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设计的α-螺旋肽D,L-α-1在0.75埃分辨率结构中的中心对称双层

Centrosymmetric bilayers in the 0.75 A resolution structure of a designed alpha-helical peptide, D,L-Alpha-1.

作者信息

Patterson W R, Anderson D H, DeGrado W F, Cascio D, Eisenberg D

机构信息

Molecular Biology Institute at UCLA and the Department of Chemistry and Biochemistry, University of California, Los Angeles 90095-1570, USA.

出版信息

Protein Sci. 1999 Jul;8(7):1410-22. doi: 10.1110/ps.8.7.1410.

DOI:10.1110/ps.8.7.1410
PMID:10422829
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2144380/
Abstract

We report the 0.75 A crystal structure of a racemic mixture of the 12-residue designed peptide "Alpha-1" (Acetyl-ELLKKLLEELKG), the L-enantiomer of which is described in the accompanying paper. Equivalent solutions of the centrosymmetric bilayers were determined by two direct phasing programs in space groups P1 and P1bar. The unit cell contains two L-alpha-helices and two D-alpha-helices. The columnar-sheet bilayer motif seen in L-Alpha-1 is maintained in the D,L-Alpha-1 structure except that each sheet of head-to-tail helices is composed of one enantiomer and is related to its neighboring sheets by inversion symmetry. Comparison to the L-Alpha-1 structure provides further insight into peptide design. The high resolution and small asymmetric unit allowed building an intricate model (R = 13.1%, Rfree = 14.5%) that incorporates much of the discrete disorder of peptide and solvent. Ethanolamine and 2-methyl-2,4-pentanediol (MPD) molecules bind near helix termini. Rigid body analysis identifies sites of restricted displacements and torsions. Side-chain discrete disorder propagates into the backbone of one helix but not the other. Although no side chain in Alpha-1 is rigid, the environments in the crystal restrict some of them to no or only one active torsion.

摘要

我们报道了12个残基的设计肽“Alpha-1”(乙酰基-ELLKKLLEELKG)外消旋混合物的0.75 Å晶体结构,其L-对映体在随附论文中已有描述。通过空间群P1和P1bar中的两个直接定相程序确定了中心对称双层的等效解。晶胞包含两个L-α-螺旋和两个D-α-螺旋。在L-Alpha-1中看到的柱状片层双层基序在D,L-Alpha-1结构中得以保留,不同的是,每一片头对头螺旋由一种对映体组成,并且通过反演对称与其相邻片层相关。与L-Alpha-1结构的比较为肽设计提供了进一步的见解。高分辨率和小不对称单元使得构建一个复杂模型(R = 13.1%,Rfree = 14.5%)成为可能,该模型纳入了肽和溶剂的许多离散无序特征。乙醇胺和2-甲基-2,4-戊二醇(MPD)分子在螺旋末端附近结合。刚体分析确定了受限位移和扭转的位点。侧链离散无序延伸到一个螺旋的主链,但未延伸到另一个螺旋。尽管Alpha-1中没有侧链是刚性的,但晶体环境将其中一些侧链限制为无活性扭转或仅一个活性扭转。