室致密化不全
生物
Notch信号通路
心肌病
斑马鱼
突变
致心律失常性右心室发育不良
癌症研究
心力衰竭
细胞生物学
遗传学
内科学
基因
医学
作者
Guillermo Luxán,Jesús C. Casanova,Beatriz Martı́nez-Poveda,Belén Prados,Gaetano D’Amato,Donal MacGrogan,Álvaro González-Rajal,David Dobarro,Carlos Torroja,Fernando Martínez,José Luis Izquierdo-García,Leticia Fernández‐Friera,María Sabater‐Molina,Young–Yun Kong,Gonzalo Pizarro,Borja Ibáñez,Constancio Medrano,Pablo García‐Pavía,Juan R. Gimeno,Lorenzo Monserrat,Luis Jesús Jiménez‐Borreguero,José Luis de la Pompa
出处
期刊:Nature Medicine
[Springer Nature]
日期:2013-01-13
卷期号:19 (2): 193-201
被引量:326
摘要
Left ventricular noncompaction (LVNC) causes prominent ventricular trabeculations and reduces cardiac systolic function. The clinical presentation of LVNC ranges from asymptomatic to heart failure. We show that germline mutations in human MIB1 (mindbomb homolog 1), which encodes an E3 ubiquitin ligase that promotes endocytosis of the NOTCH ligands DELTA and JAGGED, cause LVNC in autosomal-dominant pedigrees, with affected individuals showing reduced NOTCH1 activity and reduced expression of target genes. Functional studies in cells and zebrafish embryos and in silico modeling indicate that MIB1 functions as a dimer, which is disrupted by the human mutations. Targeted inactivation of Mib1 in mouse myocardium causes LVNC, a phenotype mimicked by inactivation of myocardial Jagged1 or endocardial Notch1. Myocardial Mib1 mutants show reduced ventricular Notch1 activity, expansion of compact myocardium to proliferative, immature trabeculae and abnormal expression of cardiac development and disease genes. These results implicate NOTCH signaling in LVNC and indicate that MIB1 mutations arrest chamber myocardium development, preventing trabecular maturation and compaction.
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