LMNA公司
拉明
早熟
生物
背景(考古学)
核板
早衰
遗传学
癌症研究
细胞生物学
核蛋白
基因
转录因子
古生物学
作者
John Hasper,Kevin Welle,Kyle Swovick,Jennifer R. Hryhorenko,Sina Ghaemmaghami,Abigail Buchwalter
标识
DOI:10.1083/jcb.202307049
摘要
LMNA mutations cause laminopathies that afflict the cardiovascular system and include Hutchinson-Gilford progeria syndrome. The origins of tissue specificity in these diseases are unclear as the lamin A/C proteins are broadly expressed. We show that LMNA transcript levels are not predictive of lamin A/C protein levels across tissues and use quantitative proteomics to discover that tissue context and disease mutation each influence lamin A/C protein’s lifetime. Lamin A/C’s lifetime is an order of magnitude longer in the aorta, heart, and fat, where laminopathy pathology is apparent, than in the liver and intestine, which are spared from the disease. Lamin A/C is especially insoluble in cardiovascular tissues, which may limit degradation and promote protein stability. Progerin is even more long lived than lamin A/C in the cardiovascular system and accumulates there over time. Progerin accumulation is associated with impaired turnover of hundreds of abundant proteins in progeroid tissues. These findings identify impaired lamin A/C protein turnover as a novel feature of laminopathy syndromes.
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