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Structural studies on full-length talin1 reveal a compact auto-inhibited dimer: Implications for talin activation

机译:对全长talin1的结构研究揭示了一个紧凑的自动抑制二聚体:对talin活化的影响

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摘要

Talin is a large adaptor protein that activates integrins and couples them to cytoskeletal actin. Talin contains an N-terminal FERM (band 4.1, ezrin, radixin, moesin) domain (the head) linked to a flexible rod comprised of 13 amphipathic helical bundles (R1-R13) that terminate in a C-terminal helix (DD) that forms an anti-parallel dimer. We derived a three-dimensional structural model of full-length talin at a resolution of approximately 2.5 nm using EM reconstruction of full-length talin and the known shapes of the individual domains and inter-domain angles as derived from small angle X-ray scattering. Talin adopts a compact conformation consistent with a dimer in which the two talin rods form a donut-shaped structure, with the two talin heads packed side by side occupying the hole at the center of this donut. In this configuration, the integrin binding site in the head domain and the actin-binding site at the carboxy-terminus of the rod are masked, implying that talin must unravel before it can support integrin activation and engage the actin cytoskeleton. (c) 2013 Elsevier Inc. All rights reserved.
机译:Talin是一种大型衔接蛋白,可激活整合素并将其与细胞骨架肌动蛋白偶联。 Talin包含一个N端FERM(4.1带,ezrin,radixin,moesin)结构域(头部),该结构域连接到一个柔性杆,该杆由13个两亲螺旋束(R1-R13)组成,这些螺旋束终止于一个C末端螺旋(DD),形成反平行二聚体。我们使用全长塔林的EM重建以及从小角度X射线散射得出的各个域和域间角的已知形状,得出了分辨率约为2.5 nm的全长塔林的三维结构模型。塔林采用与二聚体一致的紧凑构型,其中两个塔林棒形成一个甜甜圈形结构,两个塔林头并排排列,占据了该甜甜圈中心的孔。在这种构型中,头部结构域中的整联蛋白结合位点和杆的羧基末端处的肌动蛋白结合位点被掩盖,这表明塔林必须解开才能支持整联蛋白激活并激活肌动蛋白细胞骨架。 (c)2013 Elsevier Inc.保留所有权利。

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