瞬时和专性蛋白质复合物结合位点上三维模式对的相互作用氨基酸偏好

Suryani Lukman, Kelvin Sim, Jinyan Li, Y. Chen
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引用次数: 11

摘要

为了评估蛋白质-蛋白质相互作用的物理化学特性,之前已经分析了蛋白质序列和整体结构折叠。为了强调这一点,在三维(3D)空间中由结构邻近定义的结合位点上发现和检查氨基酸模式是必不可少的。在本文中,我们研究了在瞬态和专性蛋白质复合物中分别发现的三维模式对的相互作用偏好。这些三维模式对不一定是序列连续的,但一个复合体中两个蛋白质的两组氨基酸中的每个残基与另一组中的大多数残基在一定的°a阈值内。我们开发了一种称为AA-pairs的算法,该算法将每对相互作用的蛋白质表示为一个二部图,并从每个二部图中发现所有最大的拟双曲线来形成我们的三维模式对。在瞬态和专性络合物中分别发现了112对和2533对高度保守的三维模式对,其中Ala和Leu是瞬态和专性络合物相互作用三维模式中出现频率最高的氨基酸,分别占20.91%和33.82%。从相互作用的三维模式对两侧的二肽组成的研究来看,二肽Ala-Ala和Ala-Leu在瞬态和专性配合物的三维模式中都很流行。具有较大疏水性差异的氨基酸之间的相互作用更多地出现在瞬态而不是专性配合物中。相反,在专性配合物中,疏水残基之间的相互作用占据了前5个最常见的氨基酸配对。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interacting Amino Acid Preferences of 3D Pattern Pairs at the Binding Sites of Transient and Obligate Protein Complexes
To assess the physico-chemical characteristics of protein-protein interactions, protein sequences and overall structural folds have been analyzed previously. To highlight this, discovery and examination of amino acid patterns at the binding sites defined by structural proximity in 3-dimensional (3D) space are essential. In this paper, we investigate the interacting preferences of 3D pattern pairs discovered separately in transient and obligate protein complexes. These 3D pattern pairs are not necessarily sequence-consecutive, but each residue in two groups of amino acids from two proteins in a complex is within certain °A threshold to most residues in the other group. We develop an algorithm called AA-pairs by which every pair of interacting proteins is represented as a bipartite graph, and it discovers all maximal quasi-bicliques from every bipartite graph to form our 3D pattern pairs. From 112 and 2533 highly conserved 3D pattern pairs discovered in the transient and obligate complexes respectively, we observe that Ala and Leu is the highest occuring amino acid in interacting 3D patterns of transient (20.91%) and obligate (33.82%) complexes respectively. From the study on the dipeptide composition on each side of interacting 3D pattern pairs, dipeptides Ala-Ala and Ala-Leu are popular in 3D patterns of both transient and obligate complexes. The interactions between amino acids with large hydrophobicity difference are present more in the transient than in the obligate complexes. On contrary, in obligate complexes, interactions between hydrophobic residues account for the top 5 most occuring amino acid pairings.
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