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细丝蛋白 A 肌动蛋白结合域与 F-肌动蛋白相互作用的结构基础。

Structural basis of the filamin A actin-binding domain interaction with F-actin.

机构信息

Department of Pharmacology, Yale University, New Haven, CT, USA.

Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, CT, USA.

出版信息

Nat Struct Mol Biol. 2018 Oct;25(10):918-927. doi: 10.1038/s41594-018-0128-3. Epub 2018 Sep 17.

Abstract

Actin-cross-linking proteins assemble actin filaments into higher-order structures essential for orchestrating cell shape, adhesion, and motility. Missense mutations in the tandem calponin homology domains of their actin-binding domains (ABDs) underlie numerous genetic diseases, but a molecular understanding of these pathologies is hampered by the lack of high-resolution structures of any actin-cross-linking protein bound to F-actin. Here, taking advantage of a high-affinity, disease-associated mutant of the human filamin A (FLNa) ABD, we combine cryo-electron microscopy and functional studies to reveal at near-atomic resolution how the first calponin homology domain (CH1) and residues immediately N-terminal to it engage actin. We further show that reorientation of CH2 relative to CH1 is required to avoid clashes with actin and to expose F-actin-binding residues on CH1. Our data explain localization of disease-associated loss-of-function mutations to FLNaCH1 and gain-of-function mutations to the regulatory FLNaCH2. Sequence conservation argues that this provides a general model for ABD-F-actin binding.

摘要

肌动蛋白交联蛋白将肌动蛋白丝组装成高级结构,对于协调细胞形状、黏附和运动至关重要。其肌动蛋白结合域(ABD)中的串联钙调蛋白同源结构域中的错义突变是许多遗传疾病的基础,但由于缺乏与 F-肌动蛋白结合的任何肌动蛋白交联蛋白的高分辨率结构,这些病理学的分子理解受到了阻碍。在这里,我们利用人类细丝蛋白 A(FLNa)ABD 的高亲和力、与疾病相关的突变体,结合低温电子显微镜和功能研究,以近原子分辨率揭示了第一个钙调蛋白同源结构域(CH1)及其紧邻的 N 端残基与肌动蛋白的结合方式。我们进一步表明,CH2 相对于 CH1 的重定向对于避免与肌动蛋白发生冲突并暴露 CH1 上的 F-肌动蛋白结合残基是必需的。我们的数据解释了与疾病相关的功能丧失突变定位于 FLNaCH1,而功能获得性突变定位于调节性 FLNaCH2。序列保守性表明,这为 ABD-F-肌动蛋白结合提供了一个通用模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eabf/6173970/a9dc95937f24/nihms-1502931-f0001.jpg

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