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首页> 外文期刊>Journal of Molecular Biology >Solution NMR structure of the junction between tropomyosin molecules: Implications for actin binding and regulation
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Solution NMR structure of the junction between tropomyosin molecules: Implications for actin binding and regulation

机译:原肌球蛋白分子之间的交界处的溶液核磁共振结构:对肌动蛋白结合和调控的影响。

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Tropomyosin is a coiled-coil protein that binds head-to-tail along the length of actin filaments in eukaryotic cells, stabilizing them and providing protection from severing proteins. Tropomyosin cooperatively regulates actin's interaction with myosin and mediates the Ca2+-dependent regulation of contraction by troponin in striated muscles. The N-terminal and C-terminal ends are critical functional determinants that form an "overlap complex". Here we report the solution NMR structure of an overlap complex formed of model peptides. In the complex, the chains of the C-terminal coiled coil spread apart to allow insertion of 11 residues of the N-terminal coiled coil into the resulting cleft. The plane of the N-terminal coiled coil is rotated 900 relative to the plane of the C terminus. A consequence of the geometry is that the orientation of postulated periodic actin binding sites on the coiled-coil surface is retained from one molecule to the next along the actin filament when the overlap complex is modeled into the X-ray structure of tropomyosin determined at 7 angstrom. Nuclear relaxation NMR data reveal flexibility of the junction, which may function to optimize binding along the helical actin filament and to allow mobility of tropomyosin on the filament surface as it switches between regulatory states. (c) 2006 Elsevier Ltd. All rights reserved.
机译:Tropomyosin是一种卷曲螺旋蛋白,沿着真核细胞中肌动蛋白丝的长度从头到尾结合,使它们稳定并提供保护以免受切割蛋白的侵害。 Tropomyosin协同调节肌动蛋白与肌球蛋白的相互作用,并介导横纹肌中肌钙蛋白对Ca2 +依赖性收缩的调节。 N-末端和C-末端是形成“重叠复合体”的关键功能决定簇。在这里,我们报告由模型肽形成的重叠复合物的溶液NMR结构。在复合物中,C末端螺旋状线圈的链散开以允许将N末端螺旋状线圈的11个残基插入到产生的裂缝中。 N端线圈的平面相对于C端的平面旋转900。几何形状的结果是,当将重叠复合物建模为在7下确定的原肌球蛋白的X射线结构时,卷曲螺旋表面上假定的周期性肌动蛋白结合位点的方向会沿着肌动蛋白丝从一个分子保留到另一个分子。埃。核弛豫NMR数据显示了连接处的柔性,可起到优化沿着螺旋肌动蛋白丝的结合的作用,并在原丝表面在调节状态之间切换时使原肌球蛋白在丝表面上迁移。 (c)2006 Elsevier Ltd.保留所有权利。

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