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三聚体自转运黏附素保守卷曲螺旋片段中从强右旋到典型左旋超螺旋的转变。

A transition from strong right-handed to canonical left-handed supercoiling in a conserved coiled-coil segment of trimeric autotransporter adhesins.

机构信息

Department of Protein Evolution, Max-Planck-Institute for Developmental Biology, 72076 Tübingen, Germany.

出版信息

J Struct Biol. 2010 May;170(2):236-45. doi: 10.1016/j.jsb.2010.02.009. Epub 2010 Feb 21.

Abstract

Trimeric autotransporter adhesins (TAAs) represent an important class of pathogenicity factors in proteobacteria. Their defining feature is a conserved membrane anchor, which forms a 12-stranded beta-barrel through the outer membrane. The proteins are translocated through the pore of this barrel and, once export is complete, the pore is occluded by a three-stranded coiled coil with canonical heptad (7/2) sequence periodicity. In many TAAs this coiled coil is extended by a segment of varying length, which has pentadecad (15/4) periodicity. We used X-ray crystallography and biochemical methods to analyze the transition between these two periodicities in the coiled-coil stalk of the Yersinia adhesin YadA. Our results show how the strong right-handed supercoil of the 15/4-periodic part locally undergoes further over-winding to 19/5, before switching at a fairly constant rate over 14 residues to the canonical left-handed supercoil of the 7/2-periodic part. The transition region contains two YxD motifs, which are characteristic for right-handed coiled-coil segments of TAAs. This novel coiled-coil motif forms a defined network of inter- and intrahelical hydrogen bonds, thus serving as a structural determinant. Supercoil fluctuations have hitherto been described in coiled coils whose main sequence periodicity is disrupted locally by discontinuities. Here we present the first detailed analysis of two fundamentally different coiled-coil periodicities being accommodated in the same structure.

摘要

三聚体自转运黏附素(TAAs)是变形菌中一类重要的致病性因子。它们的特征是一个保守的膜锚定,通过外膜形成一个 12 股的β桶。这些蛋白通过桶的孔移位,一旦出口完成,孔就被一个具有典型七肽(7/2)序列周期性的三股螺旋卷曲线圈阻塞。在许多 TAAs 中,这个卷曲线圈通过一个长度不同的片段延伸,其具有十五肽(15/4)周期性。我们使用 X 射线晶体学和生化方法分析了耶尔森氏菌黏附素 YadA 卷曲线圈茎中的这两种周期性之间的转变。我们的结果表明,15/4 周期性部分的强右手超螺旋如何局部进一步过度缠绕到 19/5,然后在 14 个残基左右以相当恒定的速度切换到 7/2 周期性部分的典型左手超螺旋。过渡区包含两个 YxD 基序,这是 TAAs 的右手卷曲线圈部分的特征。这种新的卷曲线圈基序形成了一个定义明确的螺旋间和螺旋内氢键网络,因此是一个结构决定因素。超螺旋波动迄今为止已在其主要序列周期性被不连续性局部破坏的卷曲线圈中得到描述。在这里,我们首次详细分析了两种根本不同的卷曲线圈周期性在同一结构中被容纳。

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