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Laminin-α4 and Integrin-Linked Kinase Mutations Cause Human Cardiomyopathy Via Simultaneous Defects in Cardiomyocytes and Endothelial Cells

医学 层粘连蛋白 整合素 整合素连接激酶 心肌病 细胞生物学 激酶 蛋白激酶A 内科学 细胞外基质 心力衰竭 细胞周期蛋白依赖激酶2 生物 受体
作者
Ralph Knöll,Ruben Postel,Jianming Wang,Ralph Krätzner,Gerrit Hennecke,Andrei M. Vacaru,Padmanabhan Vakeel,Cornelia Schubert,Kenton Murthy,Brinda K. Rana,Dieter Kube,Gudrun Knöll,Katrin Schäfer,Takeharu Hayashi,Torbjörn Holm,Akinori Kimura,Nicholas J. Schork,Mohammad R. Toliat,Peter Nürnberg,Heinz‐Peter Schultheiss
出处
期刊:Circulation [Lippincott Williams & Wilkins]
卷期号:116 (5): 515-525 被引量:226
标识
DOI:10.1161/circulationaha.107.689984
摘要

Background— Extracellular matrix proteins, such as laminins, and endothelial cells are known to influence cardiomyocyte performance; however, the underlying molecular mechanisms remain poorly understood. Methods and Results— We used a forward genetic screen in zebrafish to identify novel genes required for myocardial function and were able to identify the lost-contact ( loc ) mutant, which encodes a nonsense mutation in the integrin-linked kinase ( ilk ) gene. This loc/ilk mutant is associated with a severe defect in cardiomyocytes and endothelial cells that leads to severe myocardial dysfunction. Additional experiments revealed the epistatic regulation between laminin-α4 (Lama4), integrin, and Ilk, which led us to screen for mutations in the human ILK and LAMA4 genes in patients with severe dilated cardiomyopathy. We identified 2 novel amino acid residue–altering mutations (2828C>T [Pro943Leu] and 3217C>T [Arg1073X]) in the integrin-interacting domain of the LAMA4 gene and 1 mutation (785C>T [Ala262Val]) in the ILK gene. Biacore quantitative protein/protein interaction data, which have been used to determine the equilibrium dissociation constants, point to the loss of integrin-binding capacity in case of the Pro943Leu ( K d =5±3 μmol/L) and Arg1073X LAMA4 ( K d =1±0.2 μmol/L) mutants compared with the wild-type LAMA4 protein ( K d =440±20 nmol/L). Additional functional data point to the loss of endothelial cells in affected patients as a direct consequence of the mutant genes, which ultimately leads to heart failure. Conclusions— This is the first report on mutations in the laminin, integrin, and ILK system in human cardiomyopathy, which has consequences for endothelial cells as well as for cardiomyocytes, thus providing a new genetic basis for dilated cardiomyopathy in humans.
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