Open Access. Powered by Scholars. Published by Universities.®

Medical Cell Biology Commons™

Open Access. Powered by Scholars. Published by Universities.®

Medical Specialties

Institution
Keyword
Publication Year
Publication
Publication Type
File Type

Articles 481 - 510 of 904

Full-Text Articles in Medical Cell Biology

Deciphering The Role Of Qpctl In Glioma Progression And Cancer Immunotherapy, Yu'e Liu, Shaojuan Lu, Yihong Sun, Fei Wang, Shibo Yu, Xi Chen, Lei-Lei Wu, Hui Yang, Yufeng Shi, Kaijun Zhao Jan 2023

Deciphering The Role Of Qpctl In Glioma Progression And Cancer Immunotherapy, Yu'e Liu, Shaojuan Lu, Yihong Sun, Fei Wang, Shibo Yu, Xi Chen, Lei-Lei Wu, Hui Yang, Yufeng Shi, Kaijun Zhao

Faculty, Staff and Students Publications

BACKGROUND: Glioma is the most lethal and most aggressive brain cancer, and currently there is no effective treatment. Cancer immunotherapy is an advanced therapy by manipulating immune cells to attack cancer cells and it has been studied a lot in glioma treatment. Targeting the immune checkpoint CD47 or blocking the CD47-SIRPα axis can effectively eliminate glioma cancer cells but also brings side effects such as anemia. Glutaminyl-peptide cyclotransferase-like protein (QPCTL) catalyzes the pyroglutamylation of CD47 and is crucial for the binding between CD47 and SIRPα. Further study found that loss of intracellular QPCTL limits chemokine function and reshapes myeloid infiltration …


Size Distributions Of Intracellular Condensates Reflect Competition Between Coalescence And Nucleation, Daniel S W Lee, Chang-Hyun Choi, David W Sanders, Lien Beckers, Joshua A Riback, Clifford P Brangwynne, Ned S Wingreen Jan 2023

Size Distributions Of Intracellular Condensates Reflect Competition Between Coalescence And Nucleation, Daniel S W Lee, Chang-Hyun Choi, David W Sanders, Lien Beckers, Joshua A Riback, Clifford P Brangwynne, Ned S Wingreen

Faculty, Staff and Students Publications

Phase separation of biomolecules into condensates has emerged as a mechanism for intracellular organization and affects many intracellular processes, including reaction pathways through the clustering of enzymes and pathway intermediates. Precise and rapid spatiotemporal control of reactions by condensates requires tuning of their sizes. However, the physical processes that govern the distribution of condensate sizes remain unclear. Here we show that both native and synthetic condensates display an exponential size distribution, which is captured by Monte Carlo simulations of fast nucleation followed by coalescence. In contrast, pathological aggregates exhibit a power-law size distribution. These distinct behaviours reflect the relative importance …


The Fgfr1 Signaling Pathway Upregulates The Oncogenic Transcription Factor Foxq1 To Promote Breast Cancer Cell Growth, Yan Lin, Fengkang Lin, Zhuoran Zhang, Lijia Peng, Wenli Yang, Mao Yang, Bo Luo, Ting Wu, Dabing Li, Xuesen Li, Bing Ran, Songyot Anuchapreeda, Rujirek Chaiwongsa, Pinyaphat Khamphikham, Suwit Duangmano, Jianming Xu, Tao He, Sakorn Pornprasert Jan 2023

The Fgfr1 Signaling Pathway Upregulates The Oncogenic Transcription Factor Foxq1 To Promote Breast Cancer Cell Growth, Yan Lin, Fengkang Lin, Zhuoran Zhang, Lijia Peng, Wenli Yang, Mao Yang, Bo Luo, Ting Wu, Dabing Li, Xuesen Li, Bing Ran, Songyot Anuchapreeda, Rujirek Chaiwongsa, Pinyaphat Khamphikham, Suwit Duangmano, Jianming Xu, Tao He, Sakorn Pornprasert

Faculty, Staff and Students Publications

FGFR1 is a receptor tyrosine kinase deregulated in certain breast cancers (BCs) with a poor prognosis. Although FGFR1-activated phosphorylation cascades have been mapped, the key genes regulated by FGFR1 in BC are largely unclear. FOXQ1 is an oncogenic transcription factor. Although we found that activation of FGFR1 robustly upregulated FOXQ1 mRNA, how FGFR1 regulates FOXQ1 gene expression and whether FOXQ1 is essential for FGFR1-stimulated cell proliferation are unknown. Herein, we confirmed that activation of FGFR1 robustly upregulated FOXQ1 mRNA and protein in BC cells. Knockdown of FOXQ1 blocked the FGFR1 signaling-stimulated BC cell proliferation, colony formation, and xenograft tumor growth. …


Gene-Environment Interactions Underlying The Etiology Of Neural Tube Defects, Carlo Donato Caiaffa, Cristiane Sá Roriz Fonteles, Lei Yunping, Richard H Finnell Jan 2023

Gene-Environment Interactions Underlying The Etiology Of Neural Tube Defects, Carlo Donato Caiaffa, Cristiane Sá Roriz Fonteles, Lei Yunping, Richard H Finnell

Faculty, Staff and Students Publications

Neural tube defects (NTDs) consist of severe structural malformations of the brain and spinal cord and are the second most common structural birth defect in humans, accounting for approximately 2700 affected pregnancies every year in the United States. These numbers are highly significant, considering that birth defects remain a leading cause of infant mortality in the United States, affecting approximately 120,000 babies born annually. Survivors of these congenital malformations face long-term disability and lifelong challenges imposed by severe physical burdens compromising the afflicted individual's overall quality of life. Clearly, birth defects, and especially NTDs remain a global public health challenge, …


Toward More Rigorous And Informative Nutritional Epidemiology: The Rational Space Between Dismissal And Defense Of The Status Quo, Andrew W Brown, Stella Aslibekyan, Dennis Bier, Rafael Ferreira Da Silva, Adam Hoover, David M Klurfeld, Eric Loken, Evan Mayo-Wilson, Nir Menachemi, Greg Pavela, Patrick D Quinn, Dale Schoeller, Carmen Tekwe, Danny Valdez, Colby J Vorland, Leah D Whigham, David B Allison Jan 2023

Toward More Rigorous And Informative Nutritional Epidemiology: The Rational Space Between Dismissal And Defense Of The Status Quo, Andrew W Brown, Stella Aslibekyan, Dennis Bier, Rafael Ferreira Da Silva, Adam Hoover, David M Klurfeld, Eric Loken, Evan Mayo-Wilson, Nir Menachemi, Greg Pavela, Patrick D Quinn, Dale Schoeller, Carmen Tekwe, Danny Valdez, Colby J Vorland, Leah D Whigham, David B Allison

Faculty, Staff and Students Publications

To date, nutritional epidemiology has relied heavily on relatively weak methods including simple observational designs and substandard measurements. Despite low internal validity and other sources of bias, claims of causality are made commonly in this literature. Nutritional epidemiology investigations can be improved through greater scientific rigor and adherence to scientific reporting commensurate with research methods used. Some commentators advocate jettisoning nutritional epidemiology entirely, perhaps believing improvements are impossible. Still others support only normative refinements. But neither abolition nor minor tweaks are appropriate. Nutritional epidemiology, in its present state, offers utility, yet also needs marked, reformational renovation. Changing the status quo …


Assessment Of The Cytolytic Potential Of A Multivirus-Targeted T Cell Therapy Using A Vital Dye-Based, Flow Cytometric Assay, Kiriakos Koukoulias, Penelope G Papayanni, Julia Jones, Manik Kuvalekar, Ayumi Watanabe, Yovana Velazquez, Sarah Gilmore, Anastasia Papadopoulou, Ann M Leen, Spyridoula Vasileiou Jan 2023

Assessment Of The Cytolytic Potential Of A Multivirus-Targeted T Cell Therapy Using A Vital Dye-Based, Flow Cytometric Assay, Kiriakos Koukoulias, Penelope G Papayanni, Julia Jones, Manik Kuvalekar, Ayumi Watanabe, Yovana Velazquez, Sarah Gilmore, Anastasia Papadopoulou, Ann M Leen, Spyridoula Vasileiou

Faculty, Staff and Students Publications

Reliable and sensitive characterization assays are important determinants of the successful clinical translation of immunotherapies. For the assessment of cytolytic potential, the chromium 51 (51Cr) release assay has long been considered the gold standard for testing effector cells. However, attaining the approvals to access and use radioactive isotopes is becoming increasingly complex, while technical aspects [i.e. sensitivity, short (4-6 hours) assay duration] may lead to suboptimal performance. This has been the case with our ex vivo expanded, polyclonal (CD4+ and CD8+) multivirus-specific T cell (multiVST) lines, which recognize 5 difficult-to-treat viruses [Adenovirus (AdV), BK virus (BKV), cytomegalovirus (CMV), Epstein Barr …


Editorial: Health Effects And Pathophysiological Mechanisms Of One-Carbon Metabolism Nutrients Intake Throughout The Life Cycle, Jufen Liu, Yunping Lei, Lei Wang, Chao Guo Jan 2023

Editorial: Health Effects And Pathophysiological Mechanisms Of One-Carbon Metabolism Nutrients Intake Throughout The Life Cycle, Jufen Liu, Yunping Lei, Lei Wang, Chao Guo

Faculty, Staff and Students Publications

No abstract provided.


Quantitative Measurement Of Protac Intracellular Accumulation, Xin Yu, Jin Wang Jan 2023

Quantitative Measurement Of Protac Intracellular Accumulation, Xin Yu, Jin Wang

Faculty, Staff and Students Publications

In recent years, Proteolysis Targeting Chimera (PROTAC) technology has emerged as one of the most promising approaches to remove disease-associated proteins by utilizing cells' own destruction machinery. To achieve successful degradation of a protein of interest (POI), the heterobifunctional PROTAC molecules must penetrate into the cells first, followed by target engagement and formation of the POI-PROTAC-E3 ligase complex. Based on this understanding, the assessment of cell permeability and in cell target engagement are of great importance to evaluate the efficacy of PROTAC candidates. PROTAC molecules can be classified as non-covalent and covalent, and covalent PROTACs can be further divided into …


Investigation Of The Dyrk1a Regulation By Lzts2-Sipa1l1 Complex, Rebecca Gunnin, Austin Witt B.S., Larisa Litovchick M.D.,Ph.D. Jan 2023

Investigation Of The Dyrk1a Regulation By Lzts2-Sipa1l1 Complex, Rebecca Gunnin, Austin Witt B.S., Larisa Litovchick M.D.,Ph.D.

Undergraduate Research Posters

A region on chromosome 21, the Down Syndrome critical region (DSCR), is associated with major defects found in Down Syndrome, such as craniofacial malformations. DYRK1A is a gene found on chromosome 21 within the DSCR that encodes an enzyme, dual specificity tyrosine-phosphorylation-regulated kinase 1A. DYRK1A is known to phosphorylate many substrate proteins and is thought to be involved in tumor suppression, neurological development, cell cycle regulation, and aging. Recently, the Litovchick lab and others reported that DYRK1A also plays a role in the double-strand break repair of DNA, which could lead to mutations and tumorigenesis, if deregulated.

The Litovchick lab …


Loss Of Ubiquitin-Specific Peptidase 18 Destabilizes 14-3-3Ζ Protein And Represses Lung Cancer Metastasis, Zibo Chen, Lin Zheng, Yulong Chen, Xiuxia Liu, Masanori Kawakami, Lisa Maria Mustachio, Jason Roszik, Katherine V Ferry-Galow, Ralph E Parchment, Xin Liu, Thorkell Andresson, Gerard Duncan, Jonathan M Kurie, Jaime Rodriguez-Canales, Xi Liu, Ethan Dmitrovsky Dec 2022

Loss Of Ubiquitin-Specific Peptidase 18 Destabilizes 14-3-3Ζ Protein And Represses Lung Cancer Metastasis, Zibo Chen, Lin Zheng, Yulong Chen, Xiuxia Liu, Masanori Kawakami, Lisa Maria Mustachio, Jason Roszik, Katherine V Ferry-Galow, Ralph E Parchment, Xin Liu, Thorkell Andresson, Gerard Duncan, Jonathan M Kurie, Jaime Rodriguez-Canales, Xi Liu, Ethan Dmitrovsky

Faculty, Staff and Student Publications

Cancer metastasis is a major cause of cancer-related mortality. Strategies to reduce metastases are needed especially in lung cancer, the most common cause of cancer mortality. We previously reported increased ubiquitin-specific peptidase 18 (USP18) expression in lung and other cancers. Engineered reduction of USP18 expression repressed lung cancer growth and promoted apoptosis. This deubiquitinase (DUB) stabilized targeted proteins by removing the complex interferon-stimulated gene 15 (ISG15). This study explores if the loss of USP18 reduced lung cancer metastasis. USP18 knock-down in lung cancer cells was independently achieved using small hairpin RNAs (shRNAs) and small interfering RNAs (siRNAs). USP18 knock-down reduced …


Kdm6b Variants May Contribute To The Pathophysiology Of Human Cerebral Folate Deficiency, Xiao Han, Xuanye Cao, Robert M Cabrera, Paula Andrea Pimienta Ramirez, Cuilian Zhang, Vincent T Ramaekers, Richard H Finnell, Yunping Lei Dec 2022

Kdm6b Variants May Contribute To The Pathophysiology Of Human Cerebral Folate Deficiency, Xiao Han, Xuanye Cao, Robert M Cabrera, Paula Andrea Pimienta Ramirez, Cuilian Zhang, Vincent T Ramaekers, Richard H Finnell, Yunping Lei

Faculty, Staff and Students Publications

(1) Background: The genetic etiology of most patients with cerebral folate deficiency (CFD) remains poorly understood. KDM6B variants were reported to cause neurodevelopmental diseases; however, the association between KDM6B and CFD is unknown; (2) Methods: Exome sequencing (ES) was performed on 48 isolated CFD cases. The effect of KDM6B variants on KDM6B protein expression, Histone H3 lysine 27 epigenetic modification and FOLR1 expression were examined in vitro. For each patient, serum FOLR1 autoantibodies were measured; (3) Results: Six KDM6B variants were identified in five CFD patients, which accounts for 10% of our CFD cohort cases. Functional experiments indicated that these …


Clinical Significance Of Glycolytic Metabolic Activity In Hepatocellular Carcinoma, Joann Jung, Sowon Park, Yeonwoo Jang, Sung-Hwan Lee, Yun Seong Jeong, Sun Young Yim, Ju-Seog Lee Dec 2022

Clinical Significance Of Glycolytic Metabolic Activity In Hepatocellular Carcinoma, Joann Jung, Sowon Park, Yeonwoo Jang, Sung-Hwan Lee, Yun Seong Jeong, Sun Young Yim, Ju-Seog Lee

Faculty, Staff and Student Publications

High metabolic activity is a hallmark of cancers, including hepatocellular carcinoma (HCC). However, the molecular features of HCC with high metabolic activity contributing to clinical outcomes and the therapeutic implications of these characteristics are poorly understood. We aimed to define the features of HCC with high metabolic activity and uncover its association with response to current therapies. By integrating gene expression data from mouse liver tissues and tumor tissues from HCC patients (n = 1038), we uncovered three metabolically distinct HCC subtypes that differ in clinical outcomes and underlying molecular biology. The high metabolic subtype is characterized by poor …


Anti-Cancer Mechanisms Of Action Of Therapeutic Alternating Electric Fields (Tumor Treating Fields [Ttfields]), Shadi Shams, Chirag B Patel Dec 2022

Anti-Cancer Mechanisms Of Action Of Therapeutic Alternating Electric Fields (Tumor Treating Fields [Ttfields]), Shadi Shams, Chirag B Patel

Faculty, Staff and Student Publications

Despite improved survival outcomes across many cancer types, the prognosis remains grim for certain solid organ cancers including glioblastoma and pancreatic cancer. Invariably in these cancers, the control achieved by time-limited interventions such as traditional surgical resection, radiation therapy, and chemotherapy is short-lived. A new form of anti-cancer therapy called therapeutic alternating electric fields (AEFs) or tumor treating fields (TTFields) has been shown, either by itself or in combination with chemotherapy, to have anti-cancer effects that translate to improved survival outcomes in patients. Although the pre-clinical and clinical data are promising, the mechanisms of TTFields are not fully elucidated. Many …


Spatial Heterogeneity Of Infiltrating T Cells In High-Grade Serous Ovarian Cancer Revealed By Multi-Omics Analysis, Bin Yang, Xiong Li, Wei Zhang, Junpeng Fan, Yong Zhou, Wenting Li, Jingjing Yin, Xiaohang Yang, Ensong Guo, Xi Li, Yu Fu, Si Liu, Dianxing Hu, Xu Qin, Yingyu Dou, Rourou Xiao, Funian Lu, Zizhuo Wang, Tianyu Qin, Wei Wang, Qinghua Zhang, Shuaicheng Li, Ding Ma, Gordon B Mills, Gang Chen, Chaoyang Sun Dec 2022

Spatial Heterogeneity Of Infiltrating T Cells In High-Grade Serous Ovarian Cancer Revealed By Multi-Omics Analysis, Bin Yang, Xiong Li, Wei Zhang, Junpeng Fan, Yong Zhou, Wenting Li, Jingjing Yin, Xiaohang Yang, Ensong Guo, Xi Li, Yu Fu, Si Liu, Dianxing Hu, Xu Qin, Yingyu Dou, Rourou Xiao, Funian Lu, Zizhuo Wang, Tianyu Qin, Wei Wang, Qinghua Zhang, Shuaicheng Li, Ding Ma, Gordon B Mills, Gang Chen, Chaoyang Sun

Faculty, Staff and Student Publications

Tumor-infiltrating lymphocytes (TILs), especially CD8+ TILs, represent a favorable prognostic factor in high-grade serous ovarian cancer (HGSOC) and other tumor lineages. Here, we analyze the spatial heterogeneity of different TIL subtypes in HGSOC. We integrated RNA sequencing, whole-genome sequencing, bulk T cell receptor (TCR) sequencing, as well as single-cell RNA/TCR sequencing to investigate the characteristics and differential composition of TILs across different HGSOC sites. Two immune "cold" patterns in ovarian cancer are identified: (1) ovarian lesions with low infiltration of mainly dysfunctional T cells and immunosuppressive Treg cells and (2) omental lesions infiltrated with non-tumor-specific bystander cells. Exhausted CD8 T …


Structural Insights Into Cardiolipin Replacement By Phosphatidylglycerol In A Cardiolipin-Lacking Yeast Respiratory Supercomplex, Elena G Govorunova, Oleg A Sineshchekov, Leonid S Brown, Ana-Nicoleta Bondar, John L Spudich Dec 2022

Structural Insights Into Cardiolipin Replacement By Phosphatidylglycerol In A Cardiolipin-Lacking Yeast Respiratory Supercomplex, Elena G Govorunova, Oleg A Sineshchekov, Leonid S Brown, Ana-Nicoleta Bondar, John L Spudich

Faculty, Staff and Student Publications

Potassium-selective channelrhodopsins (KCRs) are light-gated K+ channels recently found in the stramenopile protist Hyphochytrium catenoides. When expressed in neurons, KCRs enable high-precision optical inhibition of spiking (optogenetic silencing). KCRs are capable of discriminating K+ from Na+ without the conventional K+ selectivity filter found in classical K+ channels. The genome of H. catenoides also encodes a third paralog that is more permeable for Na+ than for K+. To identify structural motifs responsible for the unusual K+ selectivity of KCRs, we systematically analyzed a series of chimeras and mutants of this protein. We found that mutations of three critical residues in the …


Processing And Cryopreservation Of Human Ureter Tissues For Single-Cell And Spatial Transcriptomics Assays, Emily E Fink, Surbhi Sona, Byron H Lee, Angela H Ting Dec 2022

Processing And Cryopreservation Of Human Ureter Tissues For Single-Cell And Spatial Transcriptomics Assays, Emily E Fink, Surbhi Sona, Byron H Lee, Angela H Ting

Faculty, Staff and Student Publications

Characterizing the cellular heterogeneity of human ureter tissues using single-cell RNA sequencing (scRNA-seq) and spatial transcriptomics provides a detailed atlas of cell types, signaling networks, and potential cell-cell cross talk underlying developmental and regenerative pathways. We describe an optimized protocol for generating, cryopreserving, and thawing single-cell suspensions from ureter tissues isolated post-cystectomy for scRNA-seq. In addition, we describe an optimized protocol for cryopreserving human ureter tissues for 10x Genomics Visium spatial gene expression platform. For complete details on the use and execution of this protocol, please refer to Fink et al. (2022).


Defining Cellular Population Dynamics At Single-Cell Resolution During Prostate Cancer Progression, Alexandre A Germanos, Sonali Arora, Ye Zheng, Erica T Goddard, Ilsa M Coleman, Anson T Ku, Scott Wilkinson, Hanbing Song, Nicholas J Brady, Robert A Amezquita, Michael Zager, Annalysa Long, Yu Chi Yang, Jason H Bielas, Raphael Gottardo, David S Rickman, Franklin W Huang, Cyrus M Ghajar, Peter S Nelson, Adam G Sowalsky, Manu Setty, Andrew C Hsieh Dec 2022

Defining Cellular Population Dynamics At Single-Cell Resolution During Prostate Cancer Progression, Alexandre A Germanos, Sonali Arora, Ye Zheng, Erica T Goddard, Ilsa M Coleman, Anson T Ku, Scott Wilkinson, Hanbing Song, Nicholas J Brady, Robert A Amezquita, Michael Zager, Annalysa Long, Yu Chi Yang, Jason H Bielas, Raphael Gottardo, David S Rickman, Franklin W Huang, Cyrus M Ghajar, Peter S Nelson, Adam G Sowalsky, Manu Setty, Andrew C Hsieh

Faculty, Staff and Student Publications

Advanced prostate malignancies are a leading cause of cancer-related deaths in men, in large part due to our incomplete understanding of cellular drivers of disease progression. We investigate prostate cancer cell dynamics at single-cell resolution from disease onset to the development of androgen independence in an in vivo murine model. We observe an expansion of a castration-resistant intermediate luminal cell type that correlates with treatment resistance and poor prognosis in human patients. Moreover, transformed epithelial cells and associated fibroblasts create a microenvironment conducive to pro-tumorigenic immune infiltration, which is partially androgen responsive. Androgen-independent prostate cancer leads to significant diversification of …


Super-Enhanced Marco Variant Drives Triple-Negative Breast Cancer Progression, Weei-Chin Lin, Fang-Tsyr Lin Dec 2022

Super-Enhanced Marco Variant Drives Triple-Negative Breast Cancer Progression, Weei-Chin Lin, Fang-Tsyr Lin

Faculty, Staff and Students Publications

No abstract provided.


Place Cells Dynamically Refine Grid Cell Activities To Reduce Error Accumulation During Path Integration In A Continuous Attractor Model, Jose A Fernandez-Leon, Ahmet Kerim Uysal, Daoyun Ji Dec 2022

Place Cells Dynamically Refine Grid Cell Activities To Reduce Error Accumulation During Path Integration In A Continuous Attractor Model, Jose A Fernandez-Leon, Ahmet Kerim Uysal, Daoyun Ji

Faculty, Staff and Students Publications

Navigation is one of the most fundamental skills of animals. During spatial navigation, grid cells in the medial entorhinal cortex process speed and direction of the animal to map the environment. Hippocampal place cells, in turn, encode place using sensory signals and reduce the accumulated error of grid cells for path integration. Although both cell types are part of the path integration system, the dynamic relationship between place and grid cells and the error reduction mechanism is yet to be understood. We implemented a realistic model of grid cells based on a continuous attractor model. The grid cell model was …


An Elf4 Hypomorphic Variant Results In Nk Cell Deficiency, Sandra Andrea Salinas, Emily M Mace, Matilde I Conte, Chun Shik Park, Yu Li, Joshua I Rosario-Sepulveda, Sanjana Mahapatra, Emily K Moore, Evelyn R Hernandez, Ivan K Chinn, Abigail E Reed, Barclay J Lee, Alexander Frumovitz, Richard A Gibbs, Jennifer E Posey, Lisa R Forbes Satter, Akaluck Thatayatikom, Eric J Allenspach, Theodore G Wensel, James R Lupski, H Daniel Lacorazza, Jordan S Orange Dec 2022

An Elf4 Hypomorphic Variant Results In Nk Cell Deficiency, Sandra Andrea Salinas, Emily M Mace, Matilde I Conte, Chun Shik Park, Yu Li, Joshua I Rosario-Sepulveda, Sanjana Mahapatra, Emily K Moore, Evelyn R Hernandez, Ivan K Chinn, Abigail E Reed, Barclay J Lee, Alexander Frumovitz, Richard A Gibbs, Jennifer E Posey, Lisa R Forbes Satter, Akaluck Thatayatikom, Eric J Allenspach, Theodore G Wensel, James R Lupski, H Daniel Lacorazza, Jordan S Orange

Faculty, Staff and Students Publications

NK cell deficiencies (NKD) are a type of primary immune deficiency in which the major immunologic abnormality affects NK cell number, maturity, or function. Since NK cells contribute to immune defense against virally infected cells, patients with NKD experience higher susceptibility to chronic, recurrent, and fatal viral infections. An individual with recurrent viral infections and mild hypogammaglobulinemia was identified to have an X-linked damaging variant in the transcription factor gene ELF4. The variant does not decrease expression but disrupts ELF4 protein interactions and DNA binding, reducing transcriptional activation of target genes and selectively impairing ELF4 function. Corroborating previous murine models …


The Rheumatoid Arthritis Drug Auranofin Lowers Leptin Levels And Exerts Antidiabetic Effects In Obese Mice, Aaron R Cox, Peter M Masschelin, Pradip K Saha, Jessica B Felix, Robert Sharp, Zeqin Lian, Yan Xia, Natasha Chernis, David A Bader, Kang Ho Kim, Xin Li, Jun Yoshino, Xin Li, Gang Li, Zheng Sun, Huaizhu Wu, Cristian Coarfa, David D Moore, Samuel Klein, Kai Sun, Sean M Hartig Dec 2022

The Rheumatoid Arthritis Drug Auranofin Lowers Leptin Levels And Exerts Antidiabetic Effects In Obese Mice, Aaron R Cox, Peter M Masschelin, Pradip K Saha, Jessica B Felix, Robert Sharp, Zeqin Lian, Yan Xia, Natasha Chernis, David A Bader, Kang Ho Kim, Xin Li, Jun Yoshino, Xin Li, Gang Li, Zheng Sun, Huaizhu Wu, Cristian Coarfa, David D Moore, Samuel Klein, Kai Sun, Sean M Hartig

Faculty, Staff and Student Publications

Low-grade, sustained inflammation in white adipose tissue (WAT) characterizes obesity and coincides with type 2 diabetes mellitus (T2DM). However, pharmacological targeting of inflammation lacks durable therapeutic effects in insulin-resistant conditions. Through a computational screen, we discovered that the FDA-approved rheumatoid arthritis drug auranofin improved insulin sensitivity and normalized obesity-associated abnormalities, including hepatic steatosis and hyperinsulinemia in mouse models of T2DM. We also discovered that auranofin accumulation in WAT depleted inflammatory responses to a high-fat diet without altering body composition in obese wild-type mice. Surprisingly, elevated leptin levels and blunted beta-adrenergic receptor activity achieved by leptin receptor deletion abolished the antidiabetic …


Temporal And Spatial Metabolite Dynamics Impart Control In Adipogenesis, Kristin Eckel-Mahan Dec 2022

Temporal And Spatial Metabolite Dynamics Impart Control In Adipogenesis, Kristin Eckel-Mahan

Faculty, Staff and Student Publications

The process of adipogenesis is critical for forming new, healthy adipocytes that are capable of storing lipids. In this issue, Sánchez-Ramírez and Ung et al. (2022. J. Cell Biol. https://doi.org/10.1083/jcb.202111137) reveal a novel role for the metabolite nicotinamide adenine dinucleotide in controlling differentiation of mesenchymal stromal cells into adipocytes.


Activity Disruption Causes Degeneration Of Entorhinal Neurons In A Mouse Model Of Alzheimer’S Circuit Dysfunction, Rong Zhao, Stacy D Grunke, Caleb A Wood, Gabriella A Perez, Melissa Comstock, Ming-Hua Li, Anand K Singh, Kyung-Won Park, Joanna L Jankowsky Dec 2022

Activity Disruption Causes Degeneration Of Entorhinal Neurons In A Mouse Model Of Alzheimer’S Circuit Dysfunction, Rong Zhao, Stacy D Grunke, Caleb A Wood, Gabriella A Perez, Melissa Comstock, Ming-Hua Li, Anand K Singh, Kyung-Won Park, Joanna L Jankowsky

Faculty, Staff and Students Publications

Neurodegenerative diseases are characterized by selective vulnerability of distinct cell populations; however, the cause for this specificity remains elusive. Here, we show that entorhinal cortex layer 2 (EC2) neurons are unusually vulnerable to prolonged neuronal inactivity compared with neighboring regions of the temporal lobe, and that reelin + stellate cells connecting EC with the hippocampus are preferentially susceptible within the EC2 population. We demonstrate that neuronal death after silencing can be elicited through multiple independent means of activity inhibition, and that preventing synaptic release, either alone or in combination with electrical shunting, is sufficient to elicit silencing-induced degeneration. Finally, we …


Active Dna Demethylation Promotes Cell Fate Specification And The Dna Damage Response, Dongpeng Wang, Wei Wu, Elsa Callen, Raphael Pavani, Nicholas Zolnerowich, Srikanth Kodali, Dali Zong, Nancy Wong, Santiago Noriega, William J Nathan, Gabriel Matos-Rodrigues, Raj Chari, Michael J Kruhlak, Ferenc Livak, Michael Ward, Keith Caldecott, Bruno Di Stefano, André Nussenzweig Dec 2022

Active Dna Demethylation Promotes Cell Fate Specification And The Dna Damage Response, Dongpeng Wang, Wei Wu, Elsa Callen, Raphael Pavani, Nicholas Zolnerowich, Srikanth Kodali, Dali Zong, Nancy Wong, Santiago Noriega, William J Nathan, Gabriel Matos-Rodrigues, Raj Chari, Michael J Kruhlak, Ferenc Livak, Michael Ward, Keith Caldecott, Bruno Di Stefano, André Nussenzweig

Faculty, Staff and Students Publications

Neurons harbor high levels of single-strand DNA breaks (SSBs) that are targeted to neuronal enhancers, but the source of this endogenous damage remains unclear. Using two systems of postmitotic lineage specification-induced pluripotent stem cell-derived neurons and transdifferentiated macrophages-we show that thymidine DNA glycosylase (TDG)-driven excision of methylcytosines oxidized with ten-eleven translocation enzymes (TET) is a source of SSBs. Although macrophage differentiation favors short-patch base excision repair to fill in single-nucleotide gaps, neurons also frequently use the long-patch subpathway. Disrupting this gap-filling process using anti-neoplastic cytosine analogs triggers a DNA damage response and neuronal cell death, which is dependent on TDG. …


Metabolome And Microbiome Multi-Omics Integration From A Murine Lung Inflammation Model Of Bronchopulmonary Dysplasia, Ahmed El Saie, Chenlian Fu, Sandra L Grimm, Matthew J Robertson, Kristi Hoffman, Vasanta Putluri, Chandra Shekar R Ambati, Nagireddy Putluri, Binoy Shivanna, Cristian Coarfa, Mohan Pammi Dec 2022

Metabolome And Microbiome Multi-Omics Integration From A Murine Lung Inflammation Model Of Bronchopulmonary Dysplasia, Ahmed El Saie, Chenlian Fu, Sandra L Grimm, Matthew J Robertson, Kristi Hoffman, Vasanta Putluri, Chandra Shekar R Ambati, Nagireddy Putluri, Binoy Shivanna, Cristian Coarfa, Mohan Pammi

Faculty, Staff and Students Publications

BACKGROUND: Respiratory tract microbial dysbiosis can exacerbate inflammation and conversely inflammation may cause dysbiosis. Dysbiotic microbiome metabolites may lead to bronchopulmonary dysplasia (BPD). Hyperoxia and lipopolysaccharide (LPS) interaction alters lung microbiome and metabolome, mediating BPD lung injury sequence.

METHODS: C57BL6/J mice were exposed to 21% (normoxia) or 70% (hyperoxia) oxygen during postnatal days (PND) 1-14. Pups were injected with LPS (6 mg/kg) or equal PBS volume, intraperitoneally on PND 3, 5, and 7. At PND14, the lungs were collected for microbiome and metabolomic analyses (n = 5/group).

RESULTS: Microbiome alpha and beta diversity were similar between groups. Metabolic changes included …


Cic Missense Variants Contribute To Susceptibility For Spina Bifida, Xiao Han, Xuanye Cao, Vanessa Aguiar-Pulido, Wei Yang, Menuka Karki, Paula Andrea Pimienta Ramirez, Robert M Cabrera, Ying Linda Lin, Bogdan J Wlodarczyk, Gary M Shaw, M Elizabeth Ross, Cuilian Zhang, Richard H Finnell, Yunping Lei Dec 2022

Cic Missense Variants Contribute To Susceptibility For Spina Bifida, Xiao Han, Xuanye Cao, Vanessa Aguiar-Pulido, Wei Yang, Menuka Karki, Paula Andrea Pimienta Ramirez, Robert M Cabrera, Ying Linda Lin, Bogdan J Wlodarczyk, Gary M Shaw, M Elizabeth Ross, Cuilian Zhang, Richard H Finnell, Yunping Lei

Faculty, Staff and Students Publications

Neural tube defects (NTDs) are congenital malformations resulting from abnormal embryonic development of the brain, spine, or spinal column. The genetic etiology of human NTDs remains poorly understood despite intensive investigation. CIC, homolog of the Capicua transcription repressor, has been reported to interact with ataxin-1 (ATXN1) and participate in the pathogenesis of spinocerebellar ataxia type 1. Our previous study demonstrated that CIC loss of function (LoF) variants contributed to the cerebral folate deficiency syndrome by downregulating folate receptor 1 (FOLR1) expression. Given the importance of folate transport in neural tube formation, we hypothesized that CIC variants could contribute to increased …


Bcl11b And Atoh8 Coordinate Cellular Plasticity For Reprogramming And Transformation, Mo-Fan Huang, Rachel Shoemaker, Dung-Fang Lee Dec 2022

Bcl11b And Atoh8 Coordinate Cellular Plasticity For Reprogramming And Transformation, Mo-Fan Huang, Rachel Shoemaker, Dung-Fang Lee

Faculty, Staff and Student Publications

By dissecting and comparing the transcriptional trajectories and epigenomic traits of reprogramming and transforming cells at the single-cell resolution, Huyghe et al discovered Bcl11b and Atoh8, two key transcription factors controlling cell plasticity during pluripotent reprogramming and oncogenic transformation.


Histopathologic And Transcriptomic Phenotypes Of A Conditional Rankl Transgenic Mouse Thymus, Maria M Szwarc, Lan Hai, Vineet K Maurya, Kimal Rajapakshe, Dimuthu Perera, Michael M Ittmann, Qianxing Mo, Yong Lin, Matthew L Bettini, Cristian Coarfa, John P Lydon Dec 2022

Histopathologic And Transcriptomic Phenotypes Of A Conditional Rankl Transgenic Mouse Thymus, Maria M Szwarc, Lan Hai, Vineet K Maurya, Kimal Rajapakshe, Dimuthu Perera, Michael M Ittmann, Qianxing Mo, Yong Lin, Matthew L Bettini, Cristian Coarfa, John P Lydon

Faculty, Staff and Students Publications

Although conventional knockout and transgenic mouse models have significantly advanced our understanding of Receptor Activator of NF-κB Ligand (RANKL) signaling in intra-thymic crosstalk that establishes self-tolerance and later stages of lymphopoiesis, the unique advantages of conditional mouse transgenesis have yet to be explored. A main advantage of conditional transgenesis is the ability to express a transgene in a spatiotemporal restricted manner, enabling the induction (or de-induction) of transgene expression during predetermined stages of embryogenesis or during defined postnatal developmental or physiological states, such as puberty, adulthood, and pregnancy. Here, we describe the K5: RANKL bigenic mouse, in which transgene derived …


Analysis Of Genome-Wide Knockout Mouse Database Identifies Candidate Ciliopathy Genes, Kendall Higgins, Bret A Moore, Zorana Berberovic, Hibret A Adissu, Mohammad Eskandarian, Ann M Flenniken, Andy Shao, Denise M Imai, Dave Clary, Louise Lanoue, Susan Newbigging, Lauryl M J Nutter, David J Adams, Fatima Bosch, Robert E Braun, Steve D M Brown, Mary E Dickinson, Michael Dobbie, Paul Flicek, Xiang Gao, Sanjeev Galande, Anne Grobler, Jason D Heaney, Yann Herault, Martin Hrabe De Angelis, Hsian-Jean Genie Chin, Fabio Mammano, Chuan Qin, Toshihiko Shiroishi, Radislav Sedlacek, J-K Seong, Ying Xu, Impc Consortium, K C Kent Lloyd, Colin Mckerlie, Ala Moshiri Dec 2022

Analysis Of Genome-Wide Knockout Mouse Database Identifies Candidate Ciliopathy Genes, Kendall Higgins, Bret A Moore, Zorana Berberovic, Hibret A Adissu, Mohammad Eskandarian, Ann M Flenniken, Andy Shao, Denise M Imai, Dave Clary, Louise Lanoue, Susan Newbigging, Lauryl M J Nutter, David J Adams, Fatima Bosch, Robert E Braun, Steve D M Brown, Mary E Dickinson, Michael Dobbie, Paul Flicek, Xiang Gao, Sanjeev Galande, Anne Grobler, Jason D Heaney, Yann Herault, Martin Hrabe De Angelis, Hsian-Jean Genie Chin, Fabio Mammano, Chuan Qin, Toshihiko Shiroishi, Radislav Sedlacek, J-K Seong, Ying Xu, Impc Consortium, K C Kent Lloyd, Colin Mckerlie, Ala Moshiri

Faculty, Staff and Students Publications

We searched a database of single-gene knockout (KO) mice produced by the International Mouse Phenotyping Consortium (IMPC) to identify candidate ciliopathy genes. We first screened for phenotypes in mouse lines with both ocular and renal or reproductive trait abnormalities. The STRING protein interaction tool was used to identify interactions between known cilia gene products and those encoded by the genes in individual knockout mouse strains in order to generate a list of "candidate ciliopathy genes." From this list, 32 genes encoded proteins predicted to interact with known ciliopathy proteins. Of these, 25 had no previously described roles in ciliary pathobiology. …


Dawn-To-Dusk Dry Fasting Induces Anti-Atherosclerotic, Anti-Inflammatory, And Anti-Tumorigenic Proteome In Peripheral Blood Mononuclear Cells In Subjects With Metabolic Syndrome, Ayse L Mindikoglu, Jihwan Park, Antone R Opekun, Mustafa M Abdulsada, Zoe R Wilhelm, Prasun K Jalal, Sridevi Devaraj, Sung Yun Jung Dec 2022

Dawn-To-Dusk Dry Fasting Induces Anti-Atherosclerotic, Anti-Inflammatory, And Anti-Tumorigenic Proteome In Peripheral Blood Mononuclear Cells In Subjects With Metabolic Syndrome, Ayse L Mindikoglu, Jihwan Park, Antone R Opekun, Mustafa M Abdulsada, Zoe R Wilhelm, Prasun K Jalal, Sridevi Devaraj, Sung Yun Jung

Faculty, Staff and Students Publications

BACKGROUND: Metabolic syndrome characterized by abdominal obesity, high blood pressure, elevated fasting glucose and triglyceride levels and low high-density lipoprotein cholesterol level is associated with pro-inflammatory state, increased risk for atherosclerosis, and multiple cancers. Our previous results on subjects with metabolic syndrome showed that 4-week dawn-to-dusk (sunset) dry fasting resulted in significant changes in the serum proteome and improvement in several metabolic risk factors. Peripheral blood mononuclear cells (PBMC) proteomics is a powerful tool that can provide mechanistic insights into how dawn-to-dusk dry fasting affects protein expression in metabolic pathways at cellular level. In this study, we determined whether dawn-to-dusk …