Patki Aniruddha U, Hausrath Andrew C, Cordes Matthew H J
Department of Biochemistry and Molecular Biophysics, University of Arizona, Tucson, AZ 85721, USA.
J Mol Biol. 2006 Sep 29;362(4):800-9. doi: 10.1016/j.jmb.2006.07.055. Epub 2006 Jul 29.
Native protein structures achieve stability in part by burying hydrophobic side-chains. About 75% of all amino acid residues buried in protein interiors are non-polar. Buried residues are not uniformly distributed in protein sequences, but sometimes cluster as contiguous polypeptide stretches that run through the interior of protein domain structures. Such regions have an intrinsically high local sequence density of non-polar residues, creating a potential problem: local non-polar sequences also promote protein misfolding and aggregation into non-native structures such as the amyloid fibrils in Alzheimer's disease. Here we show that long buried blocks of sequence in protein domains of known structure have, on average, a lower content of non-polar amino acids (about 70%) than do isolated buried residues (about 80%). This trend is observed both in small and in large protein domains and is independent of secondary structure. Long, completely non-polar buried stretches containing many large side-chains are particularly avoided. Aspartate residues that are incorporated in long buried stretches were found to make fewer polar interactions than those in short stretches, hinting that they may be destabilizing to the native state. We suggest that evolutionary pressure is acting on non-native properties, causing buried polar residues to be placed at positions where they would break up aggregation-prone non-polar sequences, perhaps even at some cost to native state stability.
天然蛋白质结构部分通过掩埋疏水侧链来实现稳定性。埋入蛋白质内部的所有氨基酸残基中约75%是非极性的。埋藏的残基在蛋白质序列中并非均匀分布,而是有时会聚集成贯穿蛋白质结构域内部的连续多肽片段。这些区域具有本质上较高的局部非极性残基序列密度,从而产生了一个潜在问题:局部非极性序列也会促进蛋白质错误折叠并聚集形成非天然结构,如阿尔茨海默病中的淀粉样纤维。在这里,我们表明,已知结构的蛋白质结构域中长的埋藏序列块平均而言,其非极性氨基酸含量(约70%)低于孤立的埋藏残基(约80%)。在小的和大的蛋白质结构域中都观察到了这种趋势,并且与二级结构无关。特别要避免含有许多大侧链的长的、完全非极性的埋藏片段。发现在长的埋藏片段中掺入的天冬氨酸残基比在短片段中形成的极性相互作用更少,这表明它们可能会破坏天然状态的稳定性。我们认为进化压力作用于非天然特性,导致埋藏的极性残基被放置在能够破坏易于聚集的非极性序列的位置,甚至可能以一定程度牺牲天然状态的稳定性为代价。