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使用程序 samCC 测量方形四螺旋束的构象空间。

Measuring the conformational space of square four-helical bundles with the program samCC.

机构信息

Department of Protein Evolution, Max-Planck-Institute for Developmental Biology, Spemannstr. 35, 72076 Tübingen, Germany.

出版信息

J Struct Biol. 2010 May;170(2):226-35. doi: 10.1016/j.jsb.2010.01.023. Epub 2010 Feb 6.

Abstract

Four-helical bundles are the most abundant topological motif among helical folds. Their constituent helices show crossing angles that mainly cluster around +20 degrees (aligned) or -50 degrees (orthogonal). Bundles with all helices aligned are called 'square' and comprise four-helical coiled coils as their structurally most regular form. Since coiled coils can be described fully by parametric equations, they can serve as a reference point for quantifying the conformational space of all square bundles. To this end we have developed a program, samCC, which measures the deviation of a given bundle from an idealized coiled coil and decomposes this into axial rotation and axial, radial, and angular shifts. We present examples of analyses performed with the program and focus in particular on the axial rotation states of helices in coiled coils, in order to gain further insight into a proposed mechanism for transmembrane signal transduction, which involves a 26 degrees axial rotation of helices between a canonical coiled coil and a variant called the Alacoil. We find that, unlike expected from the mechanistic model, coiled coils show a continuum of axial rotation states, suggesting that the Alacoil does not represent a single, defined state. We also find that one of the originally proposed Alacoil proteins, Rop, in fact has canonical packing. SamCC is freely available as a web service athttp://toolkit.tuebingen.mpg.de/samcc.

摘要

四螺旋束是螺旋折叠中最丰富的拓扑基序。其组成螺旋的交叉角主要集中在+20 度(对齐)或-50 度(正交)。所有螺旋对齐的束称为“方形”,并包含四螺旋卷曲螺旋作为其结构最规则的形式。由于卷曲螺旋可以用参数方程完全描述,因此它们可以作为量化所有方形束构象空间的参考点。为此,我们开发了一个程序 samCC,它测量给定束与理想化卷曲螺旋的偏差,并将其分解为轴向旋转和轴向、径向和角位移。我们展示了使用该程序进行的分析示例,并特别关注卷曲螺旋中螺旋的轴向旋转状态,以深入了解一种提议的跨膜信号转导机制,该机制涉及在典型卷曲螺旋和称为 Alacoil 的变体之间进行 26 度的轴向旋转。我们发现,与机械模型所预期的不同,卷曲螺旋显示出连续的轴向旋转状态,这表明 Alacoil 不代表单个定义的状态。我们还发现,最初提出的 Alacoil 蛋白之一 Rop 实际上具有典型的包装。SamCC 可作为网络服务在 http://toolkit.tuebingen.mpg.de/samcc 上免费获得。

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