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Atomic structure and handedness of the building block of a biological assembly.

机译:生物组件的构件的原子结构和手性。

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摘要

Noncovalent supramolecular assemblies possess in general several unique subunit subunit interfaces.The basic building block of such an assembly consists of several subunits and contains all unique interfaces. Atomic-resolution structures of monomeric subunits are typically accessed by crystallography or solution NMR and fitted into electron microscopy density maps. However, the structure of the intact building block in the assembled state remains unknown with this hybrid approach. Here, we present the solid-state NMR atomic structure of the building block of the type III secretion system needle. The building block structure consists of a homotetrameric subunit complex with three unique supramolecular interfaces. Side-chain positions at the interfaces were solved at atomic detail. The high-resolution structure reveals unambiguously the helical handedness of the assembly, determined to be right-handed for the type III secretion system needle.Additionally, the axial rise per subunit could be extracted from the tetramer structure and independently validated by mass-per-length measurements.
机译:非共价超分子装配体通常具有几个独特的亚基亚基界面。此类装配体的基本构建模块由几个亚基组成,并包含所有独特的界面。单体亚基的原子分辨率结构通常通过晶体学或溶液NMR进行访问,并拟合到电子显微镜密度图中。然而,在这种混合方法中,处于组装状态的完整构件的结构仍然未知。在这里,我们介绍了III型分泌系统针的构建基的固态NMR原子结构。构件结构由具有三个独特的超分子界面的同四聚体亚基复合物组成。界面的侧链位置在原子细节上得到了解决。高分辨率的结构清楚地显示了组件的螺旋惯性,确定为III型分泌系统针的惯用右手。此外,每个亚基的轴向上升可从四聚体结构中提取并通过质量/质量独立验证长度测量。

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