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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Role of medium- and long-range interactions in discriminating globular and membrane proteins
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Role of medium- and long-range interactions in discriminating globular and membrane proteins

机译:中长期相互作用在区分球状和膜蛋白中的作用

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摘要

The analysis of inter-residue interactions in protein structures provides considerable insight to understand their folding and stability. We have previously analyzed the role of medium- and long-range interactions in the folding of globular proteins. In this work, we study the distinct role of such interactions in the three-dimensional structures of membrane proteins. We observed a higher number of long-range contacts in the termini of transmembrane helical (TMH) segments, implying their role in the stabilization of helix-helix interactions. The transmembrane strand (TMS) proteins are having appreciably higher long-range contacts than that in all-beta class of globular proteins, indicating closer packing of the strands in TMS proteins. The residues in membrane spanning segments of TMH proteins have 1.3 times higher medium-range contacts than long-range contacts whereas that of TMS proteins have 14 times higher long-range contacts than medium-range contacts. Residue-wise analysis indicates that in TMH proteins, the residues Cys, Glu, Gly, Pro, Gin, Ser and Tyr have higher long-range contacts than medium-range contacts in contrast with all-alpha class of globular proteins. The charged residue pairs have higher medium-range contacts in all-alpha proteins, whereas hydrophobic residue pairs are dominant in TMH proteins. The information on the preference of residue pairs to form medium-range contacts has been successfully used to discriminate the TMH proteins from all-alpha proteins. The statistical significance of the results: obtained from the present study has been verified using randomized structures of TMH and TMS protein templates. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 53]
机译:蛋白质结构中残基间相互作用的分析为理解其折叠和稳定性提供了可观的见解。我们以前已经分析了中性和远距离相互作用在球状蛋白折叠中的作用。在这项工作中,我们研究了这种相互作用在膜蛋白三维结构中的独特作用。我们观察到跨膜螺旋(TMH)节的末端中的大量的远程接触,这暗示它们在稳定螺旋-螺旋相互作用中的作用。跨膜链(TMS)蛋白的远距离接触远比全β类球状蛋白高,这表明该链在TMS蛋白中的堆积更紧密。 TMH蛋白的跨膜片段中的残基的中距离接触是长距离接触的1.3倍,而TMS蛋白的长距离接触是中距离接触的14倍。残基分析表明,在TMH蛋白中,与全α类球形蛋白相比,Cys,Glu,Gly,Pro,Gin,Ser和Tyr残基具有比中等范围更高的远距离接触。带电荷的残基对在全α蛋白中具有较高的中程接触,而疏水性残基对在TMH蛋白中占主导地位。有关残基对形成中等距离接触的偏好信息已成功用于区分TMH蛋白和全α蛋白。结果的统计意义:使用TMH和TMS蛋白模板的随机结构已验证了从本研究中获得的结果。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:53]

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