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氢键形成潜力的满足情况会影响极性侧链的保守性。

Satisfaction of hydrogen-bonding potential influences the conservation of polar sidechains.

作者信息

Worth Catherine L, Blundell Tom L

机构信息

Biochemistry Department, University of Cambridge, Cambridge, United Kingdom.

出版信息

Proteins. 2009 May 1;75(2):413-29. doi: 10.1002/prot.22248.

Abstract

Although polar amino acids tend to be found on the surface of proteins due to their hydrophilic nature, their important roles within the core of proteins are now becoming better recognized. It has long been understood that a significant number of mainchain functions will not achieve hydrogen bond satisfaction through the formation of secondary structures; in these circumstances, it is generally buried polar residues that provide hydrogen bond satisfaction. Here, we describe an analysis of the hydrogen-bonding of polar amino acids in a set of structurally aligned protein families. This allows us not only to calculate the conservation of each polar residue but also to assess whether conservation is correlated with the hydrogen-bonding potential of polar sidechains. We show that those polar sidechains whose hydrogen-bonding potential is satisfied tend to be more conserved than their unsatisfied or nonhydrogen-bonded counterparts, particularly when buried. Interestingly, these buried and satisfied polar residues are significantly more conserved than buried hydrophobic residues. Forming hydrogen bonds to mainchain amide atoms also influences conservation, with those satisfied buried polar residues that form two hydrogen bonds to mainchain amides being significantly more conserved than those that form only one or none. These results indicate that buried polar residues whose hydrogen-bonding potential is satisfied are likely to have important roles in maintaining protein structure.

摘要

尽管极性氨基酸由于其亲水性往往存在于蛋白质表面,但它们在蛋白质核心区域的重要作用如今正得到更好的认识。长期以来人们都明白,相当数量的主链功能无法通过形成二级结构来实现氢键饱和;在这些情况下,通常是埋藏的极性残基提供了氢键饱和。在此,我们描述了对一组结构对齐的蛋白质家族中极性氨基酸氢键作用的分析。这不仅使我们能够计算每个极性残基的保守性,还能评估保守性是否与极性侧链的氢键潜力相关。我们发现,那些氢键潜力得到满足的极性侧链往往比未满足或未形成氢键的对应侧链更保守,尤其是在埋藏状态下。有趣的是,这些埋藏且氢键饱和的极性残基比埋藏的疏水残基保守得多。与主链酰胺原子形成氢键也会影响保守性,那些与主链酰胺形成两个氢键的埋藏且氢键饱和的极性残基比只形成一个或不形成氢键的极性残基保守得多。这些结果表明,氢键潜力得到满足的埋藏极性残基可能在维持蛋白质结构中发挥重要作用。

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