Janin J, Rodier F
Laboratoire de Biologie Structurale, CNRS-Université Paris-Sud, Gif-sur-Yvette, France.
Proteins. 1995 Dec;23(4):580-7. doi: 10.1002/prot.340230413.
Packing contacts are crystal artifacts, yet they make use of the same forces that govern specific recognition in protein-protein complexes and oligomeric proteins. They provide examples of a nonspecific protein-protein interaction which can be compared to biologically relevant ones. We evaluate the number and size of pairwise interfaces in 152 crystal forms where the asymmetric unit contains a monomeric protein. In those crystal forms that have no element of 2-fold symmetry, we find that molecules form 8 to 10 pairwise interfaces. The total area of the surface buried on each molecule is large, up to 4400 A2. Pairwise interfaces bury 200-1200 A2, like interfaces generated at random in a computer simulation, and less than interfaces in protease-inhibitor or antigen-antibody complexes, which bury 1500 A2 or more. Thus, specific contacts occurring in such complexes extend over a larger surface than nonspecific ones. In crystal forms with 2-fold symmetry, pairwise interfaces are fewer and larger on average than in the absence of 2-fold symmetry. Some bury 1500-2500 A2, like interfaces in oligomeric proteins, and create "crystal oligomers" which may have formed in the solution before crystallizing.
堆积接触是晶体假象,但它们利用了与蛋白质 - 蛋白质复合物和寡聚蛋白中特定识别相同的作用力。它们提供了非特异性蛋白质 - 蛋白质相互作用的例子,可与生物学上相关的相互作用进行比较。我们评估了152种晶体形式中不对称单元包含单体蛋白的成对界面的数量和大小。在那些没有二次对称轴元素的晶体形式中,我们发现分子形成8到10个成对界面。每个分子上被掩埋的表面总面积很大,可达4400 Ų。成对界面掩埋200 - 1200 Ų,类似于计算机模拟中随机生成的界面,且小于蛋白酶 - 抑制剂或抗原 - 抗体复合物中的界面,后者掩埋1500 Ų或更多。因此,此类复合物中发生的特异性接触比非特异性接触覆盖的表面更大。在具有二次对称轴的晶体形式中,成对界面平均比没有二次对称轴时更少且更大。一些掩埋1500 - 2500 Ų,类似于寡聚蛋白中的界面,并形成“晶体寡聚体”,这些可能在结晶前就在溶液中形成了。