Faculty, Staff and Student Publications

The capacity of SARS-CoV-2 to evolve poses challenges to conventional prevention and treatment options such as vaccination and monoclonal antibodies, as they rely on viral receptor binding domain (RBD) sequences from previous strains. Additionally, animal CoVs, especially those of the SARS family, are now appreciated as a constant pandemic threat. We present here a new antiviral approach featuring inhalation delivery of a recombinant viral trap composed of ten copies of angiotensin-converting enzyme 2 (ACE2) fused to the IgM Fc. This ACE2 decamer viral trap is designed to inhibit SARS-CoV-2 entry function, regardless of viral RBD sequence variations as shown by …


Clinical Exome Sequencing Efficacy And Phenotypic Expansions Involving Anomalous Pulmonary Venous Return, Emily A Huth, Xiaonan Zhao, Nichole Owen, Pamela N Luna, Ida Vogel, Inger L H Dorf, Shelagh Joss, Jill Clayton-Smith, Michael J Parker, Jacoba J Louw, Marc Gewillig, Jeroen Breckpot, Alison Kraus, Erina Sasaki, Usha Kini, Trent Burgess, Tiong Y Tan, Ruth Armstrong, Katherine Neas, Giovanni B Ferrero, Alfredo Brusco, Wihelmina S Kerstjens-Frederikse, Julia Rankin, Lindsey R Helvaty, Benjamin J Landis, Gabrielle C Geddes, Kim L Mcbride, Stephanie M Ware, Chad A Shaw, Seema R Lalani, Jill A Rosenfeld, Daryl A Scott Dec 2023

Clinical Exome Sequencing Efficacy And Phenotypic Expansions Involving Anomalous Pulmonary Venous Return, Emily A Huth, Xiaonan Zhao, Nichole Owen, Pamela N Luna, Ida Vogel, Inger L H Dorf, Shelagh Joss, Jill Clayton-Smith, Michael J Parker, Jacoba J Louw, Marc Gewillig, Jeroen Breckpot, Alison Kraus, Erina Sasaki, Usha Kini, Trent Burgess, Tiong Y Tan, Ruth Armstrong, Katherine Neas, Giovanni B Ferrero, Alfredo Brusco, Wihelmina S Kerstjens-Frederikse, Julia Rankin, Lindsey R Helvaty, Benjamin J Landis, Gabrielle C Geddes, Kim L Mcbride, Stephanie M Ware, Chad A Shaw, Seema R Lalani, Jill A Rosenfeld, Daryl A Scott

Faculty, Staff and Students Publications

Anomalous pulmonary venous return (APVR) frequently occurs with other congenital heart defects (CHDs) or extra-cardiac anomalies. While some genetic causes have been identified, the optimal approach to genetic testing in individuals with APVR remains uncertain, and the etiology of most cases of APVR is unclear. Here, we analyzed molecular data from 49 individuals to determine the diagnostic yield of clinical exome sequencing (ES) for non-isolated APVR. A definitive or probable diagnosis was made for 8 of those individuals yielding a diagnostic efficacy rate of 16.3%. We then analyzed molecular data from 62 individuals with APVR accrued from three databases to …


Cbx4 Promotes Antitumor Immunity By Suppressing Pdcd1 Expression In T Cells, Liwei Ren, Ziyin Li, Yu Zhou, Jun Zhang, Ziheng Zhao, Zhaofei Wu, Ye Zhao, Yurong Ju, Xuewen Pang, Xiuyuan Sun, Wei Wang, Yu Zhang Dec 2023

Cbx4 Promotes Antitumor Immunity By Suppressing Pdcd1 Expression In T Cells, Liwei Ren, Ziyin Li, Yu Zhou, Jun Zhang, Ziheng Zhao, Zhaofei Wu, Ye Zhao, Yurong Ju, Xuewen Pang, Xiuyuan Sun, Wei Wang, Yu Zhang

Faculty, Staff and Student Publications

E3 SUMO-protein ligase CBX4 (CBX4), a key component of polycomb-repressive complexes 1 (PRC1), has been reported to regulate a variety of genes implicated in tumor growth, metastasis, and angiogenesis. However, its role in T-cell-mediated antitumor immunity remains elusive. To shed light on this issue, we generated mice with T-cell-specific deletion of Cbx4. Tumor growth was increased in the knockout mice. Additionally, their tumor-infiltrating lymphocytes exhibited impaired tumor necrosis factor-alpha (TNF-α) and interferon-gamma (IFN-γ) production, with an elevated programmed cell death protein 1 (PD-1) level. In fact, dysregulated Pdcd1 expression was observed in all major subsets of peripheral T cells from …


Enhanced Cd19 Activity In B Cells Contributes To Immunodeficiency In Mice Deficient In The Icf Syndrome Gene Zbtb24, Zhengzhou Ying, Swanand Hardikar, Joshua B Plummer, Tewfik Hamidi, Bin Liu, Yueping Chen, Jianjun Shen, Yunxiang Mu, Kevin M Mcbride, Taiping Chen Dec 2023

Enhanced Cd19 Activity In B Cells Contributes To Immunodeficiency In Mice Deficient In The Icf Syndrome Gene Zbtb24, Zhengzhou Ying, Swanand Hardikar, Joshua B Plummer, Tewfik Hamidi, Bin Liu, Yueping Chen, Jianjun Shen, Yunxiang Mu, Kevin M Mcbride, Taiping Chen

Faculty, Staff and Student Publications

Immunodeficiency, centromeric instability, and facial anomalies (ICF) syndrome is a rare autosomal recessive disorder characterized by DNA hypomethylation and antibody deficiency. It is caused by mutations in DNMT3B, ZBTB24, CDCA7, or HELLS. While progress has been made in elucidating the roles of these genes in regulating DNA methylation, little is known about the pathogenesis of the life-threatening hypogammaglobulinemia phenotype. Here, we show that mice deficient in Zbtb24 in the hematopoietic lineage recapitulate the major clinical features of patients with ICF syndrome. Specifically, Vav-Cre-mediated ablation of Zbtb24 does not affect lymphocyte development but results in reduced plasma cells and low levels …


Effect Of Epithelial-Specific Myd88 Signaling Pathway On Airway Inflammatory Response To Organic Dust Exposure, Amber N Johnson, John Dickinson, Amy Nelson, Rohit Gaurav, Katrina Kudrna, Scott E Evans, Katherine Janike, Todd A Wyatt, Jill A Poole Dec 2023

Effect Of Epithelial-Specific Myd88 Signaling Pathway On Airway Inflammatory Response To Organic Dust Exposure, Amber N Johnson, John Dickinson, Amy Nelson, Rohit Gaurav, Katrina Kudrna, Scott E Evans, Katherine Janike, Todd A Wyatt, Jill A Poole

Faculty, Staff and Student Publications

The Toll-like receptor (TLR) adaptor protein MyD88 is integral to airway inflammatory response to microbial-enriched organic dust extract (ODE) exposures. ODE-induced airway neutrophil influx and release of pro-inflammatory cytokines was essentially abrogated in global MyD88-deficient mice, yet these mice demonstrate an increase in airway epithelial cell mucin expression. To further elucidate the role of MyD88-dependent responses specific to lung airway epithelial cells in response to ODE in vivo, the surfactant protein C protein (SPC) Cre+ embryologic expressing airway epithelial cells floxed for MyD88 to disrupt MyD88 signaling were utilized. The inducible club cell secretory protein (CCSP) Cre+, MyD88 floxed, …


Early-Life Stress Perturbs The Epigenetics Of Cd36 Concurrent With Adult Onset Of Nafld In Mice., Qi Fu, Jenna M. Frick, Maura F. O'Neil, Olivia C. Eller, E Matthew Morris, John P. Thyfault, Julie A. Christianson, Robert H. Lane Dec 2023

Early-Life Stress Perturbs The Epigenetics Of Cd36 Concurrent With Adult Onset Of Nafld In Mice., Qi Fu, Jenna M. Frick, Maura F. O'Neil, Olivia C. Eller, E Matthew Morris, John P. Thyfault, Julie A. Christianson, Robert H. Lane

Manuscripts, Articles, Book Chapters and Other Papers

BACKGROUND: Non-alcoholic fatty liver disease (NAFLD) is one of the most common liver diseases in the U.S. and worldwide. The roles of early postnatal life stress (EPLS) and the fatty acid translocase (CD36) on the pathogenesis of adult-onset NAFLD remain unknown. We hypothesized that EPLS, in the form of neonatal maternal separation (NMS), would predispose mice towards developing adult NAFLD, increase hepatic CD36 expression, and differentially methylate Cd36 promoter concurrently.

METHODS: NMS was performed on mice from postnatal day 1 to 21 and a high-fat/high-sucrose (HFS) diet was started at 4 weeks of age to generate four experimental groups: Naive-control …


Estradiol Mediates Colonic Epithelial Protection In Aged Mice After Stroke And Is Associated With Shifts In The Gut Microbiome, Juneyoung Lee, Pedram Peesh, Victoria Quaicoe, Chunfeng Tan, Anik Banerjee, Patrick Mooz, Bhanu P Ganesh, Joseph Petrosino, Robert M Bryan, Louise D Mccullough, Venugopal Reddy Venna Dec 2023

Estradiol Mediates Colonic Epithelial Protection In Aged Mice After Stroke And Is Associated With Shifts In The Gut Microbiome, Juneyoung Lee, Pedram Peesh, Victoria Quaicoe, Chunfeng Tan, Anik Banerjee, Patrick Mooz, Bhanu P Ganesh, Joseph Petrosino, Robert M Bryan, Louise D Mccullough, Venugopal Reddy Venna

Faculty, Staff and Student Publications

The gut is a major source of bacteria and antigens that contribute to neuroinflammation after brain injury. Colonic epithelial cells (ECs) are responsible for secreting major cellular components of the innate defense system, including antimicrobial proteins (AMP) and mucins. These cells serve as a critical regulator of gut barrier function and maintain host-microbe homeostasis. In this study, we determined post-stroke host defense responses at the colonic epithelial surface in mice. We then tested if the enhancement of these epithelial protective mechanisms is beneficial in young and aged mice after stroke. AMPs were significantly increased in the colonic ECs of young …