拉明
生物
转录因子
细胞生物学
收缩性
核板
MEF2C公司
血清反应因子
心力衰竭
心功能曲线
内科学
肌节
内分泌学
遗传学
核蛋白
心肌细胞
核心
医学
基因
作者
Natalie J. Kirkland,Scott H. Skalak,Alexander J. Whitehead,James D. Hocker,Pranjali Beri,Georg Vogler,Bill Hum,Mingyi Wang,Edward G. Lakatta,Bing Ren,Rolf Bodmer,Adam J. Engler
出处
期刊:Nature Aging
日期:2022-12-22
卷期号:3 (1): 17-33
被引量:8
标识
DOI:10.1038/s43587-022-00323-8
摘要
As we age, structural changes contribute to progressive decline in organ function, which in the heart act through poorly characterized mechanisms. Taking advantage of the short lifespan and conserved cardiac proteome of the fruit fly, we found that cardiomyocytes exhibit progressive loss of Lamin C (mammalian Lamin A/C homologue) with age, coincident with decreasing nuclear size and increasing nuclear stiffness. Premature genetic reduction of Lamin C phenocopies aging's effects on the nucleus, and subsequently decreases heart contractility and sarcomere organization. Surprisingly, Lamin C reduction downregulates myogenic transcription factors and cytoskeletal regulators, possibly via reduced chromatin accessibility. Subsequently, we find a role for cardiac transcription factors in regulating adult heart contractility and show that maintenance of Lamin C, and cardiac transcription factor expression, prevents age-dependent cardiac decline. Our findings are conserved in aged non-human primates and mice, demonstrating that age-dependent nuclear remodeling is a major mechanism contributing to cardiac dysfunction.
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