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Articles 10861 - 10890 of 13821
Full-Text Articles in Entire DC Network
Gli1 Activates Pro-Fibrotic Pathways In Myelofibrosis Fibrocytes, Taghi Manshouri, Ivo Veletic, Ping Li, C Cameron Yin, Sean M Post, Srdan Verstovsek, Zeev Estrov
Gli1 Activates Pro-Fibrotic Pathways In Myelofibrosis Fibrocytes, Taghi Manshouri, Ivo Veletic, Ping Li, C Cameron Yin, Sean M Post, Srdan Verstovsek, Zeev Estrov
Faculty, Staff and Student Publications
Bone marrow (BM) fibrosis was thought to be induced exclusively by mesenchymal stromal cells (MSCs). However, we and others found that neoplastic fibrocytes induce BM fibrosis in myelofibrosis (MF). Because glioma-associated oncogene-1 (GLI1), an effector of the Hedgehog pathway, plays a role in the induction of BM fibrosis, we wondered whether GLI1 affects fibrocyte-induced BM fibrosis in MF. Multiplexed fluorescence immunohistochemistry analysis of MF patients' BM detected high levels of GLI1 in MF fibrocytes compared to MSCs or normal fibrocytes. Immunostaining, RNA in situ hybridization, gene expression analysis, and western immunoblotting detected high levels of GLI1 and GLI1-induced matrix metalloproteases …
Pirtobrutinib Inhibits Wild-Type And Mutant Bruton’S Tyrosine Kinase-Mediated Signaling In Chronic Lymphocytic Leukemia, Burcu Aslan, Gorkem Kismali, Lakesla R Iles, Ganiraju C Manyam, Mary L Ayres, Lisa S Chen, Mihai Gagea, Maria Teresa Sabrina Bertilaccio, William G Wierda, Varsha Gandhi
Pirtobrutinib Inhibits Wild-Type And Mutant Bruton’S Tyrosine Kinase-Mediated Signaling In Chronic Lymphocytic Leukemia, Burcu Aslan, Gorkem Kismali, Lakesla R Iles, Ganiraju C Manyam, Mary L Ayres, Lisa S Chen, Mihai Gagea, Maria Teresa Sabrina Bertilaccio, William G Wierda, Varsha Gandhi
Faculty, Staff and Student Publications
Pirtobrutinib (LOXO-305), a reversible inhibitor of Bruton's tyrosine kinase (BTK), was designed as an alternative strategy to treat ibrutinib-resistant disease that develops due to C481 kinase domain mutations. The clinical activity of pirtobrutinib has been demonstrated in CLL, but the mechanism of action has not been investigated. We evaluated pirtobrutinib in 4 model systems: first, MEC-1, a CLL cell line overexpressing BTKWT, BTKC481S, or BTKC481R; second, murine models driven by MEC-1 overexpressing BTKWT or BTKC481S; third, in vitro incubations of primary CLL cells; and finally, CLL patients during pirtobrutinib therapy (NCT03740529, ClinicalTrials.gov). Pirtobrutinib inhibited BTK activation as well …
Integrative Genomic Analysis Reveals Low T-Cell Infiltration As The Primary Feature Of Tobacco Use In Hpv-Positive Oropharyngeal Cancer, Benjamin M Wahle, Paul Zolkind, Ricardo J Ramirez, Zachary L Skidmore, Sydney R Anderson, Angela Mazul, D Neil Hayes, Vlad C Sandulache, Wade L Thorstad, Douglas Adkins, Obi L Griffith, Malachi Griffith, Jose P Zevallos
Integrative Genomic Analysis Reveals Low T-Cell Infiltration As The Primary Feature Of Tobacco Use In Hpv-Positive Oropharyngeal Cancer, Benjamin M Wahle, Paul Zolkind, Ricardo J Ramirez, Zachary L Skidmore, Sydney R Anderson, Angela Mazul, D Neil Hayes, Vlad C Sandulache, Wade L Thorstad, Douglas Adkins, Obi L Griffith, Malachi Griffith, Jose P Zevallos
Faculty, Staff and Students Publications
Although tobacco use is an independent adverse prognostic feature in HPV(+) oropharyngeal squamous cell carcinoma (OPSCC), the biologic features associated with tobacco use have not been systematically investigated. We characterized genomic and immunologic features associated with tobacco use through whole exome sequencing, mRNA hybridization, and immunohistochemical staining in 47 HPV(+) OPSCC tumors. Low expression of transcripts in a T cell-inflamed gene expression profile (TGEP) was associated with tobacco use at diagnosis and lower overall and disease-free survival. Tobacco use was associated with an increased proportion of T > C substitutions and a lower proportion of expected mutational signatures, but not with …
Alterations Of The Gut Microbial Community Structure And Function With Aging In The Spontaneously Hypertensive Stroke Prone Rat, Huanan Shi, James W Nelson, Sharon Phillips, Joseph F Petrosino, Robert M Bryan, David J Durgan
Alterations Of The Gut Microbial Community Structure And Function With Aging In The Spontaneously Hypertensive Stroke Prone Rat, Huanan Shi, James W Nelson, Sharon Phillips, Joseph F Petrosino, Robert M Bryan, David J Durgan
Faculty, Staff and Students Publications
Gut dysbiosis, a pathological imbalance of bacteria, has been shown to contribute to the development of hypertension (HT), systemic- and neuro-inflammation, and blood-brain barrier (BBB) disruption in spontaneously hypertensive stroke prone rats (SHRSP). However, to date individual species that contribute to HT in the SHRSP model have not been identified. One potential reason, is that nearly all studies of the SHRSP gut microbiota have analyzed samples from rats with established HT. The goal of this study was to examine the SHRSP gut microbiota before, during, and after the onset of hypertension, and in normotensive WKY control rats over the same …
Inhibition Of Mitochondrial Complex I Reverses Notch1-Driven Metabolic Reprogramming In T-Cell Acute Lymphoblastic Leukemia, Natalia Baran, Alessia Lodi, Yogesh Dhungana, Shelley Herbrich, Meghan Collins, Shannon Sweeney, Renu Pandey, Anna Skwarska, Shraddha Patel, Mathieu Tremblay, Vinitha Mary Kuruvilla, Antonio Cavazos, Mecit Kaplan, Marc O Warmoes, Diogo Troggian Veiga, Ken Furudate, Shanti Rojas-Sutterin, Andre Haman, Yves Gareau, Anne Marinier, Helen Ma, Karine Harutyunyan, May Daher, Luciana Melo Garcia, Gheath Al-Atrash, Sujan Piya, Vivian Ruvolo, Wentao Yang, Sriram Saravanan Shanmugavelandy, Ningping Feng, Jason Gay, Di Du, Jun J Yang, Fieke W Hoff, Marcin Kaminski, Katarzyna Tomczak, R Eric Davis, Daniel Herranz, Adolfo Ferrando, Elias J Jabbour, M Emilia Di Francesco, David T Teachey, Terzah M Horton, Steven Kornblau, Katayoun Rezvani, Guy Sauvageau, Mihai Gagea, Michael Andreeff, Koichi Takahashi, Joseph R Marszalek, Philip L Lorenzi, Jiyang Yu, Stefano Tiziani, Trang Hoang, Marina Konopleva
Inhibition Of Mitochondrial Complex I Reverses Notch1-Driven Metabolic Reprogramming In T-Cell Acute Lymphoblastic Leukemia, Natalia Baran, Alessia Lodi, Yogesh Dhungana, Shelley Herbrich, Meghan Collins, Shannon Sweeney, Renu Pandey, Anna Skwarska, Shraddha Patel, Mathieu Tremblay, Vinitha Mary Kuruvilla, Antonio Cavazos, Mecit Kaplan, Marc O Warmoes, Diogo Troggian Veiga, Ken Furudate, Shanti Rojas-Sutterin, Andre Haman, Yves Gareau, Anne Marinier, Helen Ma, Karine Harutyunyan, May Daher, Luciana Melo Garcia, Gheath Al-Atrash, Sujan Piya, Vivian Ruvolo, Wentao Yang, Sriram Saravanan Shanmugavelandy, Ningping Feng, Jason Gay, Di Du, Jun J Yang, Fieke W Hoff, Marcin Kaminski, Katarzyna Tomczak, R Eric Davis, Daniel Herranz, Adolfo Ferrando, Elias J Jabbour, M Emilia Di Francesco, David T Teachey, Terzah M Horton, Steven Kornblau, Katayoun Rezvani, Guy Sauvageau, Mihai Gagea, Michael Andreeff, Koichi Takahashi, Joseph R Marszalek, Philip L Lorenzi, Jiyang Yu, Stefano Tiziani, Trang Hoang, Marina Konopleva
Faculty, Staff and Student Publications
T-cell acute lymphoblastic leukemia (T-ALL) is commonly driven by activating mutations in NOTCH1 that facilitate glutamine oxidation. Here we identify oxidative phosphorylation (OxPhos) as a critical pathway for leukemia cell survival and demonstrate a direct relationship between NOTCH1, elevated OxPhos gene expression, and acquired chemoresistance in pre-leukemic and leukemic models. Disrupting OxPhos with IACS-010759, an inhibitor of mitochondrial complex I, causes potent growth inhibition through induction of metabolic shut-down and redox imbalance in NOTCH1-mutated and less so in NOTCH1-wt T-ALL cells. Mechanistically, inhibition of OxPhos induces a metabolic reprogramming into glutaminolysis. We show that pharmacological blockade of OxPhos combined with …
Making National Cancer Institute-Designated Comprehensive Cancer Center Knowledge Accessible To Community Oncologists Via An Online Tumor Board: Longitudinal Observational Study, Maitri Kalra, Elizabeth Henry, Kelly Mccann, Meghan S Karuturi, Jean G Bustamante Alvarez, Amanda Parkes, Robert Wesolowski, Mei Wei, Sarah S Mougalian, Gregory Durm, Angel Qin, Caitlin Schonewolf, Meghna Trivedi, Avan J Armaghani, Frederick H Wilson, Wade T Iams, Anita A Turk, Praveen Vikas, Michael Cecchini, Sam Lubner, Priyadarshini Pathak, Kristen Spencer, Vadim S Koshkin, Matthew K Labriola, Catherine H Marshall, Katy E Beckermann, Marina N Sharifi, Anthony C Bejjani, Varsha Hotchandani, Samir Housri, Nadine Housri
Making National Cancer Institute-Designated Comprehensive Cancer Center Knowledge Accessible To Community Oncologists Via An Online Tumor Board: Longitudinal Observational Study, Maitri Kalra, Elizabeth Henry, Kelly Mccann, Meghan S Karuturi, Jean G Bustamante Alvarez, Amanda Parkes, Robert Wesolowski, Mei Wei, Sarah S Mougalian, Gregory Durm, Angel Qin, Caitlin Schonewolf, Meghna Trivedi, Avan J Armaghani, Frederick H Wilson, Wade T Iams, Anita A Turk, Praveen Vikas, Michael Cecchini, Sam Lubner, Priyadarshini Pathak, Kristen Spencer, Vadim S Koshkin, Matthew K Labriola, Catherine H Marshall, Katy E Beckermann, Marina N Sharifi, Anthony C Bejjani, Varsha Hotchandani, Samir Housri, Nadine Housri
Faculty, Staff and Student Publications
Background: Expert knowledge is often shared among multidisciplinary academic teams at tumor boards (TBs) across the country, but these conversations exist in silos and do not reach the wider oncology community.
Objective: Using an oncologist-only question and answer (Q&A) website, we sought to document expert insights from TBs at National Cancer Institute-designated Comprehensive Cancer Centers (NCI-CCCs) to provide educational benefits to the oncology community.
Methods: We designed a process with the NCI-CCCs to document and share discussions from the TBs focused on areas of practice variation on theMednet, an interactive Q&A website of over 13,000 US oncologists. The faculty translated …
Platelets Increase The Expression Of Pd-L1 In Ovarian Cancer, Min Soon Cho, Hani Lee, Ricardo Gonzalez-Delgado, Dan Li, Tomoyuki Sasano, Wendolyn Carlos-Alcalde, Qing Ma, Jinsong Liu, Anil K Sood, Vahid Afshar-Kharghan
Platelets Increase The Expression Of Pd-L1 In Ovarian Cancer, Min Soon Cho, Hani Lee, Ricardo Gonzalez-Delgado, Dan Li, Tomoyuki Sasano, Wendolyn Carlos-Alcalde, Qing Ma, Jinsong Liu, Anil K Sood, Vahid Afshar-Kharghan
Faculty, Staff and Student Publications
The interactions between platelets and cancer cells activate platelets and enhance tumor growth. Platelets increase proliferation and epithelial-mesenchymal transition in cancer cells, inhibit anoikis, enhance the extravasation of cancer cells, and protect circulating tumor cells against natural killer cells. Here, we have identified another mechanism by which platelets dampen the immune attack on cancer cells. We found that platelets can blunt the antitumor immune response by increasing the expression of inhibitory immune checkpoint (PD-L1) on ovarian cancer cells in vitro and in vivo. Platelets increased PD-L1 in cancer cells via contact-dependent (through NF-κB signaling) and contact-independent (through TFGβR1/Smad signaling) pathways. …
One-Pot, One-Step Synthesis Of Drug-Loaded Magnetic Multimicelle Aggregates, Chang Soo Kim, Dmitry Nevozhay, Rebeca Romero Aburto, Ashok Pehere, Lan Pang, Rebecca Dillard, Ziqiu Wang, Clayton Smith, Kelsey Boitnott Mathieu, Marie Zhang, John D Hazle, Robert C Bast, Konstantin Sokolov
One-Pot, One-Step Synthesis Of Drug-Loaded Magnetic Multimicelle Aggregates, Chang Soo Kim, Dmitry Nevozhay, Rebeca Romero Aburto, Ashok Pehere, Lan Pang, Rebecca Dillard, Ziqiu Wang, Clayton Smith, Kelsey Boitnott Mathieu, Marie Zhang, John D Hazle, Robert C Bast, Konstantin Sokolov
Faculty, Staff and Student Publications
Lipid-based formulations provide a nanotechnology platform that is widely used in a variety of biomedical applications because it has several advantageous properties including biocompatibility, reduced toxicity, relative ease of surface modifications, and the possibility for efficient loading of drugs, biologics, and nanoparticles. A combination of lipid-based formulations with magnetic nanoparticles such as iron oxide was shown to be highly advantageous in a growing number of applications including magnet-mediated drug delivery and image-guided therapy. Currently, lipid-based formulations are prepared by multistep protocols. Simplification of the current multistep procedures can lead to a number of important technological advantages including significantly decreased processing …
Fibroblast Growth Factor 15/19 Expression, Regulation, And Function: An Overview, Greg Guthrie, Caitlin Vonderohe, Douglas Burrin
Fibroblast Growth Factor 15/19 Expression, Regulation, And Function: An Overview, Greg Guthrie, Caitlin Vonderohe, Douglas Burrin
Children’s Nutrition Research Center Staff Publications
Since the discovery of fibroblast growth factor (FGF)-19 over 20 years ago, our understanding of the peptide and its role in human biology has moved forward significantly. A member of a superfamily of paracrine growth factors regulating embryonic development, FGF19 is unique in that it is a dietary-responsive endocrine hormone linked with bile acid homeostasis, glucose and lipid metabolism, energy expenditure, and protein synthesis during the fed to fasted state. FGF19 achieves this through targeting multiple tissues and signaling pathways within those tissues. The diverse functional capabilities of FGF19 is due to the unique structural characteristics of the protein and …
Systematic Expression Profiling Of Dpr And Dip Genes Reveals Cell Surface Codes In Drosophila Larval Motor And Sensory Neurons, Yupu Wang, Meike Lobb-Rabe, James Ashley, Purujit Chatterjee, Veera Anand, Hugo J Bellen, Oguz Kanca, Robert A Carrillo
Systematic Expression Profiling Of Dpr And Dip Genes Reveals Cell Surface Codes In Drosophila Larval Motor And Sensory Neurons, Yupu Wang, Meike Lobb-Rabe, James Ashley, Purujit Chatterjee, Veera Anand, Hugo J Bellen, Oguz Kanca, Robert A Carrillo
Faculty, Staff and Students Publications
In complex nervous systems, neurons must identify their correct partners to form synaptic connections. The prevailing model to ensure correct recognition posits that cell-surface proteins (CSPs) in individual neurons act as identification tags. Thus, knowing what cells express which CSPs would provide insights into neural development, synaptic connectivity, and nervous system evolution. Here, we investigated expression of Dpr and DIP genes, two CSP subfamilies belonging to the immunoglobulin superfamily, in Drosophila larval motor neurons (MNs), muscles, glia and sensory neurons (SNs) using a collection of GAL4 driver lines. We found that Dpr genes are more broadly expressed than DIP genes …
An Evidence-Based Lexical Pattern Approach For Quality Assurance Of Gene Ontology Relations, Rashmie Abeysinghe, Yuntao Yang, Mason Bartels, W Jim Zheng, Licong Cui
An Evidence-Based Lexical Pattern Approach For Quality Assurance Of Gene Ontology Relations, Rashmie Abeysinghe, Yuntao Yang, Mason Bartels, W Jim Zheng, Licong Cui
Faculty, Staff and Student Publications
Gene Ontology (GO) is widely used in the biological domain. It is the most comprehensive ontology providing formal representation of gene functions (GO concepts) and relations between them. However, unintentional quality defects (e.g. missing or erroneous relations) in GO may exist due to the large size of GO concepts and complexity of GO structures. Such quality defects would impact the results of GO-based analyses and applications. In this work, we introduce a novel evidence-based lexical pattern approach for quality assurance of GO relations. We leverage two layers of evidence to suggest potentially missing relations in GO as follows. We first …
Relational Graph Convolutional Networks For Predicting Blood-Brain Barrier Penetration Of Drug Molecules, Yan Ding, Xiaoqian Jiang, Yejin Kim
Relational Graph Convolutional Networks For Predicting Blood-Brain Barrier Penetration Of Drug Molecules, Yan Ding, Xiaoqian Jiang, Yejin Kim
Faculty, Staff and Student Publications
MOTIVATION: Evaluating the blood-brain barrier (BBB) permeability of drug molecules is a critical step in brain drug development. Traditional methods for the evaluation require complicated in vitro or in vivo testing. Alternatively, in silico predictions based on machine learning have proved to be a cost-efficient way to complement the in vitro and in vivo methods. However, the performance of the established models has been limited by their incapability of dealing with the interactions between drugs and proteins, which play an important role in the mechanism behind the BBB penetrating behaviors. To address this limitation, we employed the relational graph convolutional …
Chronic Lymphocytic Leukemia Progression Diagnosis With Intrinsic Cellular Patterns Via Unsupervised Clustering, Pingjun Chen, Siba El Hussein, Fuyong Xing, Muhammad Aminu, Aparajith Kannapiran, John D Hazle, L Jeffrey Medeiros, Ignacio I Wistuba, David Jaffray, Joseph D Khoury, Jia Wu
Chronic Lymphocytic Leukemia Progression Diagnosis With Intrinsic Cellular Patterns Via Unsupervised Clustering, Pingjun Chen, Siba El Hussein, Fuyong Xing, Muhammad Aminu, Aparajith Kannapiran, John D Hazle, L Jeffrey Medeiros, Ignacio I Wistuba, David Jaffray, Joseph D Khoury, Jia Wu
Faculty, Staff and Student Publications
Identifying the progression of chronic lymphocytic leukemia (CLL) to accelerated CLL (aCLL) or transformation to diffuse large B-cell lymphoma (Richter transformation; RT) has significant clinical implications as it prompts a major change in patient management. However, the differentiation between these disease phases may be challenging in routine practice. Unsupervised learning has gained increased attention because of its substantial potential in data intrinsic pattern discovery. Here, we demonstrate that cellular feature engineering, identifying cellular phenotypes via unsupervised clustering, provides the most robust analytic performance in analyzing digitized pathology slides (accuracy = 0.925, AUC = 0.978) when compared to alternative approaches, such …
Rapid Acceleration Of Kras-Mutant Pancreatic Carcinogenesis Via Remodeling Of Tumor Immune Microenvironment By Pparδ, Yi Liu, Yasunori Deguchi, Daoyan Wei, Fuyao Liu, Micheline J Moussalli, Eriko Deguchi, Donghui Li, Huamin Wang, Lovie Ann Valentin, Jennifer K Colby, Jing Wang, Xiaofeng Zheng, Haoqiang Ying, Mihai Gagea, Baoan Ji, Jiaqi Shi, James C Yao, Xiangsheng Zuo, Imad Shureiqi
Rapid Acceleration Of Kras-Mutant Pancreatic Carcinogenesis Via Remodeling Of Tumor Immune Microenvironment By Pparδ, Yi Liu, Yasunori Deguchi, Daoyan Wei, Fuyao Liu, Micheline J Moussalli, Eriko Deguchi, Donghui Li, Huamin Wang, Lovie Ann Valentin, Jennifer K Colby, Jing Wang, Xiaofeng Zheng, Haoqiang Ying, Mihai Gagea, Baoan Ji, Jiaqi Shi, James C Yao, Xiangsheng Zuo, Imad Shureiqi
Faculty, Staff and Student Publications
Pancreatic intraepithelial neoplasia (PanIN) is a precursor of pancreatic ductal adenocarcinoma (PDAC), which commonly occurs in the general populations with aging. Although most PanIN lesions (PanINs) harbor oncogenic KRAS mutations that initiate pancreatic tumorigenesis; PanINs rarely progress to PDAC. Critical factors that promote this progression, especially targetable ones, remain poorly defined. We show that peroxisome proliferator-activated receptor-delta (PPARδ), a lipid nuclear receptor, is upregulated in PanINs in humans and mice. Furthermore, PPARδ ligand activation by a high-fat diet or GW501516 (a highly selective, synthetic PPARδ ligand) in mutant KRASG12D (KRASmu) pancreatic epithelial cells strongly accelerates PanIN progression to PDAC. This …
Targeting A Chemo-Induced Adaptive Signaling Circuit Confers Therapeutic Vulnerabilities In Pancreatic Cancer, Xu Feng, Mengfan Tang, Merve Dede, Dan Su, Guangsheng Pei, Dadi Jiang, Chao Wang, Zhen Chen, Mi Li, Litong Nie, Yun Xiong, Siting Li, Jeong-Min Park, Huimin Zhang, Min Huang, Klaudia Szymonowicz, Zhongming Zhao, Traver Hart, Junjie Chen
Targeting A Chemo-Induced Adaptive Signaling Circuit Confers Therapeutic Vulnerabilities In Pancreatic Cancer, Xu Feng, Mengfan Tang, Merve Dede, Dan Su, Guangsheng Pei, Dadi Jiang, Chao Wang, Zhen Chen, Mi Li, Litong Nie, Yun Xiong, Siting Li, Jeong-Min Park, Huimin Zhang, Min Huang, Klaudia Szymonowicz, Zhongming Zhao, Traver Hart, Junjie Chen
Faculty, Staff and Student Publications
Exploiting cancer vulnerabilities is critical for the discovery of anticancer drugs. However, tumor suppressors cannot be directly targeted because of their loss of function. To uncover specific vulnerabilities for cells with deficiency in any given tumor suppressor(s), we performed genome-scale CRISPR loss-of-function screens using a panel of isogenic knockout cells we generated for 12 common tumor suppressors. Here, we provide a comprehensive and comparative dataset for genetic interactions between the whole-genome protein-coding genes and a panel of tumor suppressor genes, which allows us to uncover known and new high-confidence synthetic lethal interactions. Mining this dataset, we uncover essential paralog gene …
Prioritization Of Risk Genes In Multiple Sclerosis By A Refined Bayesian Framework Followed By Tissue-Specificity And Cell Type Feature Assessment, Andi Liu, Astrid M Manuel, Yulin Dai, Zhongming Zhao
Prioritization Of Risk Genes In Multiple Sclerosis By A Refined Bayesian Framework Followed By Tissue-Specificity And Cell Type Feature Assessment, Andi Liu, Astrid M Manuel, Yulin Dai, Zhongming Zhao
Faculty, Staff and Student Publications
BACKGROUND: Multiple sclerosis (MS) is a debilitating immune-mediated disease of the central nervous system that affects over 2 million people worldwide, resulting in a heavy burden to families and entire communities. Understanding the genetic basis underlying MS could help decipher the pathogenesis and shed light on MS treatment. We refined a recently developed Bayesian framework, Integrative Risk Gene Selector (iRIGS), to prioritize risk genes associated with MS by integrating the summary statistics from the largest GWAS to date (n = 115,803), various genomic features, and gene-gene closeness.
RESULTS: We identified 163 MS-associated prioritized risk genes (MS-PRGenes) through the Bayesian framework. …
Lncrnas Uc145 And Prkg1-As1 Determine The Functional Output Of Dkk1 In Regulating The Wnt Signaling Pathway In Gastric Cancer, Jung-Ho Yoon, Hyojoo Byun, Cristina Ivan, George A Calin, Dahyun Jung, Sangkil Lee
Lncrnas Uc145 And Prkg1-As1 Determine The Functional Output Of Dkk1 In Regulating The Wnt Signaling Pathway In Gastric Cancer, Jung-Ho Yoon, Hyojoo Byun, Cristina Ivan, George A Calin, Dahyun Jung, Sangkil Lee
Faculty, Staff and Student Publications
DKK1 inhibits the canonical Wnt signaling pathway that is known to be involved in various cancers. However, whether DKK1 acts as an oncogene or tumor suppressor gene remains controversial. Furthermore, the DKK1-regulating mechanism in gastric cancer has not yet been defined. The aim of this study was to explore whether the ultraconserved region UC.145 regulates epigenetic changes in DKK1 expression in gastric cancer. Microarray analysis revealed that UC.145 exhibited the highest binding affinity to EZH2, a histone methyltransferase. The effects of UC.145 inactivation were assessed in gastric cancer cell lines using siRNA. The results indicated that UC.145 triggers DKK1 methylation …
Ezh2 Engages Tgfβ Signaling To Promote Breast Cancer Bone Metastasis Via Integrin Β1-Fak Activation, Lin Zhang, Jingkun Qu, Yutao Qi, Yimin Duan, Yu-Wen Huang, Zhifen Zhou, Ping Li, Jun Yao, Beibei Huang, Shuxing Zhang, Dihua Yu
Ezh2 Engages Tgfβ Signaling To Promote Breast Cancer Bone Metastasis Via Integrin Β1-Fak Activation, Lin Zhang, Jingkun Qu, Yutao Qi, Yimin Duan, Yu-Wen Huang, Zhifen Zhou, Ping Li, Jun Yao, Beibei Huang, Shuxing Zhang, Dihua Yu
Faculty, Staff and Student Publications
Bone metastases occur in 50-70% of patients with late-stage breast cancers and effective therapies are needed. The expression of enhancer of zeste homolog 2 (EZH2) is correlated with breast cancer metastasis, but its function in bone metastasis hasn't been well-explored. Here we report that EZH2 promotes osteolytic metastasis of breast cancer through regulating transforming growth factor beta (TGFβ) signaling. EZH2 induces cancer cell proliferation and osteoclast maturation, whereas EZH2 knockdown decreases bone metastasis incidence and outgrowth in vivo. Mechanistically, EZH2 transcriptionally increases ITGB1, which encodes for integrin β1. Integrin β1 activates focal adhesion kinase (FAK), which phosphorylates TGFβ receptor type …
Identification Of Biomarkers Of Response To Preoperative Talazoparib Monotherapy In Treatment Naïve Gbrca+ Breast Cancers, Xuan Liu, Zhongqi Ge, Fei Yang, Alejandro Contreras, Sanghoon Lee, Jason B White, Yiling Lu, Marilyne Labrie, Banu K Arun, Stacy L Moulder, Gordon B Mills, Helen Piwnica-Worms, Jennifer K Litton, Jeffrey T Chang
Identification Of Biomarkers Of Response To Preoperative Talazoparib Monotherapy In Treatment Naïve Gbrca+ Breast Cancers, Xuan Liu, Zhongqi Ge, Fei Yang, Alejandro Contreras, Sanghoon Lee, Jason B White, Yiling Lu, Marilyne Labrie, Banu K Arun, Stacy L Moulder, Gordon B Mills, Helen Piwnica-Worms, Jennifer K Litton, Jeffrey T Chang
Faculty, Staff and Student Publications
Germline mutations in BRCA1 or BRCA2 exist in ~2-7% of breast cancer patients, which has led to the approval of PARP inhibitors in the advanced setting. We have previously reported a phase II neoadjuvant trial of single agent talazoparib for patients with germline BRCA pathogenic variants with a pathologic complete response (pCR) rate of 53%. As nearly half of the patients treated did not have pCR, better strategies are needed to overcome treatment resistance. To this end, we conducted multi-omic analysis of 13 treatment naïve breast cancer tumors from patients that went on to receive single-agent neoadjuvant talazoparib. We looked …
Evaluation Of Heat Inactivation Of Human Norovirus In Freshwater Clams Using Human Intestinal Enteroids, Tsuyoshi Hayashi, Yoko Yamaoka, Atsushi Ito, Takashi Kamaishi, Ryuichi Sugiyama, Mary K Estes, Masamichi Muramatsu, Kosuke Murakami
Evaluation Of Heat Inactivation Of Human Norovirus In Freshwater Clams Using Human Intestinal Enteroids, Tsuyoshi Hayashi, Yoko Yamaoka, Atsushi Ito, Takashi Kamaishi, Ryuichi Sugiyama, Mary K Estes, Masamichi Muramatsu, Kosuke Murakami
Faculty, Staff and Students Publications
Foodborne disease attributed to the consumption of shellfish contaminated with human norovirus (HuNoV) is one of many global health concerns. Our study aimed to determine the conditions of the heat-inactivation of HuNoV in freshwater clams (Corbicula japonica) using a recently developed HuNoV cultivation system employing stem-cell derived human intestinal enteroids (HIEs). We first measured the internal temperature of the clam tissue in a water bath during boiling at 90 °C and found that approximately 2 min are required for the tissue to reach 90 °C. Next, GII.4 HuNoV was spiked into the center of the clam tissue, followed …
Concerted Type I Interferon Signaling In Microglia And Neural Cells Promotes Memory Impairment Associated With Amyloid Β Plaques, Ethan R Roy, Gabriel Chiu, Sanming Li, Nicholas E Propson, Rupa Kanchi, Baiping Wang, Cristian Coarfa, Hui Zheng, Wei Cao
Concerted Type I Interferon Signaling In Microglia And Neural Cells Promotes Memory Impairment Associated With Amyloid Β Plaques, Ethan R Roy, Gabriel Chiu, Sanming Li, Nicholas E Propson, Rupa Kanchi, Baiping Wang, Cristian Coarfa, Hui Zheng, Wei Cao
Faculty, Staff and Students Publications
The principal signals that drive memory and cognitive impairment in Alzheimer's disease (AD) remain elusive. Here, we revealed brain-wide cellular reactions to type I interferon (IFN-I), an innate immune cytokine aberrantly elicited by amyloid β plaques, and examined their role in cognition and neuropathology relevant to AD in a murine amyloidosis model. Using a fate-mapping reporter system to track cellular responses to IFN-I, we detected robust, Aβ-pathology-dependent IFN-I activation in microglia and other cell types. Long-term blockade of IFN-I receptor (IFNAR) rescued both memory and synaptic deficits and resulted in reduced microgliosis, inflammation, and neuritic pathology. Microglia-specific Ifnar1 deletion attenuated …
Racial And Ethnic Differences In Genomic Profiling Of Early Onset Colorectal Cancer, David M Hein, Weiye Deng, Marylena Bleile, Syed Ali Kazmi, Brooke Rhead, Francisco M De La Vega, Amy L Jones, Radhika Kainthla, Wen Jiang, Brandi Cantarel, Nina N Sanford
Racial And Ethnic Differences In Genomic Profiling Of Early Onset Colorectal Cancer, David M Hein, Weiye Deng, Marylena Bleile, Syed Ali Kazmi, Brooke Rhead, Francisco M De La Vega, Amy L Jones, Radhika Kainthla, Wen Jiang, Brandi Cantarel, Nina N Sanford
Faculty, Staff and Student Publications
The incidence and mortality of early onset colorectal cancer (EOCRC) is rising; outcomes appear to differ by race and ethnicity. We aimed to assess differences in mutational landscape and gene expression of EOCRC by racial and ethnic groups (non-Hispanic Asian, non-Hispanic Black, non-Hispanic White, White Hispanic) using data from the American Association for Cancer Research Project GENIE (10.2) and University of Texas Southwestern, the latter enriched in Hispanic patients. All statistical tests were 2-sided. Of 1752 EOCRC patients, non-Hispanic Black patients had higher rates of KRAS mutations (60.9%; P = .001, q = 0.015), and non-Hispanic White and non-Hispanic Black …
Pattern Differentiation And Tuning Shift In Human Sensory Cortex Underlie Long-Term Threat Memory, Yuqi You, Lucas R Novak, Kevin J Clancy, Wen Li
Pattern Differentiation And Tuning Shift In Human Sensory Cortex Underlie Long-Term Threat Memory, Yuqi You, Lucas R Novak, Kevin J Clancy, Wen Li
Faculty, Staff and Student Publications
The amygdala-prefrontal-cortex circuit has long occupied the center of the threat system 1, but new evidence has rapidly amassed to implicate threat processing outside this canonical circuit 2-4. Through non-human research, the sensory cortex has emerged as a critical substrate for long-term threat memory 5-9, underpinned by sensory cortical pattern separation/completion 10,11 and tuning shift 12,13. In humans, research has begun to associate the human sensory cortex with long-term threat memory 14,15, but the lack of mechanistic insights obscures a direct linkage. Towards that end, …
Bi-Order Multimodal Integration Of Single-Cell Data, Jinzhuang Dou, Shaoheng Liang, Vakul Mohanty, Qi Miao, Yuefan Huang, Qingnan Liang, Xuesen Cheng, Sangbae Kim, Jongsu Choi, Yumei Li, Li Li, May Daher, Rafet Basar, Katayoun Rezvani, Rui Chen, Ken Chen
Bi-Order Multimodal Integration Of Single-Cell Data, Jinzhuang Dou, Shaoheng Liang, Vakul Mohanty, Qi Miao, Yuefan Huang, Qingnan Liang, Xuesen Cheng, Sangbae Kim, Jongsu Choi, Yumei Li, Li Li, May Daher, Rafet Basar, Katayoun Rezvani, Rui Chen, Ken Chen
Faculty, Staff and Student Publications
Integration of single-cell multiomics profiles generated by different single-cell technologies from the same biological sample is still challenging. Previous approaches based on shared features have only provided approximate solutions. Here, we present a novel mathematical solution named bi-order canonical correlation analysis (bi-CCA), which extends the widely used CCA approach to iteratively align the rows and the columns between data matrices. Bi-CCA is generally applicable to combinations of any two single-cell modalities. Validations using co-assayed ground truth data and application to a CAR-NK study and a fetal muscle atlas demonstrate its capability in generating accurate multimodal co-embeddings and discovering cellular identity.
Postpartum Depression Screening In The Neonatal Intensive Care Unit: Maternal And Provider Perspectives, Candice Triulzi
Postpartum Depression Screening In The Neonatal Intensive Care Unit: Maternal And Provider Perspectives, Candice Triulzi
Dissertations and Theses (Open Access)
Objective: Although mothers of preterm infants are at increased risk for postpartum depression (PPD), PPD screening conducted by neonatal providers in the Neonatal Intensive Care Unit (NICU) is currently not a standard of care. The purpose of this study was to explore maternal and provider perceptions of neonatal providers conducting PPD screening in the NICU.
Design: This study was conducted with a qualitative approach.
Setting: A 24-bed Level III NICU in Houston, TX acted as the study site.
Participants: Participants were purposively sampled (N=31) and included mothers of NICU infants (n=15) and NICU providers (n=16).
Methods: Semi-structured individual and paired …
The Ep300/Tp53 Pathway, A Suppressor Of The Hippo And Canonical Wnt Pathways, Is Activated In Human Hearts With Arrhythmogenic Cardiomyopathy In The Absence Of Overt Heart Failure, Leila Rouhi, Siyang Fan, Sirisha M Cheedipudi, Aitana Braza-Boïls, Maria Sabater Molina, Yan Yao, Matthew J Robertson, Cristian Coarfa, Juan R Gimeno, Pilar Molina, Priyatansh Gurha, Esther Zorio, Ali J Marian
The Ep300/Tp53 Pathway, A Suppressor Of The Hippo And Canonical Wnt Pathways, Is Activated In Human Hearts With Arrhythmogenic Cardiomyopathy In The Absence Of Overt Heart Failure, Leila Rouhi, Siyang Fan, Sirisha M Cheedipudi, Aitana Braza-Boïls, Maria Sabater Molina, Yan Yao, Matthew J Robertson, Cristian Coarfa, Juan R Gimeno, Pilar Molina, Priyatansh Gurha, Esther Zorio, Ali J Marian
Faculty, Staff and Students Publications
AIMS: Arrhythmogenic cardiomyopathy (ACM) is a primary myocardial disease that typically manifests with cardiac arrhythmias, progressive heart failure, and sudden cardiac death (SCD). ACM is mainly caused by mutations in genes encoding desmosome proteins. Desmosomes are cell-cell adhesion structures and hubs for mechanosensing and mechanotransduction. The objective was to identify the dysregulated molecular and biological pathways in human ACM in the absence of overt heart failure.
METHODS AND RESULTS: Transcriptomes in the right ventricular endomyocardial biopsy samples from three independent individuals carrying truncating mutations in the DSP gene and five control samples were analysed by RNA-Seq (discovery group). These cases …
Polygenic Transcriptome Risk Scores For Copd And Lung Function Improve Cross-Ethnic Portability Of Prediction In The Nhlbi Topmed Program, Xiaowei Hu, Dandi Qiao, Wonji Kim, Matthew Moll, Pallavi P Balte, Leslie A Lange, Traci M Bartz, Rajesh Kumar, Xingnan Li, Bing Yu, Brian E Cade, Cecelia A Laurie, Tamar Sofer, Ingo Ruczinski, Deborah A Nickerson, Donna M Muzny, Ginger A Metcalf, Harshavardhan Doddapaneni, Stacy Gabriel, Namrata Gupta, Shannon Dugan-Perez, L Adrienne Cupples, Laura R Loehr, Deepti Jain, Jerome I Rotter, James G Wilson, Bruce M Psaty, Myriam Fornage, Alanna C Morrison, Ramachandran S Vasan, George Washko, Stephen S Rich, George T O'Connor, Eugene Bleecker, Robert C Kaplan, Ravi Kalhan, Susan Redline, Sina A Gharib, Deborah Meyers, Victor Ortega, Josée Dupuis, Stephanie J London, Tuuli Lappalainen, Elizabeth C Oelsner, Edwin K Silverman, R Graham Barr, Timothy A Thornton, Heather E Wheeler, Topmed Lung Working Group, Michael H Cho, Hae Kyung Im, Ani Manichaikul
Polygenic Transcriptome Risk Scores For Copd And Lung Function Improve Cross-Ethnic Portability Of Prediction In The Nhlbi Topmed Program, Xiaowei Hu, Dandi Qiao, Wonji Kim, Matthew Moll, Pallavi P Balte, Leslie A Lange, Traci M Bartz, Rajesh Kumar, Xingnan Li, Bing Yu, Brian E Cade, Cecelia A Laurie, Tamar Sofer, Ingo Ruczinski, Deborah A Nickerson, Donna M Muzny, Ginger A Metcalf, Harshavardhan Doddapaneni, Stacy Gabriel, Namrata Gupta, Shannon Dugan-Perez, L Adrienne Cupples, Laura R Loehr, Deepti Jain, Jerome I Rotter, James G Wilson, Bruce M Psaty, Myriam Fornage, Alanna C Morrison, Ramachandran S Vasan, George Washko, Stephen S Rich, George T O'Connor, Eugene Bleecker, Robert C Kaplan, Ravi Kalhan, Susan Redline, Sina A Gharib, Deborah Meyers, Victor Ortega, Josée Dupuis, Stephanie J London, Tuuli Lappalainen, Elizabeth C Oelsner, Edwin K Silverman, R Graham Barr, Timothy A Thornton, Heather E Wheeler, Topmed Lung Working Group, Michael H Cho, Hae Kyung Im, Ani Manichaikul
Faculty, Staff and Student Publications
While polygenic risk scores (PRSs) enable early identification of genetic risk for chronic obstructive pulmonary disease (COPD), predictive performance is limited when the discovery and target populations are not well matched. Hypothesizing that the biological mechanisms of disease are shared across ancestry groups, we introduce a PrediXcan-derived polygenic transcriptome risk score (PTRS) to improve cross-ethnic portability of risk prediction. We constructed the PTRS using summary statistics from application of PrediXcan on large-scale GWASs of lung function (forced expiratory volume in 1 s [FEV1] and its ratio to forced vital capacity [FEV1/FVC]) in the UK Biobank. We examined prediction performance and …
Novel Fold Of Rotavirus Glycan-Binding Domain Predicted By Alphafold2 And Determined By X-Ray Crystallography, Liya Hu, Wilhelm Salmen, Banumathi Sankaran, Yi Lasanajak, David F Smith, Sue E Crawford, Mary K Estes, B V Venkataram Prasad
Novel Fold Of Rotavirus Glycan-Binding Domain Predicted By Alphafold2 And Determined By X-Ray Crystallography, Liya Hu, Wilhelm Salmen, Banumathi Sankaran, Yi Lasanajak, David F Smith, Sue E Crawford, Mary K Estes, B V Venkataram Prasad
Faculty, Staff and Students Publications
The VP8* domain of spike protein VP4 in group A and C rotaviruses, which cause epidemic gastroenteritis in children, exhibits a conserved galectin-like fold for recognizing glycans during cell entry. In group B rotavirus, which causes significant diarrheal outbreaks in adults, the VP8* domain (VP8*B) surprisingly lacks sequence similarity with VP8* of group A or group C rotavirus. Here, by using the recently developed AlphaFold2 for ab initio structure prediction and validating the predicted model by determining a 1.3-Å crystal structure, we show that VP8*B exhibits a novel fold distinct from the galectin fold. This fold with a β-sheet clasping …
Intraovarian, Isoform-Specific Transcriptional Roles Of Progesterone Receptor In Ovulation, Kirsten M Smith, Doan T Dinh, Lisa K Akison, Matilda Nicholls, Kylie R Dunning, Atsushi Morimoto, John P Lydon, Darryl L Russell, Rebecca L Robker
Intraovarian, Isoform-Specific Transcriptional Roles Of Progesterone Receptor In Ovulation, Kirsten M Smith, Doan T Dinh, Lisa K Akison, Matilda Nicholls, Kylie R Dunning, Atsushi Morimoto, John P Lydon, Darryl L Russell, Rebecca L Robker
Faculty, Staff and Students Publications
Progesterone receptor (PGR) activity is obligatory for mammalian ovulation; however, there is no established direct functional pathway explaining how progesterone receptor completely and specifically regulates oocyte release. This study examined the overarching cell- and isoform-specific effects of the PGR within each cellular compartment of the ovary, using mice null for the PGR (PRKO), as well as isoform-specific null mice. The PGR was expressed in ovarian granulosa and stromal cells and although PRKO ovaries showed no visible histological changes in preovulatory ovarian morphology, follicle rupture did not occur. Reciprocal ovarian transplant experiments established the necessity of ovarian PGR expression for ovulation. …
Elucidating Human Milk Oligosaccharide Biosynthetic Genes Through Network-Based Multi-Omics Integration, Benjamin P Kellman, Anne Richelle, Jeong-Yeh Yang, Digantkumar Chapla, Austin W T Chiang, Julia A Najera, Chenguang Liang, Annalee Fürst, Bokan Bao, Natalia Koga, Mahmoud A Mohammad, Anders Bech Bruntse, Morey W Haymond, Kelley W Moremen, Lars Bode, Nathan E Lewis
Elucidating Human Milk Oligosaccharide Biosynthetic Genes Through Network-Based Multi-Omics Integration, Benjamin P Kellman, Anne Richelle, Jeong-Yeh Yang, Digantkumar Chapla, Austin W T Chiang, Julia A Najera, Chenguang Liang, Annalee Fürst, Bokan Bao, Natalia Koga, Mahmoud A Mohammad, Anders Bech Bruntse, Morey W Haymond, Kelley W Moremen, Lars Bode, Nathan E Lewis
Children’s Nutrition Research Center Staff Publications
Human Milk Oligosaccharides (HMOs) are abundant carbohydrates fundamental to infant health and development. Although these oligosaccharides were discovered more than half a century ago, their biosynthesis in the mammary gland remains largely uncharacterized. Here, we use a systems biology framework that integrates glycan and RNA expression data to construct an HMO biosynthetic network and predict glycosyltransferases involved. To accomplish this, we construct models describing the most likely pathways for the synthesis of the oligosaccharides accounting for >95% of the HMO content in human milk. Through our models, we propose candidate genes for elongation, branching, fucosylation, and sialylation of HMOs. Our …