首页> 外文期刊>Journal of Molecular Biology >RESIDUE-RESIDUE POTENTIALS WITH A FAVORABLE CONTACT PAIR TERM AND AN UNFAVORABLE HIGH PACKING DENSITY TERM, FOR SIMULATION AND THREADING
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RESIDUE-RESIDUE POTENTIALS WITH A FAVORABLE CONTACT PAIR TERM AND AN UNFAVORABLE HIGH PACKING DENSITY TERM, FOR SIMULATION AND THREADING

机译:用于模拟和螺纹加工的具有有利的接触对术语和不利的高包装密度术语的残基-残留电位

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Attractive inter-residue contact energies for proteins have been re-evaluated with the same assumptions and approximations used originally by us in 1985, but with a significantly larger set of protein crystal structures. An additional repulsive packing energy term, operative at higher densities to prevent overpacking, has also been estimated for all 20 amino acids as a function of the number of contacting residues, based on their observed distributions. The two terms of opposite sign are intended to be used together to provide an estimate of the overall energies of inter-residue interactions in simplified proteins without atomic details. To overcome the problem of how to utilize the many homologous proteins in the Protein Data Bank, a new scheme has been devised to assign different weights to each protein, based on similarities among amino acid sequences. A total of 1168 protein structures containing 1661 subunit sequences are actually used here. After the sequence weights have been applied, these correspond to an effective number of residue-residue contacts of 113,914, or about six times more than were used in the old analysis. Remarkably, the new attractive contact energies are nearly identical to the old ones, except for those with Leu and the rarer amino acids Trp and Met. The largest change found for Leu is surprising. The estimates of hydrophobicity from the contact energies for non-polar side-chains agree well with the experimental values. In an application of these contact energies, the sequences of 88 structurally distinct proteins in the Protein Data Bank are threaded at all possible positions without gaps into 189 different folds of proteins whose sequences differ from each other by at least 35% sequence identity. The native structures for 73 of 88 proteins, excluding 15 exceptional proteins such as membrane proteins, are all demonstrated to have the lowest alignment energies. (C) 1996 Academic Press Limited [References: 37]
机译:1985年我们最初使用的假设和近似值已重新评估了有吸引力的蛋白质间残基间接触能,但具有更大的一组蛋白质晶体结构。根据观察到的分布,还估计了所有20个氨基酸的另一个排斥性填充能项,该词可以在较高的密度下起作用,以防止过度堆积。打算将两个相反号的术语一起使用,以提供对没有原子细节的简化蛋白质中残基间相互作用的总能量的估计。为了克服如何利用蛋白质数据库中的许多同源蛋白质的问题,已经设计了一种新方案,基于氨基酸序列之间的相似性,为每种蛋白质分配不同的权重。这里实际使用了总共​​1168个包含1661个亚基序列的蛋白质结构。施加序列权重后,它们对应的有效残基-残基接触数为113,914,约为旧分析所用残数的六倍。值得注意的是,除了具有亮氨酸和稀有氨基酸Trp和Met的那些外,新的有吸引力的接触能几乎与旧的相同。 Leu发现的最大变化令人惊讶。从非极性侧链的接触能估计疏水性与实验值非常吻合。在这些接触能量的作用下,蛋白质数据库中88个结构上不同的蛋白质的序列在所有可能的位置无间隙地穿入189个不同折叠的蛋白质中,这些蛋白质的序列彼此之间至少相差35%。 88种蛋白质中的73种的天然结构(不包括15种例外的蛋白质,例如膜蛋白)均具有最低的排列能。 (C)1996 Academic Press Limited [参考文献:37]

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