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Genome Biology|June 10, 2020
Molecular mechanisms of coronary disease revealed using quantitative trait loci for TCF21 binding, chromatin accessibility, and chromosomal loopingQuanyi Zhao, Michael Dacre, Trieu Nguyen, et al.Circulation Research|December 10, 2019
Coronary Disease-Associated Gene TCF21 Inhibits Smooth Muscle Cell Differentiation by Blocking the Myocardin-Serum Response Factor PathwayManabu Nagao, Qing Lyu, Quanyi Zhao, et al.Plos Genetics|October 12, 2018
Coronary artery disease genes SMAD3 and TCF21 promote opposing interactive genetic programs that regulate smooth muscle cell differentiation and disease riskDharini Iyer, Quanyi Zhao, Robert Wirka, et al.Plos Genetics|May 29, 2015
Characterization of TCF21 Downstream Target Regions Identifies a Transcriptional Network Linking Multiple Independent Coronary Artery Disease LociOlga Sazonova, Yuqi Zhao, Sylvia Nürnberg, et al.Plos Genetics|May 9, 2017
TCF21 and the environmental sensor aryl-hydrocarbon receptor cooperate to activate a pro-inflammatory gene expression program in coronary artery smooth muscle cellsJuyong Brian Kim, Milos Pjanic, Trieu Nguyen, et al.American Journal of Human Genetics|August 28, 2018
Genetic Regulatory Mechanisms of Smooth Muscle Cells Map to Coronary Artery Disease Risk LociBoxiang Liu, Milos Pjanic, Ting Wang, et al.Plos Genetics|November 17, 2018
Functional regulatory mechanism of smooth muscle cell-restricted LMOD1 coronary artery disease locusVivek Nanda, Ting Wang, Milos Pjanic, et al.Nature Communications|July 9, 2016
Integrative functional genomics identifies regulatory mechanisms at coronary artery disease lociClint L Miller, Milos Pjanic, Ting Wang, et al.Plos Genetics|May 29, 2015
Coronary Artery Disease Associated Transcription Factor TCF21 Regulates Smooth Muscle Precursor Cells That Contribute to the Fibrous CapSylvia T Nurnberg, Karen Cheng, Azad Raiesdana, et al.Nature Medicine|July 31, 2019
Atheroprotective roles of smooth muscle cell phenotypic modulation and the TCF21 disease gene as revealed by single-cell analysisRobert C Wirka, Dhananjay Wagh, David T Paik, et al.Pageof 3