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带电荷氨基酸侧链长度对β发夹中环状结构中含羧基残基与赖氨酸类似物之间的侧向跨链相互作用的影响。

Effect of charged amino acid side chain length on lateral cross-strand interactions between carboxylate-containing residues and lysine analogues in a β-hairpin.

机构信息

Department of Chemistry, National Taiwan University , Taipei 10617, Taiwan.

出版信息

Biochemistry. 2013 Dec 23;52(51):9212-22. doi: 10.1021/bi400974x. Epub 2013 Dec 12.

Abstract

β-Sheets are one of the fundamental three-dimensional building blocks for protein structures. Oppositely charged amino acids are frequently observed directly across one another in antiparallel sheet structures, suggesting the importance of cross-strand ion pairing interactions. Despite the apparent electrostatic nature of ion pairing interactions, the charged amino acids Asp, Glu, Arg, Lys have different numbers of hydrophobic methylenes linking the charged functionality to the backbone. Accordingly, the effect of charged amino acid side chain length on cross-strand ion pairing interactions at lateral non-hydrogen bonded positions was investigated in a β-hairpin motif. The negatively charged residues with a carboxylate (Asp, Glu, Aad in increasing length) were incorporated at position 4, and the positively charged residues with an ammonium (Dap, Dab, Orn, Lys in increasing length) were incorporated at position 9. The fraction folded population and folding free energy were derived from the chemical shift deviation data. Double mutant cycle analysis was used to determine the interaction energy for the potential lateral ion pairs. Only the Asp/Glu-Dap interactions with shorter side chains and the Aad-Orn/Lys interactions with longer side chains exhibited stabilizing energetics, mostly relying on electrostatics and hydrophobics, respectively. This suggested the need for length matching of the interacting residues to stabilize the β-hairpin motif. A survey of a nonredundant protein structure database revealed that the statistical sheet pair propensity followed the trend Asp-Lys < Glu-Lys, also implying the need for length matching of the oppositely charged residues.

摘要

β-折叠是蛋白质结构的基本三维构建块之一。在反平行的片层结构中,带相反电荷的氨基酸经常直接相互交叉,这表明了跨链离子配对相互作用的重要性。尽管离子配对相互作用具有明显的静电性质,但带电荷的氨基酸天冬氨酸、谷氨酸、精氨酸、赖氨酸的带电荷官能团与主链之间的疏水性亚甲基数量不同。因此,在 β-发夹模体中研究了带电荷氨基酸侧链长度对侧向非氢键位置的跨链离子配对相互作用的影响。在位置 4 处掺入带负电荷的带有羧基(天冬氨酸、谷氨酸、丙氨酸,长度逐渐增加)的残基,在位置 9 处掺入带正电荷的带有铵基(天冬氨酸、精氨酸、鸟氨酸、赖氨酸,长度逐渐增加)的残基。从化学位移偏差数据得出折叠种群分数和折叠自由能。双突变体循环分析用于确定潜在的横向离子对的相互作用能。只有较短侧链的 Asp/Glu-Dap 相互作用和较长侧链的 Aad-Orn/Lys 相互作用表现出稳定的能量,主要依赖于静电相互作用和疏水性相互作用。这表明需要相互作用残基的长度匹配来稳定 β-发夹模体。对非冗余蛋白质结构数据库的调查显示,统计片层对的倾向遵循 Asp-Lys < Glu-Lys 的趋势,这也暗示了需要带相反电荷的残基的长度匹配。

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