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Articles 6031 - 6060 of 7026

Full-Text Articles in Medicine and Health Sciences

Clinical Implications Of Combinatorial Pharmacogenomic Tests Based On Cytochrome P450 Variant Selection, Michael R. Sayer, Ashley Duche, Trang Jenny Tran Nguyen, Michelle Le, Kunj Patel, Jacqueline Vu, Danny Pham, Brianne Vernick, Richard Beuttler, Don Roosan, Moom R. Roosan Sep 2021

Clinical Implications Of Combinatorial Pharmacogenomic Tests Based On Cytochrome P450 Variant Selection, Michael R. Sayer, Ashley Duche, Trang Jenny Tran Nguyen, Michelle Le, Kunj Patel, Jacqueline Vu, Danny Pham, Brianne Vernick, Richard Beuttler, Don Roosan, Moom R. Roosan

Pharmacy Faculty Articles and Research

Despite the potential to improve patient outcomes, the application of pharmacogenomics (PGx) is yet to be routine. A growing number of PGx implementers are leaning toward using combinatorial PGx (CPGx) tests (i.e., multigene tests) that are reusable over patients’ lifetimes. However, selecting a single best available CPGx test is challenging owing to many patient- and population-specific factors, including variant frequency differences across ethnic groups. The primary objective of this study was to evaluate the detection rate of currently available CPGx tests based on the cytochrome P450 (CYP) gene variants they target. The detection rate was defined as the percentage of …


Supercoiling And Looping Promote Dna Base Accessibility And Coordination Among Distant Sites, Jonathan M Fogg, Allison K Judge, Erik Stricker, Hilda L Chan, Lynn Zechiedrich Sep 2021

Supercoiling And Looping Promote Dna Base Accessibility And Coordination Among Distant Sites, Jonathan M Fogg, Allison K Judge, Erik Stricker, Hilda L Chan, Lynn Zechiedrich

Faculty, Staff and Students Publications

DNA in cells is supercoiled and constrained into loops and this supercoiling and looping influence every aspect of DNA activity. We show here that negative supercoiling transmits mechanical stress along the DNA backbone to disrupt base pairing at specific distant sites. Cooperativity among distant sites localizes certain sequences to superhelical apices. Base pair disruption allows sharp bending at superhelical apices, which facilitates DNA writhing to relieve torsional strain. The coupling of these processes may help prevent extensive denaturation associated with genomic instability. Our results provide a model for how DNA can form short loops, which are required for many essential …


Discovery Of Potent Bet Bromodomain 1 Stereoselective Inhibitors Using Dna-Encoded Chemical Library Selections, Rajesh Sharma, Kyoung-Jae Choi, My Diem Quan, Sonum Sharma, Banumathi Sankaran, Hyekyung Park, Anel Lagrone, Jean J Kim, Kevin R Mackenzie, Allan Chris M Ferreon, Choel Kim, Josephine C Ferreon Sep 2021

Discovery Of Potent Bet Bromodomain 1 Stereoselective Inhibitors Using Dna-Encoded Chemical Library Selections, Rajesh Sharma, Kyoung-Jae Choi, My Diem Quan, Sonum Sharma, Banumathi Sankaran, Hyekyung Park, Anel Lagrone, Jean J Kim, Kevin R Mackenzie, Allan Chris M Ferreon, Choel Kim, Josephine C Ferreon

Faculty, Staff and Students Publications

Expression of a few master transcription factors can reprogram the epigenetic landscape and three-dimensional chromatin topology of differentiated cells and achieve pluripotency. During reprogramming, thousands of long-range chromatin contacts are altered, and changes in promoter association with enhancers dramatically influence transcription. Molecular participants at these sites have been identified, but how this re-organization might be orchestrated is not known. Biomolecular condensation is implicated in subcellular organization, including the recruitment of RNA polymerase in transcriptional activation. Here, we show that reprogramming factor KLF4 undergoes biomolecular condensation even in the absence of its intrinsically disordered region. Liquid-liquid condensation of the isolated KLF4 …


Determining Effective Drug Concentrations For Selection And Counterselection Genetics In Drosophila Melanogaster, Nick Matinyan, Yezabel Gonzalez, Herman A Dierick, Koen J T Venken Sep 2021

Determining Effective Drug Concentrations For Selection And Counterselection Genetics In Drosophila Melanogaster, Nick Matinyan, Yezabel Gonzalez, Herman A Dierick, Koen J T Venken

Faculty, Staff and Students Publications

We recently integrated into fly genetics a set of four selection and two counterselection markers and their corresponding drugs that can be used individually or in combination. These markers eliminate the need to visually screen progeny. Before using these markers in new genetic backgrounds, effective selection/counterselection concentrations should be established for each marker/drug combination. This protocol describes how to set up, perform, and analyze a drug titration curve to determine the effective selection/counterselection drug concentrations for their corresponding markers. For complete details on the use and execution of this protocol, please refer to Matinyan et al., 2021.


Identification Of Micrornas And Gene Regulatory Networks In Cleft Lip Common In Humans And Mice, Hiroki Yoshioka, Aimin Li, Akiko Suzuki, Sai Shankar Ramakrishnan, Zhongming Zhao, Junichi Iwata Sep 2021

Identification Of Micrornas And Gene Regulatory Networks In Cleft Lip Common In Humans And Mice, Hiroki Yoshioka, Aimin Li, Akiko Suzuki, Sai Shankar Ramakrishnan, Zhongming Zhao, Junichi Iwata

Faculty, Staff and Student Publications

The etiology of cleft lip with/without cleft palate (CL/P), one of the most frequent craniofacial birth defects worldwide, is complicated by contributions of both genetic and environmental factors. Understanding the etiology of these conditions is essential for developing preventive strategies. This study thus aims to identify regulatory networks of microRNAs (miRNAs), transcriptional factors (TFs) and non-TF genes associated with cleft lip (CL) that are conserved in humans and mice. Notably, we found that miR-27b, miR-133b, miR-205, miR-376b and miR-376c were involved in the regulation of CL-associated gene expression in both humans and mice. Among the candidate miRNAs, the overexpression of …


Multiplexed Drug-Based Selection And Counterselection Genetic Manipulations In Drosophila, Nick Matinyan, Mansi S Karkhanis, Yezabel Gonzalez, Antrix Jain, Alexander Saltzman, Anna Malovannaya, Alejandro Sarrion-Perdigones, Herman A Dierick, Koen J T Venken Sep 2021

Multiplexed Drug-Based Selection And Counterselection Genetic Manipulations In Drosophila, Nick Matinyan, Mansi S Karkhanis, Yezabel Gonzalez, Antrix Jain, Alexander Saltzman, Anna Malovannaya, Alejandro Sarrion-Perdigones, Herman A Dierick, Koen J T Venken

Faculty, Staff and Students Publications

The power of Drosophila melanogaster as a model system relies on tractable germline genetic manipulations. Despite Drosophila's expansive genetics toolbox, such manipulations are still accomplished one change at a time and depend predominantly on phenotypic screening. We describe a drug-based genetic platform consisting of four selection and two counterselection markers, eliminating the need to screen for modified progeny. These markers work reliably individually or in combination to produce specific genetic outcomes. We demonstrate three example applications of multiplexed drug-based genetics by generating (1) transgenic animals, expressing both components of binary overexpression systems in a single transgenesis step; (2) dual selectable …


Ankyrin-Dependent Na+ Channel Clustering Prevents Neuromuscular Synapse Fatigue, Chuansheng Zhang, Abhijeet Joshi, Yanhong Liu, Ozlem Sert, Seth G Haddix, Lindsay H Teliska, Anne Rasband, George G Rodney, Matthew N Rasband Sep 2021

Ankyrin-Dependent Na+ Channel Clustering Prevents Neuromuscular Synapse Fatigue, Chuansheng Zhang, Abhijeet Joshi, Yanhong Liu, Ozlem Sert, Seth G Haddix, Lindsay H Teliska, Anne Rasband, George G Rodney, Matthew N Rasband

Faculty, Staff and Students Publications

Skeletal muscle contraction depends on activation of clustered acetylcholine receptors (AchRs) and muscle-specific Na+ channels (Nav1.4). Some Nav1.4 channels are highly enriched at the neuromuscular junction (NMJ) and their clustering is thought to be essential for effective muscle excitation. However, this has not been experimentally tested, and how NMJ Na+ channels are clustered is unknown. Here, using muscle-specific AnkyrinR, AnkyrinB, and AnkyrinG single, double, and triple-conditional knockout mice we show that Nav1.4 channels fail to cluster only after deletion of all three ankyrins. Remarkably, ankyrin-deficient muscles have normal NMJ morphology, AchR clustering, sarcolemmal levels of Nav1.4, and muscle force, and …


Invariant Natural Killer T-Cell Subsets Have Diverse Graft-Versus-Host-Disease-Preventing And Antitumor Effects, Kristina Maas-Bauer, Juliane K Lohmeyer, Toshihito Hirai, Teresa Lopes Ramos, Furqan M Fazal, Ulrike M Litzenburger, Kathryn E Yost, Jessica V Ribado, Neeraja Kambham, Arielle S Wenokur, Po-Yu Lin, Maite Alvarez, Melissa Mavers, Jeanette Baker, Ami S Bhatt, Howard Y Chang, Federico Simonetta, Robert S Negrin Sep 2021

Invariant Natural Killer T-Cell Subsets Have Diverse Graft-Versus-Host-Disease-Preventing And Antitumor Effects, Kristina Maas-Bauer, Juliane K Lohmeyer, Toshihito Hirai, Teresa Lopes Ramos, Furqan M Fazal, Ulrike M Litzenburger, Kathryn E Yost, Jessica V Ribado, Neeraja Kambham, Arielle S Wenokur, Po-Yu Lin, Maite Alvarez, Melissa Mavers, Jeanette Baker, Ami S Bhatt, Howard Y Chang, Federico Simonetta, Robert S Negrin

Faculty, Staff and Students Publications

Invariant natural killer T (iNKT) cells are a T-cell subset with potent immunomodulatory properties. Experimental evidence in mice and observational studies in humans indicate that iNKT cells have antitumor potential as well as the ability to suppress acute and chronic graft-versus-host-disease (GVHD). Murine iNKT cells differentiate during thymic development into iNKT1, iNKT2, and iNKT17 sublineages, which differ transcriptomically and epigenomically and have subset-specific developmental requirements. Whether distinct iNKT sublineages also differ in their antitumor effect and their ability to suppress GVHD is currently unknown. In this work, we generated highly purified murine iNKT sublineages, characterized their transcriptomic and epigenomic landscape, …


The Concurrence Of Dna Methylation And Demethylation Is Associated With Transcription Regulation, Jiejun Shi, Jianfeng Xu, Yiling Elaine Chen, Jason Sheng Li, Ya Cui, Lanlan Shen, Jingyi Jessica Li, Wei Li Sep 2021

The Concurrence Of Dna Methylation And Demethylation Is Associated With Transcription Regulation, Jiejun Shi, Jianfeng Xu, Yiling Elaine Chen, Jason Sheng Li, Ya Cui, Lanlan Shen, Jingyi Jessica Li, Wei Li

Children’s Nutrition Research Center Staff Publications

The mammalian DNA methylome is formed by two antagonizing processes, methylation by DNA methyltransferases (DNMT) and demethylation by ten-eleven translocation (TET) dioxygenases. Although the dynamics of either methylation or demethylation have been intensively studied in the past decade, the direct effects of their interaction on gene expression remain elusive. Here, we quantify the concurrence of DNA methylation and demethylation by the percentage of unmethylated CpGs within a partially methylated read from bisulfite sequencing. After verifying 'methylation concurrence' by its strong association with the co-localization of DNMT and TET enzymes, we observe that methylation concurrence is strongly correlated with gene expression. …


Primary Ciliary Dyskinesia: Ancestral Haplotypes Analysis Of The Rsph4a Founder Mutation In Puerto Rico, Wilfredo De Jesús-Rojas, Dalilah Reyes De Jesús, Angélica M Nieves, Ricardo A Mosquera, Juan C Martinez-Cruzado Sep 2021

Primary Ciliary Dyskinesia: Ancestral Haplotypes Analysis Of The Rsph4a Founder Mutation In Puerto Rico, Wilfredo De Jesús-Rojas, Dalilah Reyes De Jesús, Angélica M Nieves, Ricardo A Mosquera, Juan C Martinez-Cruzado

Faculty, Staff and Student Publications

Genetic mutations in >50 genes, including RSPH4A, can lead to primary ciliary dyskinesia (PCD). RSPH4A mutations affect radial spokes, which alter the configuration of the ciliary ultrastructure and lead to chronic oto-sinopulmonary disease. The RSPH4A [c.921+3_6delAAGT] founder mutation was described as one cause of PCD without laterality defects in Puerto Rico. The average Puerto Rican genetic composition includes 64% European, 21% African ancestral, and 15% Native-American or Taino, a native tribe in the Caribbean at the start of the European colonization, genes. Due to the relatively elevated Taino ancestry on the island, it might have contributed to the endemicity of …


Genetic Testing Reveals Germline Mutations Among Patients Undergoing Surgery For Colorectal Carcinoma In A Community Hospital Setting, Alex R. Jones, Dana Greer Rn, Bsn, Ocn, Karin L. Cole Md Aug 2021

Genetic Testing Reveals Germline Mutations Among Patients Undergoing Surgery For Colorectal Carcinoma In A Community Hospital Setting, Alex R. Jones, Dana Greer Rn, Bsn, Ocn, Karin L. Cole Md

Journal of Maine Medical Center

Introduction: Defined germline mutations contribute to 5% to 10% of cases of colorectal carcinoma (CRC). While protocols for universal tumor screening have been adopted to detect mismatch repair (MMR) protein deficiency, widespread multigene panel testing has not been achieved. Barriers to implementing testing protocols may occur in community settings.

Methods: A total of 160 patients presenting for surgical management of CRC between 2011 and 2020 were considered for retrospective analysis in a single-surgeon, single-institution, community-based cohort. The rate of multigene panel testing and prevalence of germline mutations were calculated, and patient characteristics were assessed.

Results: A total of 32/160 (20%) …


Exosomes From Adipose-Derived Stem Cells Alleviate Myocardial Infarction Via Microrna-31/Fih1/Hif-1Α Pathway, Dihan Zhu, Yang Wang, Miracle Thomas, Keasiah Mclaughlin, Babayewa Oguljahan, Joshua Henderson, Qinglin Yang, Y Eugene Chen, Dong Liu Aug 2021

Exosomes From Adipose-Derived Stem Cells Alleviate Myocardial Infarction Via Microrna-31/Fih1/Hif-1Α Pathway, Dihan Zhu, Yang Wang, Miracle Thomas, Keasiah Mclaughlin, Babayewa Oguljahan, Joshua Henderson, Qinglin Yang, Y Eugene Chen, Dong Liu

School of Graduate Studies Faculty Publications

Our previous study has revealed that exosomes from adipose-derived stem cells (ASCs) promote angiogenesis in subcutaneously transplanted gels by delivery of microRNA-31 (miR-31) which targets factor inhibiting hypoxia-inducible factor-1 (FIH1) in recipient cells. Here we hypothesized that ASC exosomes alleviate ischemic diseases through miR-31/FIH1/hypoxia-inducible factor-1α (HIF-1α) signaling pathway. Exosomes from ASCs were characterized with nanoparticle tracking analysis, transmission electron microscopy, and immunoblotting analysis for exosomal markers. Results from immunoblotting and laser imaging of ischemic mouse hindlimb revealed that miR-31 enriched ASC exosomes inhibited FIH1 expression and enhanced the blood perfusion, respectively. These effects were impaired when using miR-31-depleted exosomes. Immunohistochemistry …


The Influence Of Tas2r38 Bitter Taste Gene Polymorphisms On Obesity Risk In Three Racially Diverse Groups, Chaowanee Chupeerach, Pradtana Tapanee, Nattira On-Nom, Piya Temviriyanukul, Boonrat Chantong, Nicole Reeder, Grace A. Adegoye, Terezie Tolar-Peterson Aug 2021

The Influence Of Tas2r38 Bitter Taste Gene Polymorphisms On Obesity Risk In Three Racially Diverse Groups, Chaowanee Chupeerach, Pradtana Tapanee, Nattira On-Nom, Piya Temviriyanukul, Boonrat Chantong, Nicole Reeder, Grace A. Adegoye, Terezie Tolar-Peterson

BioMedicine

Objectives: Bitter taste perception affects food preference, eating behavior, and nutrient intake. The purpose of this study was to investigate the contribution of bitter taste gene polymorphisms to body fatness as measured by percentage of body fat.

Method: Three common single nucleotide polymorphisms (SNPs) of the TAS2R38 gene which result in amino acid changes in the protein (A49P, V262A, and I296V), were studied in three racially diverse groups: European Americans n=313, African Americans n=109, and Asians n=234.

Results: The allele frequencies of the three SNPs were similar to previous studies. The rare haplotypes, AAI and AAV, were found in high …


Gene Expression Profiling Of Mapk Pathway Inhibitor Resistance In Cutaneous Melanoma: Can Bioinformatics Be Used To Select Better Melanoma Cell Lines?, Stephen Luebker Aug 2021

Gene Expression Profiling Of Mapk Pathway Inhibitor Resistance In Cutaneous Melanoma: Can Bioinformatics Be Used To Select Better Melanoma Cell Lines?, Stephen Luebker

Theses & Dissertations

Melanoma is the deadliest form of skin cancer, and incidence has continued to increase. Half of all melanomas have a BRAF V600E mutation and respond to MAPK pathway inhibitors, including BRAF inhibitor therapy or BRAF/MEK inhibitor combination therapy, but nearly all patients develop treatment resistance. Melanoma cell lines produce variable results as models of MAPK pathway inhibitor resistance. To better understand how the genomic similarity of a melanoma cell line to patient-derived tumors affects resistance mechanisms, differences in DNA mutations and copy-number alterations were compared between melanoma cell lines profiled by the Cancer Cell Line Encyclopedia and cutaneous melanoma tumors …


Vascular Disease Pathogenesis In Smooth Muscle Dysfunction Syndrome And Majewski Osteodysplastic Primordial Dwarfism Type Ii, Jamie Wright Aug 2021

Vascular Disease Pathogenesis In Smooth Muscle Dysfunction Syndrome And Majewski Osteodysplastic Primordial Dwarfism Type Ii, Jamie Wright

Dissertations and Theses (Open Access)

Vascular diseases are a leading cause of morbidity and mortality world-wide. Understanding their pathogenesis is crucial to better diagnosis and management of these life-threatening conditions. Through the study of rare mutations that lead to early onset and severe vascular diseases, we can elucidate underlying mechanisms for vascular disease pathogenesis and develop better treatments to prevent and manage more common causes of vascular diseases. In this study we look at two rare diseases that lead to severe vascular phenotypes, Smooth Muscle Dysfunction Syndrome (SMDS) and Majewski Osteodysplastic Primordial Dwarfism Type II (MOPDII). SMDS is a rare condition due to pathogenic variants …


The Design And Rationale Of A Multicenter Real-World Trial: The Southeastern Collaboration To Improve Blood Pressure Control In The Us Black Belt – Addressing The Triple Threat, Tina O Findley, Hope Northrup Aug 2021

The Design And Rationale Of A Multicenter Real-World Trial: The Southeastern Collaboration To Improve Blood Pressure Control In The Us Black Belt – Addressing The Triple Threat, Tina O Findley, Hope Northrup

Faculty, Staff and Student Publications

The incidence of congenital heart defect (CHD) has increased over the past fifty years, partly attributed to routine fetal anatomical examination by sonography during obstetric care and improvements in ultrasound technology and technique. Fetal findings on ultrasound in addition to maternal biomarkers are the backbone of first- and second-trimester screening for common genetic conditions, namely aneuploidy. Since the introduction of non-invasive prenatal testing (NIPT) using next-generation sequencing to sequence cell-free fetal DNA, the detection rate of common trisomies as well as sex chromosomal aneuploidies have markedly increased. As the use of NIPT continues to broaden, the best means of incorporating …


Transcriptional Milestones In Dictyostelium Development, Mariko Katoh-Kurasawa, Karin Hrovatin, Shigenori Hirose, Amanda Webb, Hsing-I Ho, Blaž Zupan, Gad Shaulsky Aug 2021

Transcriptional Milestones In Dictyostelium Development, Mariko Katoh-Kurasawa, Karin Hrovatin, Shigenori Hirose, Amanda Webb, Hsing-I Ho, Blaž Zupan, Gad Shaulsky

Faculty, Staff and Students Publications

Dictyostelium development begins with single-cell starvation and ends with multicellular fruiting bodies. Developmental morphogenesis is accompanied by sweeping transcriptional changes, encompassing nearly half of the 13,000 genes in the genome. We performed time-series RNA-sequencing analyses of the wild type and 20 mutants to explore the relationships between transcription and morphogenesis. These strains show developmental arrest at different stages, accelerated development, or atypical morphologies. Considering eight major morphological transitions, we identified 1371 milestone genes whose expression changes sharply between consecutive transitions. We also identified 1099 genes as members of 21 regulons, which are groups of genes that remain coordinately regulated despite …


Rnase Κ Promotes Robust Pirna Production By Generating 2',3'-Cyclic Phosphate-Containing Precursors, Megumi Shigematsu, Takuya Kawamura, Keisuke Morichika, Natsuko Izumi, Takashi Kiuchi, Shozo Honda, Venetia Pliatsika, Ryuma Matsubara, Isidore Rigoutsos, Susumu Katsuma, Yukihide Tomari, Yohei Kirino Jul 2021

Rnase Κ Promotes Robust Pirna Production By Generating 2',3'-Cyclic Phosphate-Containing Precursors, Megumi Shigematsu, Takuya Kawamura, Keisuke Morichika, Natsuko Izumi, Takashi Kiuchi, Shozo Honda, Venetia Pliatsika, Ryuma Matsubara, Isidore Rigoutsos, Susumu Katsuma, Yukihide Tomari, Yohei Kirino

Computational Medicine Center Faculty Papers

In animal germlines, PIWI proteins and the associated PIWI-interacting RNAs (piRNAs) protect genome integrity by silencing transposons. Here we report the extensive sequence and quantitative correlations between 2′,3′-cyclic phosphate-containing RNAs (cP-RNAs), identified using cP-RNA-seq, and piRNAs in the Bombyx germ cell line and mouse testes. The cP-RNAs containing 5′-phosphate (P-cP-RNAs) identified by P-cP-RNA-seq harbor highly consistent 5′-end positions as the piRNAs and are loaded onto PIWI protein, suggesting their direct utilization as piRNA precursors. We identified Bombyx RNase Kappa (BmRNase κ) as a mitochondria-associated endoribonuclease which produces cP-RNAs during piRNA biogenesis. BmRNase κ-depletion elevated transposon levels and disrupted a piRNA-mediated …


Cyclic Amp Is Dispensable For Allorecognition In Dictyostelium Cells Overexpressing Pka-C, Shigenori Hirose, Mariko Katoh-Kurasawa, Gad Shaulsky Jul 2021

Cyclic Amp Is Dispensable For Allorecognition In Dictyostelium Cells Overexpressing Pka-C, Shigenori Hirose, Mariko Katoh-Kurasawa, Gad Shaulsky

Faculty, Staff and Students Publications

Allorecognition and tissue formation are interconnected processes that require signaling between matching pairs of the polymorphic transmembrane proteins TgrB1 and TgrC1 in Dictyostelium. Extracellular and intracellular cAMP signaling are essential to many developmental processes. The three adenylate cyclase genes, acaA, acrA and acgA are required for aggregation, culmination and spore dormancy, respectively, and some of their functions can be suppressed by activation of the cAMP-dependent protein kinase PKA. Previous studies have suggested that cAMP signaling might be dispensable for allorecognition and tissue formation, while others have argued that it is essential throughout development. Here, we show that allorecognition and tissue …


Phase 1 Study Of Safety, Tolerability And Immunogenicity Of The Human Telomerase (Htert)-Encoded Dna Plasmids Ino-1400 And Ino-1401 With Or Without Il-12 Dna Plasmid Ino-9012 In Adult Patients With Solid Tumors, Robert H Vonderheide, Kimberly A Kraynyak, Anthony F Shields, Autumn J Mcree, Jennifer Johnson, Weijing Sun, Ashish V Chintakuntlawar, Jan Pawlicki, Albert J Sylvester, Trevor Mcmullan, Robert Samuels, Joseph J Kim, David Weiner, Jean D Boyer, Matthew P Morrow, Laurent Humeau, Jeffrey M Skolnik Jul 2021

Phase 1 Study Of Safety, Tolerability And Immunogenicity Of The Human Telomerase (Htert)-Encoded Dna Plasmids Ino-1400 And Ino-1401 With Or Without Il-12 Dna Plasmid Ino-9012 In Adult Patients With Solid Tumors, Robert H Vonderheide, Kimberly A Kraynyak, Anthony F Shields, Autumn J Mcree, Jennifer Johnson, Weijing Sun, Ashish V Chintakuntlawar, Jan Pawlicki, Albert J Sylvester, Trevor Mcmullan, Robert Samuels, Joseph J Kim, David Weiner, Jean D Boyer, Matthew P Morrow, Laurent Humeau, Jeffrey M Skolnik

Department of Medical Oncology Faculty Papers

BACKGROUND: Human telomerase reverse transcriptase (hTERT) is frequently classified as a 'universal' tumor associated antigen due to its expression in a vast number of cancers. We evaluated plasmid DNA-encoded hTERT as an immunotherapy across nine cancer types.

METHODS: A phase 1 clinical trial was conducted in adult patients with no evidence of disease following definitive surgery and standard therapy, who were at high risk of relapse. Plasmid DNA encoding one of two hTERT variants (INO-1400 or INO-1401) with or without plasmid DNA encoding interleukin 12 (IL-12) (INO-9012) was delivered intramuscularly concurrent with the application of the CELLECTRA constant-current electroporation device …


Ten-Year Outcomes Of Uveal Melanoma Based On The Cancer Genome Atlas (Tcga) Classification In 1001 Cases., Carol L Shields, Eileen Mayro, Zeynep Bas, Philip W Dockery, Antonio Yaghy, Sara E. Lally, Arupa Ganguly, Jerry A Shields Jul 2021

Ten-Year Outcomes Of Uveal Melanoma Based On The Cancer Genome Atlas (Tcga) Classification In 1001 Cases., Carol L Shields, Eileen Mayro, Zeynep Bas, Philip W Dockery, Antonio Yaghy, Sara E. Lally, Arupa Ganguly, Jerry A Shields

Wills Eye Hospital Papers

Purpose: To understand the prognostic value of The Cancer Genome Atlas (TCGA) for uveal melanoma metastasis, using a simplified 4-category classification, based on tumor DNA.

Methods: A retrospective cohort study of 1001 eyes with uveal melanoma at a single center, categorized according to TCGA as Group A, B, C, or D (by fine-needle aspiration biopsy for DNA analysis), and treated with standard methods, was studied for melanoma-related metastasis at 5 and 10 years.

Results: Of 1001 eyes with uveal melanoma, the TCGA categories included Group A (n = 486, 49%), B (n = 141, 14%), C (n = 260, 26%), …


Gene Therapy Knockdown Of Hippo Signaling Induces Cardiomyocyte Renewal In Pigs After Myocardial Infarction, Shijie Liu, Ke Li, Leonardo Wagner Florencio, Li Tang, Todd R Heallen, John P Leach, Yidan Wang, Francisco Grisanti, James T Willerson, Emerson C Perin, Sui Zhang, James F Martin Jun 2021

Gene Therapy Knockdown Of Hippo Signaling Induces Cardiomyocyte Renewal In Pigs After Myocardial Infarction, Shijie Liu, Ke Li, Leonardo Wagner Florencio, Li Tang, Todd R Heallen, John P Leach, Yidan Wang, Francisco Grisanti, James T Willerson, Emerson C Perin, Sui Zhang, James F Martin

Faculty, Staff and Students Publications

Human heart failure, a leading cause of death worldwide, is a prominent example of a chronic disease that may result from poor cell renewal. The Hippo signaling pathway is an inhibitory kinase cascade that represses adult heart muscle cell (cardiomyocyte) proliferation and renewal after myocardial infarction in genetically modified mice. Here, we investigated an adeno-associated virus 9 (AAV9)–based gene therapy to locally knock down the Hippo pathway gene Salvador (Sav) in border zone cardiomyocytes in a pig model of ischemia/reperfusion-induced myocardial infarction. Two weeks after myocardial infarction, when pigs had left ventricular systolic dysfunction, we administered AAV9-Sav …


Genetic Variation And Recurrent Haplotypes On Chromosome 6q23-25 Risk Locus In Familial Lung Cancer, Anthony M Musolf, Claire L Simpson, Bilal A Moiz, Claudio W Pikielny, Candace D Middlebrooks, Diptasri Mandal, Mariza De Andrade, Michael D Cole, Colette Gaba, Ping Yang, Ming You, Yafang Li, Elena Y Kupert, Marshall W Anderson, Ann G Schwartz, Susan M Pinney, Christopher I Amos, Joan E Bailey-Wilson Jun 2021

Genetic Variation And Recurrent Haplotypes On Chromosome 6q23-25 Risk Locus In Familial Lung Cancer, Anthony M Musolf, Claire L Simpson, Bilal A Moiz, Claudio W Pikielny, Candace D Middlebrooks, Diptasri Mandal, Mariza De Andrade, Michael D Cole, Colette Gaba, Ping Yang, Ming You, Yafang Li, Elena Y Kupert, Marshall W Anderson, Ann G Schwartz, Susan M Pinney, Christopher I Amos, Joan E Bailey-Wilson

Faculty, Staff and Students Publications

Although lung cancer is known to be caused by environmental factors, it has also been shown to have genetic components, and the genetic etiology of lung cancer remains understudied. We previously identified a lung cancer risk locus on 6q23-25 using microsatellite data in families with a history of lung cancer. To further elucidate that signal, we performed targeted sequencing on nine of our most strongly linked families. Two-point linkage analysis of the sequencing data revealed that the signal was heterogeneous and that different families likely had different risk variants. Three specific haplotypes were shared by some of the families: 6q25.3-26 …


Targeting The Apoa1 Locus For Liver-Directed Gene Therapy, Marco De Giorgi, Ang Li, Ayrea Hurley, Mercedes Barzi, Alexandria M Doerfler, Nikitha A Cherayil, Harrison E Smith, Jonathan D Brown, Charles Y Lin, Karl-Dimiter Bissig, Gang Bao, William R Lagor Jun 2021

Targeting The Apoa1 Locus For Liver-Directed Gene Therapy, Marco De Giorgi, Ang Li, Ayrea Hurley, Mercedes Barzi, Alexandria M Doerfler, Nikitha A Cherayil, Harrison E Smith, Jonathan D Brown, Charles Y Lin, Karl-Dimiter Bissig, Gang Bao, William R Lagor

Faculty, Staff and Students Publications

Clinical application of somatic genome editing requires therapeutics that are generalizable to a broad range of patients. Targeted insertion of promoterless transgenes can ensure that edits are permanent and broadly applicable while minimizing risks of off-target integration. In the liver, the Albumin (Alb) locus is currently the only well-characterized site for promoterless transgene insertion. Here, we target the Apoa1 locus with adeno-associated viral (AAV) delivery of CRISPR-Cas9 and achieve rates of 6% to 16% of targeted hepatocytes, with no evidence of toxicity. We further show that the endogenous Apoa1 promoter can drive robust and sustained expression of therapeutic …


Determinants Of Penetrance And Variable Expressivity In Monogenic Metabolic Conditions Across 77,184 Exomes, Julia K. Goodrich, Moriel Singer-Berk, Rachel Son, Abigail Sveden, Jordan Wood, Eleina England, Joanne B. Cole, John Blangero, Ben Weisburd, Ravi Duggirala Jun 2021

Determinants Of Penetrance And Variable Expressivity In Monogenic Metabolic Conditions Across 77,184 Exomes, Julia K. Goodrich, Moriel Singer-Berk, Rachel Son, Abigail Sveden, Jordan Wood, Eleina England, Joanne B. Cole, John Blangero, Ben Weisburd, Ravi Duggirala

School of Medicine Publications

Hundreds of thousands of genetic variants have been reported to cause severe monogenic diseases, but the probability that a variant carrier develops the disease (termed penetrance) is unknown for virtually all of them. Additionally, the clinical utility of common polygenetic variation remains uncertain. Using exome sequencing from 77,184 adult individuals (38,618 multi-ancestral individuals from a type 2 diabetes case-control study and 38,566 participants from the UK Biobank, for whom genotype array data were also available), we apply clinical standard-of-care gene variant curation for eight monogenic metabolic conditions. Rare variants causing monogenic diabetes and dyslipidemias display effect sizes significantly larger than …


Longitudinal Dynamics Of Circulating Tumor Cells And Circulating Tumor Dna For Treatment Monitoring In Metastatic Breast Cancer, Lorenzo Gerratana, Andrew A Davis, Qiang Zhang, Debora Basile, Giovanna Rossi, Kimberly Strickland, Alessandra Franzoni, Lorenzo Allegri, Zhaomei Mu, Youbin Zhang, Lisa E Flaum, Giuseppe Damante, William John Gradishar, Leonidas C Platanias, Amir Behdad, Hushan Yang, Fabio Puglisi, Massimo Cristofanilli Jun 2021

Longitudinal Dynamics Of Circulating Tumor Cells And Circulating Tumor Dna For Treatment Monitoring In Metastatic Breast Cancer, Lorenzo Gerratana, Andrew A Davis, Qiang Zhang, Debora Basile, Giovanna Rossi, Kimberly Strickland, Alessandra Franzoni, Lorenzo Allegri, Zhaomei Mu, Youbin Zhang, Lisa E Flaum, Giuseppe Damante, William John Gradishar, Leonidas C Platanias, Amir Behdad, Hushan Yang, Fabio Puglisi, Massimo Cristofanilli

Department of Medical Oncology Faculty Papers

Liquid biopsy-based biomarkers, including circulating tumor cells (CTCs) and circulating tumor DNA (ctDNA), are increasingly important for the characterization of metastatic breast cancer (MBC). The aim of the study was to explore CTCs and ctDNA dynamics to better understand their potentially complementary role in describing MBC.

METHODS: The study retrospectively analyzed 107 patients with MBC characterized with paired CTCs and ctDNA assessments and a second prospective cohort, which enrolled 48 patients with MBC. CTCs were immunomagnetically isolated and ctDNA was quantified and then characterized through next-generation sequencing in the retrospective cohort and droplet digital polymerase chain reaction in the prospective …


Evaluation Of Somatic Mutations In Solid Metastatic Pan-Cancer Patients, Moom Roosan, Isa Mambetsariev, Rebecca Pharaon, Jeremy Fricke, Angel R. Baroz, Joseph Chao, Chen Chen, Mohd W. Nasser, Ramakanth Chirravuri-Venkata, Maneesh Jain, Lynette Smith, Susan E. Yost, Karen L. Reckamp, Raju Pillai, Leonidas Arvanitis, Michelle Afkhami, Edward W. Wang, Vincent Chung, Mihaela Cristea, Marwan Fakih, Marianna Koczywas, Erminia Massarelli, Joanne Mortimer, Yuan Yuan, Surinder K. Batra, Sumanta Pal, Ravi Salgia Jun 2021

Evaluation Of Somatic Mutations In Solid Metastatic Pan-Cancer Patients, Moom Roosan, Isa Mambetsariev, Rebecca Pharaon, Jeremy Fricke, Angel R. Baroz, Joseph Chao, Chen Chen, Mohd W. Nasser, Ramakanth Chirravuri-Venkata, Maneesh Jain, Lynette Smith, Susan E. Yost, Karen L. Reckamp, Raju Pillai, Leonidas Arvanitis, Michelle Afkhami, Edward W. Wang, Vincent Chung, Mihaela Cristea, Marwan Fakih, Marianna Koczywas, Erminia Massarelli, Joanne Mortimer, Yuan Yuan, Surinder K. Batra, Sumanta Pal, Ravi Salgia

Pharmacy Faculty Articles and Research

Metastasis continues to be the primary cause of all cancer-related deaths despite the recent advancements in cancer treatments. To evaluate the role of mutations in overall survival (OS) and treatment outcomes, we analyzed 957 metastatic patients with seven major cancer types who had available molecular testing results with a FoundationOne CDx® panel. The most prevalent genes with somatic mutations were TP53, KRAS, APC, and LRP1B. In this analysis, these genes had mutation frequencies higher than in publicly available datasets. We identified that the somatic mutations were seven mutually exclusive gene pairs and an additional fifty-two co-occurring gene pairs. Mutations …


Racial Disparity And Social Determinants In Receiving Timely Surgery Among Stage I–Iiia Non-Small Cell Lung Cancer Patients In A U.S. Southern State, Paige Neroda, Mei Chin Hsieh, Xiao Cheng Wu, Kathleen B. Cartmell, Rachel Mayo, Jiande Wu, Chindo Hicks, Lu Zhang Jun 2021

Racial Disparity And Social Determinants In Receiving Timely Surgery Among Stage I–Iiia Non-Small Cell Lung Cancer Patients In A U.S. Southern State, Paige Neroda, Mei Chin Hsieh, Xiao Cheng Wu, Kathleen B. Cartmell, Rachel Mayo, Jiande Wu, Chindo Hicks, Lu Zhang

School of Medicine Faculty Publications

Delayed surgery is associated with worse lung cancer outcomes. Social determinants can influence health disparities. This study aimed to examine the potential racial disparity and the effects from social determinants on receipt of timely surgery among lung cancer patients in Louisiana, a southern state in the U.S. White and black stage I–IIIA non-small cell lung cancer patients diagnosed in Louisiana between 2004 and 2016, receiving surgical lobectomy or a more extensive surgery, were selected. Diagnosis-to-surgery interval >6 weeks were considered as delayed surgery. Social determinants included marital status, insurance, census tract level poverty, and census tract level urbanicity. Multivariable logistic …


Genomic Characterization Of Sickle Cell Mouse Models For Therapeutic Genome Editing Applications, Kaitly Jensen Woodard Jun 2021

Genomic Characterization Of Sickle Cell Mouse Models For Therapeutic Genome Editing Applications, Kaitly Jensen Woodard

Theses and Dissertations (ETD)

Sickle cell disease (SCD) is caused by a mutation of the β-globin gene (HBB), resulting in abnormal hemoglobin molecules that polymerize when deoxygenated, forming “sickle” shaped red blood cells (RBCs). Sickle RBCs lead to anemia, multi-organ damage and pain crises, beginning the first year of life. The onset of symptoms coincides with the developmental switch of β-like globin gene expression from fetal stage γ-globin to adult stage β-globin, resulting in a shift from fetal hemoglobin (HbF, α2γ2) to adult hemoglobin (HbA, α2β2). Some individuals harbor rare genetic variants in the extended β-globin gene cluster that cause constitutively elevated postnatal HbF, …


A Method To Delineate De Novo Missense Variants Across Pathways Prioritizes Genes Linked To Autism, Amanda Koire, Panagiotis Katsonis, Young Won Kim, Christie Buchovecky, Stephen J Wilson, Olivier Lichtarge May 2021

A Method To Delineate De Novo Missense Variants Across Pathways Prioritizes Genes Linked To Autism, Amanda Koire, Panagiotis Katsonis, Young Won Kim, Christie Buchovecky, Stephen J Wilson, Olivier Lichtarge

Faculty, Staff and Students Publications

Genotype-phenotype relationships shape health and population fitness but remain difficult to predict and interpret. Here, we apply an evolutionary action method in mutational landscapes to unravel genes and pathways connected to autism spectrum disorder (ASD). Evolutionary action predicts the impact of missense variants on protein function by measuring motions in fitness landscapes, based on phylogenetic distances and substitution odds in homologous sequences. By examining 368 pathways across 2,384 individuals with ASD (probands), we found that 23 pathways, a total of 398 genes, had de novo missense variants biased to higher evolutionary action scores than expected by random chance, including axonogenesis, …