Pokkuluri P R, Yang X, Londer Y Y, Schiffer M
Biosciences Division, Argonne National Laboratory, Lemont, IL 60439, USA.
J Struct Funct Genomics. 2012 Dec;13(4):227-32. doi: 10.1007/s10969-012-9147-1. Epub 2012 Oct 26.
PpcA is a small protein with 71 residues that contains three covalently bound hemes. The structures of single mutants at residue 58 have shown larger deviations in another part of the protein molecule than at the site of the mutation. Closer examination of the crystal packing has revealed the origin of this unexpected structural change. The site of mutation is within Van der Waals distance from another protein molecule related by a crystallographic twofold axis within the crystal. The structural changes occurred at or near the mutation site have led to a slight adjustment of the surface residues in contact. The observed deviations between the native and the mutant molecular structures are derived from the new crystal packing even though the two crystals are essentially isomorphous. Without careful consideration of the crystal lattice a non-expert looking at only the coordinates deposited in the Protein Data Bank could draw erroneous conclusion that mutation in one part of the molecule affected the structure of the protein in a distant part of the molecule.
PpcA是一种由71个残基组成的小蛋白,含有三个共价结合的血红素。58位单突变体的结构显示,蛋白质分子的另一部分比突变位点处有更大的偏差。对晶体堆积的进一步研究揭示了这种意外结构变化的起源。突变位点与晶体中通过晶体学二重轴相关的另一个蛋白质分子处于范德华距离内。在突变位点或其附近发生的结构变化导致了接触表面残基的轻微调整。尽管这两个晶体基本同晶型,但天然分子结构和突变分子结构之间观察到的偏差源于新的晶体堆积。如果不仔细考虑晶格,仅查看蛋白质数据库中存档坐标的非专业人员可能会得出错误结论,即分子一部分的突变影响了分子遥远部分的蛋白质结构。