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Full-Text Articles in Medical Genetics

Novel Immunomodulatory Properties Of Adenosine Analogs Promote Their Antiviral Activity Against Sars-Cov-2, Giulia Monticone, Zhi Huang, Peter Hewins, Thomasina Cook, Oygul Mirzalieva, Brionna King, Kristina Larter, Taylor Miller-Ensminger, Maria D. Sanchez-Pino, Timothy P. Foster, Olga V. Nichols, Alistair J. Ramsay, Samarpan Majumder, Dorota Wyczechowska, Darlene Tauzier, Elizabeth Gravois, Judy S. Crabtree, Jone Garai, Li Li, Jovanny Zabaleta Jzabal@Lsuhsc.Edu, Mallory T. Barbier, Luis Del Valle, Kellie A. Jurado, Lucio Miele Jul 2024

Novel Immunomodulatory Properties Of Adenosine Analogs Promote Their Antiviral Activity Against Sars-Cov-2, Giulia Monticone, Zhi Huang, Peter Hewins, Thomasina Cook, Oygul Mirzalieva, Brionna King, Kristina Larter, Taylor Miller-Ensminger, Maria D. Sanchez-Pino, Timothy P. Foster, Olga V. Nichols, Alistair J. Ramsay, Samarpan Majumder, Dorota Wyczechowska, Darlene Tauzier, Elizabeth Gravois, Judy S. Crabtree, Jone Garai, Li Li, Jovanny Zabaleta Jzabal@Lsuhsc.Edu, Mallory T. Barbier, Luis Del Valle, Kellie A. Jurado, Lucio Miele

School of Medicine Faculty Publications

The COVID-19 pandemic reminded us of the urgent need for new antivirals to control emerging infectious diseases and potential future pandemics. Immunotherapy has revolutionized oncology and could complement the use of antivirals, but its application to infectious diseases remains largely unexplored. Nucleoside analogs are a class of agents widely used as antiviral and anti-neoplastic drugs. Their antiviral activity is generally based on interference with viral nucleic acid replication or transcription. Based on our previous work and computer modeling, we hypothesize that antiviral adenosine analogs, like remdesivir, have previously unrecognized immunomodulatory properties which contribute to their therapeutic activity. In the case …


A Bioinformatic Analysis Of T-Cell Epitope Diversity In Sars-Cov-2 Variants: Association With Covid-19 Clinical Severity In The United States Population, Grace J. Kim, Jacob H. Elnaggar, Mallory Varnado, Amy K. Feehan, Darlene Tauzier, Rebecca Rose, Susanna L. Lamers, Maya Sevalia, Najah Nicholas, Elizabeth Gravois, Daniel Fort, Judy S. Crabtree, Lucio Miele May 2024

A Bioinformatic Analysis Of T-Cell Epitope Diversity In Sars-Cov-2 Variants: Association With Covid-19 Clinical Severity In The United States Population, Grace J. Kim, Jacob H. Elnaggar, Mallory Varnado, Amy K. Feehan, Darlene Tauzier, Rebecca Rose, Susanna L. Lamers, Maya Sevalia, Najah Nicholas, Elizabeth Gravois, Daniel Fort, Judy S. Crabtree, Lucio Miele

School of Graduate Studies Faculty Publications

Long-term immunity against severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) requires the identification of T-cell epitopes affecting host immunogenicity. In this computational study, we explored the CD8+ epitope diversity estimated in 27 of the most common HLA-A and HLA-B alleles, representing most of the United States population. Analysis of 16 SARS-CoV-2 variants [B.1, Alpha (B.1.1.7), five Delta (AY.100, AY.25, AY.3, AY.3.1, AY.44), and nine Omicron (BA.1, BA.1.1, BA.2, BA.4, BA.5, BQ.1, BQ.1.1, XBB.1, XBB.1.5)] in analyzed MHC class I alleles revealed that SARS-CoV-2 CD8+ epitope conservation was estimated at 87.6%–96.5% in spike (S), 92.5%–99.6% in membrane (M), and 94.6%–99% in …


Lung Cancer In Ever- And Never-Smokers: Findings From Multi-Population Gwas Studies, Yafang Li, Xiangjun Xiao, Jianrong Li, Younghun Han, Chao Cheng, Gail F. Fernandes, Shannon E. Slewitzke, Susan M. Rosenberg, Meng Zhu, Jinyoung Byun, Yohan Bossé, James D. Mckay, Demetrios Albanes, Stephan Lam, Adonina Tardon, Chu Chen, Stig E. Bojesen, Maria T. Landi, Mattias Johansson, Angela Risch, Heike Bickeböller, H-Erich Wichmann, David C. Christiani, Gad Rennert, Susanne M. Arnold, Gary E. Goodman, John K. Field, Diptasri Mandal, Et Al Jan 2024

Lung Cancer In Ever- And Never-Smokers: Findings From Multi-Population Gwas Studies, Yafang Li, Xiangjun Xiao, Jianrong Li, Younghun Han, Chao Cheng, Gail F. Fernandes, Shannon E. Slewitzke, Susan M. Rosenberg, Meng Zhu, Jinyoung Byun, Yohan Bossé, James D. Mckay, Demetrios Albanes, Stephan Lam, Adonina Tardon, Chu Chen, Stig E. Bojesen, Maria T. Landi, Mattias Johansson, Angela Risch, Heike Bickeböller, H-Erich Wichmann, David C. Christiani, Gad Rennert, Susanne M. Arnold, Gary E. Goodman, John K. Field, Diptasri Mandal, Et Al

School of Graduate Studies Faculty Publications

BACKGROUND: Clinical, molecular, and genetic epidemiology studies displayed remarkable differences between ever- and never-smoking lung cancer. METHODS: We conducted a stratified multi-population (European, East Asian, and African descent) association study on 44,823 ever-smokers and 20,074 never-smokers to identify novel variants that were missed in the non-stratified analysis. Functional analysis including eQTL colocalization and DNA damage assays, and annotation studies were conducted to evaluate the functional roles of the variants. We further evaluated the impact of smoking quantity on lung cancer risk for the variants associated with ever-smoking lung cancer. RESULTS: Five novel independent loci, GABRA4, inter-genic region 12q24.33, LRRC4C, LINC01088, …


31-Gene Expression Profile Testing In Cutaneous Melanoma And Survival Outcomes In A Population-Based Analysis: A Seer Collaboration, Christine N. Bailey, Brian J. Martin, Valentina I. Petkov, Nicola C. Schussler, Jennifer L. Stevens, Suzanne Bentler, Rosemary D. Cress, Jennifer A. Doherty, Eric B. Durbin, Scarlett L. Gomez, Lou Gonsalves, Brenda Y. Hernandez, Lihua Liu, Bozena M. Morawski, Maria J. Schymura, Stephen M. Schwartz, Kevin C. Ward, Charles Wiggins, Xiao-Cheng Wu, Matthew S. Goldberg, Jennifer J. Siegel, Robert W. Cook, Kyle R. Covington, Sarah J. Kurley Jun 2023

31-Gene Expression Profile Testing In Cutaneous Melanoma And Survival Outcomes In A Population-Based Analysis: A Seer Collaboration, Christine N. Bailey, Brian J. Martin, Valentina I. Petkov, Nicola C. Schussler, Jennifer L. Stevens, Suzanne Bentler, Rosemary D. Cress, Jennifer A. Doherty, Eric B. Durbin, Scarlett L. Gomez, Lou Gonsalves, Brenda Y. Hernandez, Lihua Liu, Bozena M. Morawski, Maria J. Schymura, Stephen M. Schwartz, Kevin C. Ward, Charles Wiggins, Xiao-Cheng Wu, Matthew S. Goldberg, Jennifer J. Siegel, Robert W. Cook, Kyle R. Covington, Sarah J. Kurley

School of Public Health Faculty Publications

PURPOSE: The DecisionDx-Melanoma 31-gene expression profile (31-GEP) test is validated to classify cutaneous malignant melanoma (CM) patient risk of recurrence, metastasis, or death as low (class 1A), intermediate (class 1B/2A), or high (class 2B). This study aimed to examine the effect of 31-GEP testing on survival outcomes and confirm the prognostic ability of the 31-GEP at the population level. METHODS: Patients with stage I-III CM with a clinical 31-GEP result between 2016 and 2018 were linked to data from 17 SEER registries (n = 4,687) following registries' operation procedures for linkages. Melanoma-specific survival (MSS) and overall survival (OS) differences by …


Intratumoral Translocation Positive Heterogeneity In Pediatric Alveolar Rhabdomyosarcoma Tumors Correlates To Patient Survival Prognosis, Katrina Gleditsch, Jorge Peñas, Danielle Mercer, Ayesha Umrigar, James Briscoe, Matthew Stark, Fern Tsien, Andrew D. Hollenbach Sep 2020

Intratumoral Translocation Positive Heterogeneity In Pediatric Alveolar Rhabdomyosarcoma Tumors Correlates To Patient Survival Prognosis, Katrina Gleditsch, Jorge Peñas, Danielle Mercer, Ayesha Umrigar, James Briscoe, Matthew Stark, Fern Tsien, Andrew D. Hollenbach

School of Medicine Faculty Publications

Alveolar rhabdomyosarcoma (ARMS) is characterized by one of three translocation states: t(2;13) (q35;q14) producing PAX3-FOXO1, t(1;13) (p36;q14) producing PAX7-FOXO1, or translocation-negative. Tumors with t(2;13) are associated with greater disease severity and mortality than t(1;13) positive or translocation negative patients. Consistent with this fact, previous work concluded that a molecular analysis of RMS translocation status is essential for the accurate determination of prognosis and diagnosis. However, despite this knowledge, most diagnoses rely on histology and in some cases utilize fluorescence in situ hybridization (FISH) probes unable to differentiate between translocation products. Along these same lines, diagnostic RT-PCR analysis, which can differentiate …


Leptin Produced By Obesity-Altered Adipose Stem Cells Promotes Metastasis But Not Tumorigenesis Of Triple-Negative Breast Cancer In Orthotopic Xenograft And Patient-Derived Xenograft Models, Rachel A. Sabol, Annie C. Bowles, Alex Côté, Rachel Wise, Benjamen O'Donnell, Margarite D. Matossian, Fokhrul M. Hossain, Hope E. Burks, Luis Del Valle, Lucio Miele, Bridgette M. Collins-Burow, Matthew E. Burow, Bruce A. Bunnell May 2019

Leptin Produced By Obesity-Altered Adipose Stem Cells Promotes Metastasis But Not Tumorigenesis Of Triple-Negative Breast Cancer In Orthotopic Xenograft And Patient-Derived Xenograft Models, Rachel A. Sabol, Annie C. Bowles, Alex Côté, Rachel Wise, Benjamen O'Donnell, Margarite D. Matossian, Fokhrul M. Hossain, Hope E. Burks, Luis Del Valle, Lucio Miele, Bridgette M. Collins-Burow, Matthew E. Burow, Bruce A. Bunnell

School of Medicine Faculty Publications

BACKGROUND: Breast cancer is the second leading cause of cancer deaths in the USA. Triple-negative breast cancer (TNBC) is a clinically aggressive subtype of breast cancer with high rates of metastasis, tumor recurrence, and resistance to therapeutics. Obesity, defined by a high body mass index (BMI), is an established risk factor for breast cancer. Women with a high BMI have increased incidence and mortality of breast cancer; however, the mechanisms(s) by which obesity promotes tumor progression are not well understood. METHODS: In this study, obesity-altered adipose stem cells (obASCs) were used to evaluate obesity-mediated effects of TNBC. Both in vitro …


Notch Signaling Regulates Mitochondrial Metabolism And Nf-Κb Activity In Triple-Negative Breast Cancer Cells Via Ikkα-Dependent Non-Canonical Pathways, Fokhrul Hossain, Claudia Sorrentino, Deniz A. Ucar, Yin Peng, Margarite Matossian, Dorota Wyczechowska, Judy Crabtree, Jovanny Zabaleta, Silvana Morello, Luis Del Valle, Matthew Burow, Bridgette Collins-Burow, Antonio Pannuti, Lisa M. Minter, Todd E. Golde, Barbara A. Osborne, Lucio Miele Dec 2018

Notch Signaling Regulates Mitochondrial Metabolism And Nf-Κb Activity In Triple-Negative Breast Cancer Cells Via Ikkα-Dependent Non-Canonical Pathways, Fokhrul Hossain, Claudia Sorrentino, Deniz A. Ucar, Yin Peng, Margarite Matossian, Dorota Wyczechowska, Judy Crabtree, Jovanny Zabaleta, Silvana Morello, Luis Del Valle, Matthew Burow, Bridgette Collins-Burow, Antonio Pannuti, Lisa M. Minter, Todd E. Golde, Barbara A. Osborne, Lucio Miele

School of Medicine Faculty Publications

Triple negative breast cancer (TNBC) patients have high risk of recurrence and metastasis, and current treatment options remain limited. Cancer stem-like cells (CSCs) have been linked to cancer initiation, progression and chemotherapy resistance. Notch signaling is a key pathway regulating TNBC CSC survival. Treatment of TNBC with PI3K or mTORC1/2 inhibitors results in drug-resistant, Notch-dependent CSC. However, downstream mechanisms and potentially druggable Notch effectors in TNBC CSCs are largely unknown. We studied the role of the AKT pathway and mitochondrial metabolism downstream of Notch signaling in TNBC CSC from cell lines representative of different TNBC molecular subtypes as well as …