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胶原蛋白模型肽(Pro-Pro-Gly)4-Hyp-Asp-Gly-(Pro-Pro-Gly)4在1.0 Å分辨率下的晶体结构。

Crystal structure of the collagen model peptide (Pro-Pro-Gly)4-Hyp-Asp-Gly-(Pro-Pro-Gly)4 at 1.0 Å resolution.

作者信息

Okuyama Kenji, Kawaguchi Tatsuya, Shimura Masaki, Noguchi Keiichi, Mizuno Kazunori, Bächinger Hans Peter

机构信息

Department of Macromolecular Science, Graduate School of Science, Osaka University, Toyonaka, Osaka, 560-0043, Japan.

出版信息

Biopolymers. 2013 Jul;99(7):436-47. doi: 10.1002/bip.22198.

Abstract

The single-crystal structure of the collagen-like peptide (Pro-Pro-Gly)4 -Hyp-Asp-Gly-(Pro-Pro-Gly)4, was analyzed at 1.02 Å resolution. The overall average helical twist (θ = 49.6°) suggests that this peptide adopts a 7/2 triple-helical structure and that its conformation is very similar to that of (Gly-Pro-Hyp)9, which has the typical repeating sequence in collagen. High-resolution studies on other collagen-like peptides have shown that imino acid-rich sequences preferentially adopt a 7/2 triple-helical structure (θ = 51.4°), whereas imino acid-lean sequences adopt relaxed conformations (θ < 51.4°). The guest Gly-Hyp-Asp sequence in the present peptide, however, has a large helical twist (θ = 61.1°), whereas that of the host Pro-Pro-Gly sequence is small (θ = 46.7°), indicating that the relationship between the helical conformation and the amino acid sequence of such peptides is complex. In the present structure, a strong intermolecular hydrogen bond between two Asp residues on the A and B strands might induce the large helical twist of the guest sequence; this is compensated by a reduced helical twist in the host, so that an overall 7/2-helical symmetry is maintained. The Asp residue in the C strand might interact electrostatically with the N-terminus of an adjacent molecule, causing axial displacement, reminiscent of the D-staggered structure in fibrous collagens.

摘要

对类胶原蛋白肽(Pro-Pro-Gly)4 -Hyp-Asp-Gly-(Pro-Pro-Gly)4 的单晶结构进行了分辨率为1.02 Å 的分析。整体平均螺旋扭转角(θ = 49.6°)表明该肽采用7/2三螺旋结构,其构象与具有胶原蛋白典型重复序列的(Gly-Pro-Hyp)9 非常相似。对其他类胶原蛋白肽的高分辨率研究表明,富含亚氨基酸的序列优先采用7/2三螺旋结构(θ = 51.4°),而亚氨基酸含量少的序列则采用松弛构象(θ < 51.4°)。然而,本肽中的客体Gly-Hyp-Asp序列具有较大的螺旋扭转角(θ = 61.1°),而主体Pro-Pro-Gly序列的螺旋扭转角较小(θ = 46.7°),这表明此类肽的螺旋构象与氨基酸序列之间的关系很复杂。在当前结构中,A链和B链上两个Asp残基之间的强分子间氢键可能诱导客体序列产生较大的螺旋扭转;这通过主体螺旋扭转的减小得到补偿,从而维持整体的7/2螺旋对称性。C链中的Asp残基可能与相邻分子的N端发生静电相互作用,导致轴向位移,这让人联想到纤维状胶原蛋白中的D交错结构。

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