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含 Aib-DAla 和 Aib-Aib 片段的短肽中链长对螺旋-发夹分布的影响。

Chain length effects on helix-hairpin distribution in short peptides with Aib-DAla and Aib-Aib segments.

机构信息

Molecular Biophysics Unit, Department of Physics, NMR Research Centre, Indian Institute of Science, Bangalore 560012, India.

出版信息

Biopolymers. 2011;96(6):744-56. doi: 10.1002/bip.21613. Epub 2011 Mar 7.

Abstract

The Aib-D Ala dipeptide segment has a tendency to form both type-I'/III' and type-I/III β-turns. The occurrence of prime turns facilitates the formation of β-hairpin conformations, while type-I/III turns can nucleate helix formation. The octapeptide Boc-Leu-Phe-Val-Aib-DAla-Leu-Phe-Val-OMe (1) has been previously shown to form a β-hairpin in the crystalline state and in solution. The effects of sequence truncation have been examined using the model peptides Boc-Phe-Val-Aib-Xxx-Leu-Phe-NHMe (2, 6), Boc-Val-Aib-Xxx-Leu-NHMe (3, 7), and Boc-Aib-Xxx-NHMe (4, 8), where Xxx=DAla, Aib. For peptides with central Aib-Aib segments, Boc-Phe-Val-Aib-Aib-Leu-Phe-NHMe (6), Boc-Val-Aib-Aib-Leu-NHMe (7), and Boc-Aib-Aib-NHMe (8) helical conformations have been established by NMR studies in both hydrogen bonding (CD3OH) and non-hydrogen bonding (CDCl3) solvents. In contrast, the corresponding hexapeptide Boc-Phe-Val-Aib-DAla-Leu-Phe-Val-NHMe (2) favors helical conformations in CDCl3 and β-hairpin conformations in CD3 OH. The β-turn conformations (type-I'/III) stabilized by intramolecular 4→1 hydrogen bonds are observed for the peptide Boc-Aib-D Ala-NHMe (4) and Boc-Aib-Aib-NHMe (8) in crystals. The tetrapeptide Boc-Val-Aib-Aib-Leu-NHMe (7) adopts an incipient 3(10)-helical conformation stabilized by three 4→1 hydrogen bonds. The peptide Boc-Val-Aib-DAla-Leu-NHMe (3) adopts a novel α-turn conformation, stabilized by three intramolecular hydrogen bonds (two 4→1 and one 5→1). The Aib-DAla segment adopts a type-I' β-turn conformation. The observation of an NOE between Val (1) NH↔HNCH3 (5) in CD3OH suggests, that the solid state conformation is maintained in methanol solutions.

摘要

Aib-D Ala 二肽段有形成 I'/III'和 I/III 型 β 转角的趋势。前体转角的出现促进了 β 发夹构象的形成,而 I/III 转角可以引发螺旋形成。先前已经证明 Boc-Leu-Phe-Val-Aib-DAla-Leu-Phe-Val-OMe(1)在结晶状态和溶液中形成 β 发夹。已经使用模型肽 Boc-Phe-Val-Aib-Xxx-Leu-Phe-NHMe(2、6)、Boc-Val-Aib-Xxx-Leu-NHMe(3、7)和 Boc-Aib-Xxx-NHMe(4、8)检查了序列截断的影响,其中 Xxx=DAla、Aib。对于具有中央 Aib-Aib 片段的肽,Boc-Phe-Val-Aib-Aib-Leu-Phe-NHMe(6)、Boc-Val-Aib-Aib-Leu-NHMe(7)和 Boc-Aib-Aib-NHMe(8)在氢键(CD3OH)和非氢键(CDCl3)溶剂中通过 NMR 研究建立了螺旋构象。相比之下,相应的六肽 Boc-Phe-Val-Aib-DAla-Leu-Phe-Val-NHMe(2)在 CDCl3 中有利于螺旋构象,在 CD3OH 中有利于β发夹构象。在晶体中观察到 Boc-Aib-D Ala-NHMe(4)和 Boc-Aib-Aib-NHMe(8)通过分子内 4→1 氢键稳定的β转角构象(I'/III 型)。四肽 Boc-Val-Aib-Aib-Leu-NHMe(7)通过三个 4→1 氢键稳定的初始 3(10)-螺旋构象。肽 Boc-Val-Aib-DAla-Leu-NHMe(3)采用新型的α-转角构象,由三个分子内氢键(两个 4→1 和一个 5→1)稳定。Aib-DAla 片段采用 I'型β转角构象。在 CD3OH 中观察到 Val(1)NH↔HNCH3(5)之间的 NOE,表明在甲醇溶液中保持了固态构象。

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