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α-辅肌动蛋白1肌动蛋白结合结构域的晶体结构:评估两种相互竞争的肌动蛋白结合模型

Crystal structure of the actin-binding domain of alpha-actinin 1: evaluating two competing actin-binding models.

作者信息

Borrego-Diaz Emma, Kerff Frederic, Lee Sung Haeng, Ferron François, Li Yu, Dominguez Roberto

机构信息

Boston Biomedical Research Institute, 64 Grove Street, Watertown, MA 02472, USA.

出版信息

J Struct Biol. 2006 Aug;155(2):230-8. doi: 10.1016/j.jsb.2006.01.013. Epub 2006 Apr 25.

Abstract

Alpha-actinin belongs to the spectrin family of actin crosslinking and bundling proteins that function as key regulators of cell motility, morphology and adhesion. The actin-binding domain (ABD) of these proteins consists of two consecutive calponin homology (CH) domains. Electron microscopy studies on ABDs appear to support two competing actin-binding models, extended and compact, whereas the crystal structures typically display a compact conformation. We have determined the 1.7A resolution structure of the ABD of alpha-actinin 1, a ubiquitously expressed isoform. The structure displays the classical compact conformation. We evaluated the two binding models by surface conservation analysis. The results show a conserved surface that spans both domains and corresponds to two previously identified actin-binding sites (ABS2 and ABS3). A third, and probably less important site, ABS1, is mostly buried in the compact conformation. However, a thorough examination of existing structures suggests a weak and semi-polar binding interface between the two CHs, leaving open the possibility of domain reorientation or opening. Our results are consistent with a two-step binding mechanism in which the ABD interacts first in the compact form observed in the structures, and then transitions toward a higher affinity state, possibly through minor rearrangement of the domains.

摘要

α-辅肌动蛋白属于肌动蛋白交联和捆绑蛋白的血影蛋白家族,这些蛋白作为细胞运动、形态和黏附的关键调节因子发挥作用。这些蛋白的肌动蛋白结合结构域(ABD)由两个连续的钙调蛋白同源(CH)结构域组成。对ABD的电子显微镜研究似乎支持两种相互竞争的肌动蛋白结合模型,即伸展型和紧凑型,而晶体结构通常呈现紧凑构象。我们已经确定了α-辅肌动蛋白1(一种普遍表达的同工型)的ABD的1.7埃分辨率结构。该结构呈现出经典的紧凑构象。我们通过表面保守性分析评估了这两种结合模型。结果显示了一个跨越两个结构域的保守表面,并对应于两个先前确定的肌动蛋白结合位点(ABS2和ABS3)。第三个位点ABS1可能不太重要,在紧凑构象中大多被掩埋。然而,对现有结构的深入研究表明,两个CH之间存在一个弱的半极性结合界面,这使得结构域重新定向或打开成为可能。我们的结果与两步结合机制一致,即ABD首先以结构中观察到的紧凑形式相互作用,然后可能通过结构域的微小重排转变为更高亲和力状态。

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