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含 N-端二脯氨酸片段的六肽的螺旋构象。

Helical conformations of hexapeptides containing N-terminus diproline segments.

机构信息

Molecular Biophysics Unit, Indian Institute of Science, Bangalore, India.

出版信息

Biopolymers. 2010;94(3):360-70. doi: 10.1002/bip.21395.

Abstract

The role of N-terminus diproline segments in facilitating helical folding in short peptides has been investigated in a set of model hexapeptides of the type Piv-Xxx-Yyy-Aib-Leu-Aib-Phe-OMe (Piv, pivaloyl). Nine sequences have been investigated with the following N-terminus dipeptide segments: (D)Pro-Ala (4) and Pro-PsiPro (5, Psi, pseudoproline), Ala-Ala (6), Ala-Pro (7), Pro-Ala (8), Aib-Ala (9), Ala-Aib (10). The analog sequences Piv-Pro-Pro-Ala-Leu-Aib-Phe-OMe (2) and Piv-Pro-Pro-Ala-Aib-Ala-Aib-OMe (3) have also been studied. Solid state conformations have been determined by X-ray crystallography for peptides 4, 6, and 8 and compared with the previously determined crystal structure of peptide 1 (Boc-Pro-Pro-Aib-Leu-Aib-Val-OMe); (Rai et al., JACS 2006, 128, 7916-7928). Peptides 1 and 6 adopt almost identical helical conformations with unfolding of the helix at the N-terminus Pro (1) residue. Peptide 4 reveals the anticipated (D)Pro-Ala type II' beta-turn, followed by a stretch of 3(10)-helix. Peptide 8 adopts a folded conformation stabilized by four successive 4-->1 intramolecular hydrogen bonds. Ala (2) adopts an alpha(L) conformation, resulting in a type II beta-turn conformation followed by a stretch of 3(10)-helix. Conformational properties in solution were probed using solvent perturbation of NH chemical shifts which permit delineation of hydrogen bonded NH groups and nuclear Overhauser effects (NOEs) between backbone protons, which are diagnostic of local residue conformations. The results suggest that, continuous helical conformations are indeed significantly populated for peptides 2 and 3. Comparison of the results for peptides 1 and 2, suggest that there is a significant influence of the residue that follows diproline segments in influencing backbone folding.

摘要

已在一组 Piv-XXX-YYy-Aib-Leu-Aib-Phe-Ome(Piv,特戊酰基)类型的模型六肽中研究了 N 端二肽段在促进短肽螺旋折叠中的作用。已经研究了九个序列,其 N 端二肽段如下:(D)Pro-Ala(4)和 Pro-PsiPro(5,Psi,假脯氨酸),Ala-Ala(6),Ala-Pro(7),Pro-Ala(8),Aib-Ala(9),Ala-Aib(10)。还研究了类似的序列 Piv-Pro-Pro-Ala-Leu-Aib-Phe-Ome(2)和 Piv-Pro-Pro-Ala-Aib-Ala-Aib-Ome(3)。通过 X 射线晶体学确定了肽 4、6 和 8 的固态构象,并与先前确定的肽 1(Boc-Pro-Pro-Aib-Leu-Aib-Val-Ome)的晶体结构进行了比较;(Rai 等人,JACS 2006,128,7916-7928)。肽 1 和 6 采用几乎相同的螺旋构象,N 端 Pro(1)残基的螺旋展开。肽 4 显示出预期的(D)Pro-Ala 型 II'β-转角,随后是一段 3(10)-螺旋。肽 8 采用通过四个连续的 4->1 分子内氢键稳定的折叠构象。Ala(2)采用α(L)构象,导致 II 型β-转角构象,随后是一段 3(10)-螺旋。使用溶剂扰动 NH 化学位移来探测溶液中的构象性质,这允许描绘氢键 NH 基团和核奥弗豪瑟效应(NOE)之间的骨架质子,这些是局部残基构象的诊断。结果表明,连续的螺旋构象确实在肽 2 和 3 中大量存在。肽 1 和 2 的结果比较表明,二肽段后面的残基对骨架折叠有显着影响。

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