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首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >Influence of medium- and long-range interactions in different folding types of globular proteins.
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Influence of medium- and long-range interactions in different folding types of globular proteins.

机译:中和远距离相互作用对不同折叠类型的球状蛋白的影响。

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摘要

Recognition of protein fold from amino acid sequence is a challenging task. The structure and stability of proteins from different fold are mainly dictated by inter-residue interactions. In our earlier work, we have successfully used the medium- and long-range contacts for predicting the protein folding rates, discriminating globular and membrane proteins and for distinguishing protein structural classes. In this work, we analyze the role of inter-residue interactions in commonly occurring folds of globular proteins in order to understand their folding mechanisms. In the medium-range contacts, the globin fold and four-helical bundle proteins have more contacts than that of DNA-RNA fold although they all belong to all-alpha class. In long-range contacts, only the ribonuclease fold prefers 4-10 range and the other folding types prefer the range 21-30 in alpha/beta class proteins. Further, the preferred residues and residue pairs influenced by these different folds are discussed. The information about the preference of medium- and long-range contacts exhibited by the 20 amino acid residues can be effectively used to predict the folding type of each protein.
机译:从氨基酸序列识别蛋白质折叠是一项艰巨的任务。来自不同倍数的蛋白质的结构和稳定性主要由残基间相互作用决定。在我们的早期工作中,我们成功地使用了中距离和远距离接触来预测蛋白质折叠速率,区分球状和膜状蛋白质以及区分蛋白质结构类别。在这项工作中,我们分析了残基间相互作用在球状蛋白常见折叠中的作用,以了解其折叠机制。在中程接触中,尽管球蛋白折叠和四螺旋束蛋白都属于全α类,但它们的接触比DNA-RNA折叠多。在长距离接触中,在alpha / beta类蛋白质中,仅核糖核酸折叠优先选择4-10范围,而其他折叠优先选择21-30。此外,讨论了受这些不同折叠影响的优选残基和残基对。由20个氨基酸残基表现出的中,远距离接触偏好的信息可以有效地用于预测每种蛋白质的折叠类型。

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