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通过局部构象分析解析二级结构的形状和变形。

Deciphering the shape and deformation of secondary structures through local conformation analysis.

作者信息

Baussand Julie, Camproux Anne-Claude

机构信息

Molécules Thérapeutiques in silico, UMRS-973, Université Paris-Diderot Paris-7,36, rue Hélène Brion, 75013 Paris, France.

出版信息

BMC Struct Biol. 2011 Feb 1;11:9. doi: 10.1186/1472-6807-11-9.

Abstract

BACKGROUND

Protein deformation has been extensively analysed through global methods based on RMSD, torsion angles and Principal Components Analysis calculations. Here we use a local approach, able to distinguish among the different backbone conformations within loops, α-helices and β-strands, to address the question of secondary structures' shape variation within proteins and deformation at interface upon complexation.

RESULTS

Using a structural alphabet, we translated the 3 D structures of large sets of protein-protein complexes into sequences of structural letters. The shape of the secondary structures can be assessed by the structural letters that modeled them in the structural sequences. The distribution analysis of the structural letters in the three protein compartments (surface, core and interface) reveals that secondary structures tend to adopt preferential conformations that differ among the compartments. The local description of secondary structures highlights that curved conformations are preferred on the surface while straight ones are preferred in the core. Interfaces display a mixture of local conformations either preferred in core or surface. The analysis of the structural letters transition occurring between protein-bound and unbound conformations shows that the deformation of secondary structure is tightly linked to the compartment preference of the local conformations.

CONCLUSION

The conformation of secondary structures can be further analysed and detailed thanks to a structural alphabet which allows a better description of protein surface, core and interface in terms of secondary structures' shape and deformation. Induced-fit modification tendencies described here should be valuable information to identify and characterize regions under strong structural constraints for functional reasons.

摘要

背景

蛋白质变形已通过基于均方根偏差(RMSD)、扭转角和主成分分析计算的全局方法进行了广泛分析。在此,我们采用一种局部方法,该方法能够区分环、α螺旋和β链内的不同主链构象,以解决蛋白质内二级结构形状变化以及复合物形成时界面处变形的问题。

结果

使用一种结构字母表,我们将大量蛋白质 - 蛋白质复合物的三维结构转化为结构字母序列。二级结构的形状可以通过在结构序列中对其进行建模的结构字母来评估。对三个蛋白质区域(表面、核心和界面)中结构字母的分布分析表明,二级结构倾向于采用在不同区域中有所不同的优先构象。二级结构的局部描述突出显示,表面上弯曲构象更受青睐,而核心中直线构象更受青睐。界面呈现出核心或表面中偏好的局部构象的混合。对蛋白质结合态和未结合态构象之间发生的结构字母转变的分析表明,二级结构的变形与局部构象的区域偏好紧密相关。

结论

借助结构字母表,可以进一步分析和详细描述二级结构的构象,这有助于从二级结构的形状和变形方面更好地描述蛋白质的表面、核心和界面。此处描述的诱导契合修饰趋势对于识别和表征因功能原因受到强结构约束的区域应是有价值的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f109/3224362/c1b7a8d34352/1472-6807-11-9-1.jpg

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