Bioinformatics Centre, Bose Institute, P-1/12 CIT Scheme VIIM, Calcutta 700 054, India.
J Mol Biol. 2010 Apr 23;398(1):146-60. doi: 10.1016/j.jmb.2010.02.020. Epub 2010 Feb 13.
We analyzed subunit interfaces in 315 homodimers with an X-ray structure in the Protein Data Bank, validated by checking the literature for data that indicate that the proteins are dimeric in solution and that, in the case of the "weak" dimers, the homodimer is in equilibrium with the monomer. The interfaces of the 42 weak dimers, which are smaller by a factor of 2.4 on average than in the remainder of the set, are comparable in size with antibody-antigen or protease-inhibitor interfaces. Nevertheless, they are more hydrophobic than in the average transient protein-protein complex and similar in amino acid composition to the other homodimer interfaces. The mean numbers of interface hydrogen bonds and hydration water molecules per unit area are also similar in homodimers and transient complexes. Parameters related to the atomic packing suggest that many of the weak dimer interfaces are loosely packed, and we suggest that this contributes to their low stability. To evaluate the evolutionary selection pressure on interface residues, we calculated the Shannon entropy of homologous amino acid sequences at 60% sequence identity. In 93% of the homodimers, the interface residues are better conserved than the residues on the protein surface. The weak dimers display the same high degree of interface conservation as other homodimers, but their homologs may be heterodimers as well as homodimers. Their interfaces may be good models in terms of their size, composition, and evolutionary conservation for the labile subunit contacts that allow protein assemblies to share and exchange components, allosteric proteins to undergo quaternary structure transitions, and molecular machines to operate in the cell.
我们分析了蛋白质数据库中 315 个具有 X 射线结构的同源二聚体的亚基界面,通过查阅文献验证了这些数据,这些数据表明这些蛋白质在溶液中是二聚体,并且在“弱”二聚体的情况下,同二聚体处于单体平衡状态。42 个弱二聚体的界面平均比其余二聚体小 2.4 倍,与抗体-抗原或蛋白酶-抑制剂的界面大小相当。然而,它们比平均瞬时蛋白质-蛋白质复合物更疏水,与其他同二聚体界面的氨基酸组成相似。单位面积的界面氢键和水合水分子的平均数量在同二聚体和瞬时复合物中也相似。与原子堆积相关的参数表明,许多弱二聚体界面的堆积松散,我们认为这导致它们的稳定性较低。为了评估界面残基的进化选择压力,我们计算了 60%序列同一性的同源氨基酸序列的香农熵。在 93%的同二聚体中,界面残基比蛋白质表面的残基保存得更好。弱二聚体与其他同二聚体一样具有高度的界面保守性,但它们的同源物可能是同二聚体和异二聚体。它们的界面在允许蛋白质组装共享和交换组件、变构蛋白进行四级结构转变以及分子机器在细胞中运行的不稳定亚基接触方面,在大小、组成和进化保守性方面可能是很好的模型。