首页> 外文期刊>The Journal of biological chemistry >The Structure of the Plakin Domain of Plectin Reveals a Non-canonical SH3 Domain Interacting with Its Fourth Spectrin Repeat
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The Structure of the Plakin Domain of Plectin Reveals a Non-canonical SH3 Domain Interacting with Its Fourth Spectrin Repeat

机译:Ploctin的plakin结构蛋白结构揭示了与其第四光谱重复相互作用的非典型SH3结构域

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摘要

Plectin belongs to the plakin family of cytoskeletal crosslinkers, which is part of the spectrin superfamily. Plakins contain an N-terminal conserved region, the plakin domain, which is formed by an array of spectrin repeats (SR) and a Src-homology 3 (SH3), and harbors binding sites for junctional proteins. We have combined x-ray crystallography and small angle x-ray scattering (SAXS) to elucidate the structure of the central region of the plakin domain of plectin, which corresponds to the SR3, SR4, SR5, and SH3 domains. The crystal structures of the SR3-SR4 and SR4-SR5-SH3 fragments were determined to 2.2 and 2.95 ? resolution, respectively. The SH3 of plectin presents major alterations as compared with canonical Pro-rich binding SH3 domains, suggesting that plectin does not recognize Pro-rich motifs. In addition, the SH3 binding site is partially occluded by an intramolecular contact with the SR4. Residues of this pseudo-binding site and the SR4/SH3 interface are conserved within the plakin family, suggesting that the structure of this part of the plectin molecule is similar to that of other plakins. We have created a model for the SR3-SR4-SR5-SH3 region, which agrees well with SAXS data in solution. The three SRs form a semi-flexible rod that is not altered by the presence of the SH3 domain, and it is similar to those found in spectrins. The flexibility of the plakin domain, in analogy with spectrins, might contribute to the role of plakins in maintaining the stability of tissues subject to mechanical stress.
机译:Plectin属于浮子骨骼交联剂的Plakin系列,这是Spectrin Superfamily的一部分。 Plakins含有N末端保守区域,浮子蛋白域,其由阵列重复(SR)和SRC-同源性3(SH3)形成,以及用于结蛋白的Harbors结合位点。我们具有组合的X射线晶体学和小角度X射线散射(SAX)以阐明P141,SR3,SR4,SR5和SH3结构域对应于P1Cakin结构蛋白的中心区域的结构。将SR3-SR4和SR4-SR5-SH3片段的晶体结构测定为2.2和2.95?分别分辨率。 Plectin的SH3与富含典型富含富含典型的富含结合SH3结构域相比,提出了主要的改变,表明Perectin不识别富含富含的基序。另外,通过与SR4的分子内接触部分封闭SH3结合位点。该伪结合位点的残基和SR4 / SH3界面在浮子素家族内保守,表明P1立方体分子的该部分的结构类似于其他斑烷烃的结构。我们为SR3-SR4-SR5-SH3区域创建了模型,该模型与解决方案中的SAXS数据一致。三个Srs形成一个半柔性杆,没有通过SH3结构域的存在而改变,并且类似于光谱中的那些。与光谱相比,Plakin结构域的灵活性可能有助于PlaKins在维持受机械应力的稳定性方面的作用。

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