4.5 Article

Attenuated hypertrophic response to pressure overload in a lamin A/C haploinsufficiency mouse

期刊

JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY
卷 48, 期 6, 页码 1290-1297

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.yjmcc.2009.10.024

关键词

Lamin; Hypertrophy; Mechanical stress; Pressure overload; Mechanotransduction; Transverse aortic constriction

资金

  1. National Institutes of Health [R01 HL082792, R01 NS059348]
  2. American Heart Association [0635359N, 0835484N]

向作者/读者索取更多资源

Inherited mutations cause approximately 30% of all dilated cardiomyopathy cases, with autosomal dominant mutations in the LMNA gene accounting for more than one third of these. The LMNA gene encodes the nuclear envelope proteins lamins A and C. which provide structural support to the nucleus and also play critical roles in transcriptional regulation. Functional deletion of a single allele is sufficient to trigger dilated cardiomyopathy in humans and mice. However, whereas Lmna(-/-) mice develop severe muscular dystrophy and dilated cardiomyopathy and die by 8 weeks of age, heterozygous Lmna(+/-) mice have a much milder phenotype, with changes in ventricular function and morphology only becoming apparent at 1 year of age. Here, we studied 8- to 20-week-old Lmna(+/-) mice and wild-type littermates in a pressure overload model to examine whether increased mechanical load can accelerate or exacerbate myocardial dysfunction in the heterozygotes. While overall survival was similar between genotypes, Lmna(+/-) animals had a significantly attenuated hypertrophic response to pressure overload as evidenced by reduced ventricular mass and myocyte size. Analysis of pressure overload-induced transcriptional changes suggested that the reduced hypertrophy in the Lmna(+/-) mice was accompanied by impaired activation of the mechanosensitive gene Egr-1. In conclusion, our findings provide further support for a critical role of lamins A and C in regulating the cellular response to mechanical stress in cardiomyocytes and demonstrate that haploinsufficiency of lamins A and C alone is sufficient to alter hypertrophic responses and cardiac function in the face of pressure overload in the heart. (C) 2009 Elsevier Ltd. All rights reserved.

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