Nonsense Variant PRDM16-Q187X Causes Impaired Myocardial Development and TGF-β Signaling Resulting in Noncompaction Cardiomyopathy in Humans and Mice

PRDM16 先证者 心肌病 生物 癌症研究 无义突变 遗传学 内科学 内分泌学 心力衰竭 医学 表型 基因 突变 基因表达 错义突变
作者
Bo Sun,Omid M T Rouzbehani,Ryan J. Kramer,Rajeshwary Ghosh,Robin M. Perelli,Simon Atkins,Amir Nima Fatahian,Kathryn Davis,Marta W. Szulik,Michael A. Goodman,M.R. Hathaway,Ellen Chi,Tarah A. Word,Hari Tunuguntla,Susan W. Denfield,Xander H.T. Wehrens,Kevin J. Whitehead,Hala Y. Abdelnasser,Jason G. Warren,Mingfu Wu,Sarah Franklin,Sihem Boudina,Andrew P. Landstrom
出处
期刊:Circulation-heart Failure [Lippincott Williams & Wilkins]
卷期号:16 (12)
标识
DOI:10.1161/circheartfailure.122.010351
摘要

BACKGROUND: PRDM16 plays a role in myocardial development through TGF-β (transforming growth factor-beta) signaling. Recent evidence suggests that loss of PRDM16 expression is associated with cardiomyopathy development in mice, although its role in human cardiomyopathy development is unclear. This study aims to determine the impact of PRDM16 loss-of-function variants on cardiomyopathy in humans. METHODS: Individuals with PRDM16 variants were identified and consented. Induced pluripotent stem cell–derived cardiomyocytes were generated from a proband hosting a Q187X nonsense variant as an in vitro model and underwent proliferative and transcriptional analyses. CRISPR (clustered regularly interspaced short palindromic repeats)-mediated knock-in mouse model hosting the Prdm16 Q187X allele was generated and subjected to ECG, histological, and transcriptional analysis. RESULTS: We report 2 probands with loss-of-function PRDM16 variants and pediatric left ventricular noncompaction cardiomyopathy. One proband hosts a PRDM16-Q187X variant with left ventricular noncompaction cardiomyopathy and demonstrated infant-onset heart failure, which was selected for further study. Induced pluripotent stem cell-derived cardiomyocytes prepared from the PRDM16-Q187X proband demonstrated a statistically significant impairment in myocyte proliferation and increased apoptosis associated with transcriptional dysregulation of genes implicated in cardiac maturation, including TGF-β–associated transcripts. Homozygous Prdm16 Q187X/Q187X mice demonstrated an underdeveloped compact myocardium and were embryonically lethal. Heterozygous Prdm16 Q187X/WT mice demonstrated significantly smaller ventricular dimensions, heightened fibrosis, and age-dependent loss of TGF-β expression. Mechanistic studies were undertaken in H9c2 cardiomyoblasts to show that PRDM16 binds TGFB3 promoter and represses its transcription. CONCLUSIONS: Novel loss-of-function PRDM16 variant impairs myocardial development resulting in noncompaction cardiomyopathy in humans and mice associated with altered TGF-β signaling.
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