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Simple Models of the Protein Folding Problem

机译:蛋白质折叠问题的简单模型

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The protein folding problem has attracted an increasing attention from physicists. The problem has a flavor of statistical mechanics, but possesses the most common feature of most biological problems - the profound effects of evolution. I will give an introduction to the problem, and then focus on some recent work concerning the so-called ''designability principle". The designability of a structure is measured by the number of sequences that have that structure as their unique ground state. Structures differ drastically in terms of their designability: highly designable structures emerge with a number of associated sequences much larger than the average. These highly designable structures 1) possess "proteinlike" secondary structures and motifs, 2) are thermodynamically more stable, and 3) fold faster than other structures. These results suggest that protein structures are selected in nature because they are readily designed and stable against mutations, and that such selection simultaneously leads to thermodynamic stability and foldability. According to this picture, a key to the protein folding problem is to understand the emergence and the properties of the highly designable structures.
机译:蛋白质折叠问题已引起物理学家越来越多的关注。该问题具有统计力学的特征,但具有大多数生物学问题的最共同特征-进化的深远影响。我将对该问题做一个介绍,然后集中讨论一些有关所谓的“可设计性原理”的最新工作,结构的可设计性由具有该结构作为其唯一基态的序列数来衡量。在可设计性方面大不相同:高度可设计的结构出现,其相关序列比平均序列大得多;这些高度可设计的结构1)具有“蛋白样”二级结构和基序; 2)在热力学上更稳定; 3)折叠这些结果表明蛋白质结构是自然选择的,因为它们易于设计且对突变稳定,并且这种选择同时导致热力学稳定性和可折叠性。了解高度可设计的结构的出现和特性。

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