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对带有疏水钉基序的螺旋模型肽中i,i + 5和i,i + 8疏水相互作用的分析。

Analysis of i,i+5 and i,i+8 hydrophobic interactions in a helical model peptide bearing the hydrophobic staple motif.

作者信息

Muñoz V, Serrano L

机构信息

EMBL, Heidelberg, Germany.

出版信息

Biochemistry. 1995 Nov 21;34(46):15301-6. doi: 10.1021/bi00046a039.

DOI:10.1021/bi00046a039
PMID:7578146
Abstract

In this work we have analyzed by far-UV circular dichroism the contribution to alpha-helix stability of pairwise hydrophobic interactions in the hydrophobic staple motif [Muñoz et al. (1995) Nat. Struct. Biol. 2, 380-385]. For this, we have used a new series of alanine-based model peptides having a capping-box motif (Ser-X-X-Glu) and no other charged residues to facilitate the determination of the interaction energies with a helix/coil transition algorithm. Our results show that the favorable i,i+5 interaction between a hydrophobic residue (Leu, Met, Ile, Val, Phe) at position N' (before the N-cap) and a Leu at position N+4 (inside the helix) contributes up to -1.48 +/- 0.18 kcal/mol to alpha-helix stability at 278 and pH 7. More interestingly, the same hydrophobic residues at position N' interact favorably with an Ala at position N+4, although the interaction is weaker than that with Leu (up to -0.8 +/- 0.14 kcal/mol at 278 K and pH 7). To our knowledge, this is the first example in which a strong pairwise interaction with Ala is described and suggests that Ala could be less neutral in terms of side chain-side chain interactions than normally assumed. We observe a strong stereospecificity for the position N' which could be explained based on the extreme rigidity imposed by the formation in phase of the hydrophobic staple and capping-box motifs, as is seen in the protein structure database. We have also investigated the contribution to alpha-helix stability of a geometrically feasible i,i+8 hydrophobic interaction between residues N' and N+7.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在本研究中,我们通过远紫外圆二色性分析了疏水钉基序中两两疏水相互作用对α-螺旋稳定性的贡献[穆尼奥斯等人(1995年),《自然结构生物学》,第2卷,第380 - 385页]。为此,我们使用了一系列新的基于丙氨酸的模型肽,这些肽具有封端盒基序(Ser-X-X-Glu)且无其他带电残基,以便利用螺旋/卷曲转变算法确定相互作用能。我们的结果表明,在N'位置(N端封端之前)的疏水残基(亮氨酸、甲硫氨酸、异亮氨酸、缬氨酸、苯丙氨酸)与N + 4位置(螺旋内部)的亮氨酸之间有利的i,i + 5相互作用,在278K和pH 7条件下对α-螺旋稳定性的贡献高达-1.48±0.18千卡/摩尔。更有趣的是,N'位置的相同疏水残基与N + 4位置的丙氨酸也存在有利相互作用,尽管这种相互作用比与亮氨酸的相互作用弱(在278K和pH 7条件下高达-0.8±0.14千卡/摩尔)。据我们所知,这是首次描述与丙氨酸存在强两两相互作用的实例,表明丙氨酸在侧链-侧链相互作用方面可能不像通常假设的那样呈中性。我们观察到N'位置具有很强的立体特异性,这可以基于疏水钉和封端盒基序在相形成时所施加的极端刚性来解释,正如在蛋白质结构数据库中所看到的那样。我们还研究了残基N'和N + 7之间几何上可行的i,i + 8疏水相互作用对α-螺旋稳定性的贡献。(摘要截断于250字)

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