在Hutchinson-Guilford早衰综合征中,Progerin错定位心肌蛋白相关转录因子。

Vascular biology (Bristol, England) Pub Date : 2022-02-15 eCollection Date: 2022-02-01 DOI:10.1530/VB-21-0018
Ryan von Kleeck, Paola Castagnino, Richard K Assoian
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引用次数: 2

摘要

Hutchinson-Guilford早衰综合征(HGPS)是一种罕见的早衰早逝的遗传性疾病。HGPS儿童和小鼠的动脉在病理上是僵硬的,并且HGPS小鼠也表现出动脉收缩性降低。我们最近发现,收缩性降低是HGPS的早期事件,与平滑肌肌球蛋白重链(smMHC)异常低表达有关。在这里,我们探索了smMHC丰度降低的基础,并询问这是孕激素表达的直接影响还是长期的适应性反应。Myh11是编码smMHC的基因,受肌卡蛋白相关转录因子(MRTF)的调节,我们发现HGPS主动脉的MRTF信号减少。此外,从HGPS小鼠分离的平滑肌细胞(SMC)显示出MRTF核定位降低。WT SMC中的急性progerin表达表型复制了HGPS中MRTF核定位的降低和Myh11的表达。有趣的是,RNA介导的野生型SMC中MRTF-A的耗竭再现了相对于Acta2 mRNA,progerin对Myh11mRNA的优先抑制作用。我们的研究结果表明,progerin的表达严重破坏了MRTF在细胞核中的定位,并表明随之而来的核辅激活因子活性的降低有助于解释HGPS中smMHC丰度和SMC收缩性的降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Progerin mislocalizes myocardin-related transcription factor in Hutchinson-Guilford Progeria syndrome.

Progerin mislocalizes myocardin-related transcription factor in Hutchinson-Guilford Progeria syndrome.

Progerin mislocalizes myocardin-related transcription factor in Hutchinson-Guilford Progeria syndrome.

Progerin mislocalizes myocardin-related transcription factor in Hutchinson-Guilford Progeria syndrome.

Hutchinson-Guilford Progeria syndrome (HGPS) is a rare genetic disease of premature aging and early death due to cardiovascular disease. The arteries of HGPS children and mice are pathologically stiff, and HGPS mice also display reduced arterial contractility. We recently showed that reduced contractility is an early event in HGPS and linked to an aberrantly low expression of smooth muscle myosin heavy chain (smMHC). Here, we have explored the basis for reduced smMHC abundance and asked whether it is a direct effect of progerin expression or a longer-term adaptive response. Myh11, the gene encoding for smMHC, is regulated by myocardin-related transcription factors (MRTFs), and we show that HGPS aortas have a reduced MRTF signature. Additionally, smooth muscle cells (SMCs) isolated from HGPS mice display reduced MRTF nuclear localization. Acute progerin expression in WT SMCs phenocopied both the decrease in MRTF nuclear localization and expression of Myh11 seen in HGPS. Interestingly, RNA-mediated depletion of MRTF-A in WT SMCs reproduced the preferential inhibitory effect of progerin on Myh11 mRNA relative to Acta2 mRNA. Our results show that progerin expression acutely disrupts MRTF localization to the nucleus and suggest that the consequent decrease in nuclear coactivator activity can help to explain the reduction in smMHC abundance and SMC contractility seen in HGPS.

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