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细菌基因组中不变肽序列的构象分析

Conformational analysis of invariant peptide sequences in bacterial genomes.

作者信息

Prakash Tulika, Ramakrishnan C, Dash Debasis, Brahmachari Samir K

机构信息

G.N.R. Knowledge Centre for Genome Informatics, Institute of Genomics and Integrative Biology, CSIR, Mall Road, Delhi 110007, India.

出版信息

J Mol Biol. 2005 Feb 4;345(5):937-55. doi: 10.1016/j.jmb.2004.11.008. Epub 2004 Dec 16.

Abstract

The functional significance of evolutionarily conserved motifs/patterns of short regions in proteins is well documented. Although a large number of sequences are conserved, only a small fraction of these are invariant across several organisms. Here, we have examined the structural features of the functionally important peptide sequences, which have been found invariant across diverse bacterial genera. Ramachandran angles (phi,psi) have been used to analyze the conformation, folding patterns and geometrical location (buried/exposed) of these invariant peptides in different crystal structures harboring these sequences. The analysis indicates that the peptides preferred a single conformation in different protein structures, with the exception of only a few longer peptides that exhibited some conformational variability. In addition, it is noticed that the variability of conformation occurs mainly due to flipping of peptide units about the virtual C(alpha)...C(alpha) bond. However, for a given invariant peptide, the folding patterns are found to be similar in almost all the cases. Over and above, such peptides are found to be buried in the protein core. Thus, we can safely conclude that these invariant peptides are structurally important for the proteins, since they acquire unique structures across different proteins and can act as structural determinants (SD) of the proteins. The location of these SD peptides on the protein chain indicated that most of them are clustered towards the N-terminal and middle region of the protein with the C-terminal region exhibiting low preference. Another feature that emerges out of this study is that some of these SD peptides can also play the roles of "fold boundaries" or "hinge nucleus" in the protein structure. The study indicates that these SD peptides may act as chain-reversal signatures, guiding the proteins to adopt appropriate folds. In some cases the invariant signature peptides may also act as folding nuclei (FN) of the proteins.

摘要

蛋白质中短区域进化保守基序/模式的功能意义已有充分记载。虽然大量序列是保守的,但其中只有一小部分在多种生物体中是不变的。在这里,我们研究了功能重要的肽序列的结构特征,这些序列在不同细菌属中是不变的。使用拉马钱德兰角(φ,ψ)来分析这些不变肽在含有这些序列的不同晶体结构中的构象、折叠模式和几何位置(埋藏/暴露)。分析表明,除了少数较长的肽表现出一些构象变异性外,这些肽在不同蛋白质结构中倾向于单一构象。此外,还注意到构象变异性主要是由于肽单元围绕虚拟的Cα...Cα键翻转所致。然而,对于给定的不变肽,几乎在所有情况下其折叠模式都相似。除此之外,发现这些肽埋藏在蛋白质核心中。因此,我们可以有把握地得出结论,这些不变肽对蛋白质在结构上很重要,因为它们在不同蛋白质中获得独特结构,并可作为蛋白质的结构决定因素(SD)。这些SD肽在蛋白质链上的位置表明,它们大多数聚集在蛋白质的N端和中间区域,而C端区域的偏好较低。这项研究还发现的另一个特征是,其中一些SD肽在蛋白质结构中还可以起到“折叠边界”或“铰链核”的作用。研究表明,这些SD肽可能作为链反转特征,引导蛋白质采用适当的折叠。在某些情况下,不变的特征肽也可能作为蛋白质的折叠核(FN)。

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