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导致内脏型肌病的 ACTG2 错义突变的分子机制。

Molecular mechanisms linking missense ACTG2 mutations to visceral myopathy.

机构信息

Department of Physiology, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA 19104, USA.

The Children's Hospital of Philadelphia Research Institute, Philadelphia, PA 19104, USA.

出版信息

Sci Adv. 2024 May 31;10(22):eadn6615. doi: 10.1126/sciadv.adn6615.

Abstract

Visceral myopathy is a life-threatening disease characterized by muscle weakness in the bowel, bladder, and uterus. Mutations in smooth muscle γ-actin (ACTG2) are the most common cause of the disease, but the mechanisms by which the mutations alter muscle function are unknown. Here, we examined four prevalent ACTG2 mutations (R40C, R148C, R178C, and R257C) that cause different disease severity and are spread throughout the actin fold. R178C displayed premature degradation, R148C disrupted interactions with actin-binding proteins, R40C inhibited polymerization, and R257C destabilized filaments. Because these mutations are heterozygous, we also analyzed 50/50 mixtures with wild-type (WT) ACTG2. The WT/R40C mixture impaired filament nucleation by leiomodin 1, and WT/R257C produced filaments that were easily fragmented by smooth muscle myosin. Smooth muscle tropomyosin isoform Tpm1.4 partially rescued the defects of R40C and R257C. Cryo-electron microscopy structures of filaments formed by R40C and R257C revealed disrupted intersubunit contacts. The biochemical and structural properties of the mutants correlate with their genotype-specific disease severity.

摘要

内脏肌病是一种危及生命的疾病,其特征是肠道、膀胱和子宫的肌肉无力。平滑肌γ-肌动蛋白 (ACTG2) 的突变是该病最常见的原因,但突变如何改变肌肉功能尚不清楚。在这里,我们研究了四种常见的 ACTG2 突变(R40C、R148C、R178C 和 R257C),这些突变导致不同的疾病严重程度,并且分布在肌动蛋白折叠的整个区域。R178C 显示出过早降解,R148C 破坏了与肌动蛋白结合蛋白的相互作用,R40C 抑制聚合,R257C 使纤维不稳定。由于这些突变是杂合的,我们还分析了与野生型 (WT) ACTG2 的 50/50 混合物。WT/R40C 混合物通过 leiomodin 1 抑制纤维成核,而 WT/R257C 产生的纤维很容易被平滑肌肌球蛋白片段化。平滑肌原肌球蛋白同工型 Tpm1.4 部分挽救了 R40C 和 R257C 的缺陷。R40C 和 R257C 形成的纤维的冷冻电镜结构显示出亚基间接触的破坏。突变体的生化和结构特性与它们特定的基因型疾病严重程度相关。

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