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一种由两个二硫键固定的α-螺旋发夹结构的合成与核磁共振溶液结构

Synthesis and NMR solution structure of an alpha-helical hairpin stapled with two disulfide bridges.

作者信息

Barthe P, Rochette S, Vita C, Roumestand C

机构信息

Centre de Biochimie Structurale, CNRS-UMR 9955, INSERM-U414, Université de Montpellier I, Faculté de Pharmacie, France.

出版信息

Protein Sci. 2000 May;9(5):942-55. doi: 10.1110/ps.9.5.942.

Abstract

Helical coiled-coils and bundles are some of the most common structural motifs found in proteins. Design and synthesis of alpha-helical motifs may provide interesting scaffolds that can be useful as host structures to display functional sites, thus allowing the engineering of novel functional miniproteins. We have synthesized a 38-amino acid peptide, alpha2p8, encompassing the alpha-helical hairpin present in the structure of p8MTCP1, as an alpha-helical scaffold particularly promising for its stability and permissiveness of sequence mutations. The three-dimensional structure of this peptide has been solved using homonuclear two-dimensional NMR techniques at 600 MHz. After sequence specific assignment, a total of 285 distance and 29 dihedral restraints were collected. The solution structure of alpha2p8 is presented as a set of 30 DIANA structures, further refined by restrained molecular dynamics, using simulated annealing protocol with the AMBER force field. The RMSD values for the backbone and all heavy atoms are 0.65+/-0.25 and 1.51+/-0.21 A, respectively. Excised from its protein context, the alpha-hairpin keeps its native structure: an alpha-helical coiled-coil, similar to that found in superhelical structures, with two helices spanning residues 4-16 and 25-36, and linked by a short loop. This motif is stabilized by two interhelical disulfide bridges and several hydrophobic interactions at the helix interface, leaving most of its solvent-exposed surface available for mutation. This alpha-helical hairpin, easily amenable to synthetic chemistry and biological expression system, may represent a stable and versatile scaffold to display new functional sites and peptide libraries.

摘要

螺旋卷曲螺旋和束状结构是蛋白质中一些最常见的结构基序。α-螺旋基序的设计与合成可能会提供有趣的支架,这些支架可用作展示功能位点的宿主结构,从而实现新型功能性小蛋白的工程化。我们合成了一种38个氨基酸的肽α2p8,它包含p8MTCP1结构中的α-螺旋发夹结构,作为一种α-螺旋支架,因其稳定性和序列突变的耐受性而特别有前景。该肽的三维结构已通过600 MHz的同核二维核磁共振技术解析。在进行序列特异性归属后,共收集到285个距离约束和29个二面角约束。α2p8的溶液结构以一组30个DIANA结构呈现,并使用AMBER力场的模拟退火协议通过受限分子动力学进一步优化。主链和所有重原子的均方根偏差(RMSD)值分别为0.65±0.25 Å和1.51±0.21 Å。从其蛋白质环境中切除后,α-发夹保持其天然结构:一种α-螺旋卷曲螺旋,类似于超螺旋结构中发现的结构,有两个螺旋,分别跨越第4 - 16位和第25 - 36位残基,并由一个短环连接。该基序通过两个螺旋间二硫键和螺旋界面处的若干疏水相互作用得以稳定,使其大部分溶剂暴露表面可用于突变。这种α-螺旋发夹易于进行合成化学和生物表达系统操作,可能代表一种稳定且通用的支架,用于展示新的功能位点和肽库。

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