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Myocardial Recovery in Recent Onset Dilated Cardiomyopathy: Role of CDCP1 and Cardiac Fibrosis

基因敲除 扩张型心肌病 心力衰竭 射血分数 内科学 心肌病 医学 药物基因组学 心脏纤维化 蛋白激酶B 心脏病学 癌症研究 内分泌学 生物 信号转导 基因 药理学 细胞生物学 遗传学
作者
Duan Liu,Min Wang,Vishakantha Murthy,Dennis M. McNamara,Thanh Thanh L. Nguyen,Trudy Janice Philips,Hridyanshu Vyas,Huanyao Gao,Jyotan Sahni,Randall C. Starling,Leslie T. Cooper,Michelle Skime,Anthony Batzler,Gregory D. Jenkins,Simona Barlera,Silvana Pileggi,Luisa Mestroni,Marco Merlo,Gianfranco Sinagra,F Pinet,Jan Krejčí,Anna Chaloupka,Jordan D. Miller,Pascal de Groote,Daniel J. Tschumperlin,Richard M. Weinshilboum,Naveen L. Pereira
出处
期刊:Circulation Research [Ovid Technologies (Wolters Kluwer)]
卷期号:133 (10): 810-825 被引量:3
标识
DOI:10.1161/circresaha.123.323200
摘要

BACKGROUND: Dilated cardiomyopathy (DCM) is a major cause of heart failure and carries a high mortality rate. Myocardial recovery in DCM-related heart failure patients is highly variable, with some patients having little or no response to standard drug therapy. A genome-wide association study may agnostically identify biomarkers and provide novel insight into the biology of myocardial recovery in DCM. METHODS: A genome-wide association study for change in left ventricular ejection fraction was performed in 686 White subjects with recent-onset DCM who received standard pharmacotherapy. Genome-wide association study signals were subsequently functionally validated and studied in relevant cellular models to understand molecular mechanisms that may have contributed to the change in left ventricular ejection fraction. RESULTS: The genome-wide association study identified a highly suggestive locus that mapped to the 5′-flanking region of the CDCP1 (CUB [complement C1r/C1s, Uegf, and Bmp1] domain containing protein 1) gene (rs6773435; P =7.12×10 −7 ). The variant allele was associated with improved cardiac function and decreased CDCP1 transcription. CDCP1 expression was significantly upregulated in human cardiac fibroblasts (HCFs) in response to the PDGF (platelet-derived growth factor) signaling, and knockdown of CDCP1 significantly repressed HCF proliferation and decreased AKT (protein kinase B) phosphorylation. Transcriptomic profiling after CDCP1 knockdown in HCFs supported the conclusion that CDCP1 regulates HCF proliferation and mitosis. In addition, CDCP1 knockdown in HCFs resulted in significantly decreased expression of soluble ST2 (suppression of tumorigenicity-2), a prognostic biomarker for heart failure and inductor of cardiac fibrosis. CONCLUSIONS: CDCP1 may play an important role in myocardial recovery in recent-onset DCM and mediates its effect primarily by attenuating cardiac fibrosis.

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