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Lymphotactin: How a protein can adopt two folds

机译:淋巴细胞肌动蛋白:蛋白质如何吸收两倍

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摘要

Metamorphic proteins such as lymphotactin are a notable exception of the empirical principle that structured natural proteins possess a unique three-dimensional structure. In particular, the human chemokine lymphotactin protein exists in two distinct conformations (one monomeric and one dimeric) under physiological conditions. In this work, we use a C_α Go model to show how this very peculiar behavior can be reproduced. From the study of the thermodynamics and of the kinetics, we characterize the interconversion mechanism. In particular, this takes place through the docking of the two chains living in a third monomeric, partially unfolded, state which shows a residual structure involving a set of local contacts common to the two native conformations. The main feature of two fold proteins appears to be the sharing of a common set of local contacts between the two distinct folds as confirmed by the study of two designed two fold proteins. Metamorphic proteins may be more common than expected.
机译:变性蛋白(如淋巴动蛋白)是经验性原理的一个明显例外,该经验性原理是结构化天然蛋白具有独特的三维结构。特别地,人趋化因子淋巴肌动蛋白在生理条件下以两种不同的构型(一种单体和一种二聚体)存在。在这项工作中,我们使用C_αGo模型来演示如何再现这种非常特殊的行为。通过对热力学和动力学的研究,我们描述了相互转化的机理。特别地,这是通过将处于第三单体状态,部分未折叠状态的两条链对接来进行的,该状态显示了残留结构,该残留结构涉及两个天然构象共有的一组局部接触。两种折叠蛋白的主要特征似乎是两个不同折叠之间共享一组共同的局部接触,这一点已通过对两种设计的两种折叠蛋白的研究得到证实。变态蛋白可能比预期的更为普遍。

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