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链球菌蛋白G的β-转角模拟修饰B1结构域的合成、折叠及结构

Synthesis, folding, and structure of the beta-turn mimic modified B1 domain of streptococcal protein G.

作者信息

Odaert B, Jean F, Boutillon C, Buisine E, Melnyk O, Tartar A, Lippens G

机构信息

Laboratoire Synthèse, Structure, Fonction des Biomolécules UMR 8525, Institut de Biologie de Lille, Institut Pasteur de Lille, France.

出版信息

Protein Sci. 1999 Dec;8(12):2773-83. doi: 10.1110/ps.8.12.2773.

Abstract

The mechanism of beta-sheet formation remains a fundamental issue in our understanding of the protein folding process, but is hampered by the often encountered kinetic competition between folding and aggregation. The role of local versus nonlocal interactions has been probed traditionally by mutagenesis of both turn and strand residues. Recently, rigid organic molecules that impose a correct chain reversal have been introduced in several small peptides to isolate the importance of the long-range interactions. Here, we present the incorporation of a well-studied beta-turn mimic, designated as the dibenzofuran-based (DBF) amino acid, in the B1 domain of streptococcal protein G (B1G), and compare our results with those obtained upon insertion of the same mimic into the N-terminal beta-hairpin of B1G (O Melnyk et al., 1998, Lett Pept Sci 5:147-150). The DBF-B1G domain conserves the structure and the functional and thermodynamical properties of the native protein, whereas the modified peptide does not adopt a native-like conformation. The nature of the DBF flanking residues in the modified B1G domain prevents the beta-turn mimic from acting as a strong beta-sheet nucleator, which reinforces the idea that the native beta-hairpin formation is not driven by the beta-turn formation, but by tertiary interactions.

摘要

β-折叠形成的机制仍然是我们理解蛋白质折叠过程中的一个基本问题,但常常受到折叠与聚集之间动力学竞争的阻碍。传统上,通过对转角和链状残基进行诱变来探究局部相互作用与非局部相互作用的作用。最近,已将能强制实现正确链反转的刚性有机分子引入几种小肽中,以分离远距离相互作用的重要性。在此,我们展示了将一种经过充分研究的β-转角模拟物(称为基于二苯并呋喃的(DBF)氨基酸)掺入链球菌蛋白G(B1G)的B1结构域,并将我们的结果与将相同模拟物插入B1G的N端β-发夹结构中所获得的结果进行比较(O·梅尔尼克等人,1998年,《肽科学快报》5:147 - 150)。DBF - B1G结构域保留了天然蛋白质的结构以及功能和热力学性质,而修饰后的肽并未采用类似天然的构象。修饰后的B1G结构域中DBF侧翼残基的性质阻止了β-转角模拟物作为强大的β-折叠成核剂发挥作用这一情况,这强化了天然β-发夹结构的形成不是由β-转角的形成驱动,而是由三级相互作用驱动的观点。

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