Department of Public Health and Primary Care, School of Medicine, University of Cambridge, Cambridge, United Kingdom.
Mol Biol Evol. 2023 Apr 4;40(4). doi: 10.1093/molbev/msad070.
It has been recently suggested that a significant fraction of homomer protein-protein interfaces evolve neutrally, without contributing to function, due to a hydrophobic bias in missense mutations. However, the fraction of such gratuitous complexes is currently unknown. Here, we quantified the fraction of homodimers where multimerization is unlikely to contribute to their biochemical function. We show that: 1) ligand binding-site structure predicts whether a homomer is functional or not; the vast majority of homodimers with multichain binding-sites (MBS) are likely to be functional, while in homodimers with single-chain binding-sites (SBS) and small to medium interfaces, quaternary structure is unlikely to be functional in a significant fraction-35%, even up to 42%-of complexes; 2) the hydrophobicity of interfaces changes little with the strength of selection, and the amino acid composition of interfaces is shaped by the "hydrophobic ratchet" in both types, but they are not in a strict equilibrium with mutations; particularly cysteines are much more abundant in mutations than in interfaces or surfaces; 3) in MBS homomers, the interfaces are conserved, while in a high fraction of SBS homomers, the interface is not more conserved than the solvent-accessible surface; and 4) MBS homomer interfaces coevolve more strongly with ligand binding sites than the interfaces of SBS homomers, and MBS complexes have higher capacity to transfer information from ligands across the interfaces than SBS homomers, explaining the enrichment of allostery in the former.
最近有人提出,由于错义突变中的疏水性偏见,很大一部分同源蛋白-蛋白界面的进化是中性的,不会对功能产生影响。然而,目前还不知道这种免费复合物的比例。在这里,我们量化了同源二聚体中,多聚化不太可能对其生化功能有贡献的比例。我们表明:1)配体结合位点的结构预测同源二聚体是否具有功能;具有多链结合位点(MBS)的同源二聚体绝大多数可能是功能性的,而在具有单链结合位点(SBS)和小到中等界面的同源二聚体中,即使在高达 42%的复合物中,四级结构也不太可能在很大一部分(35%)中具有功能;2)界面的疏水性与选择的强度变化不大,界面的氨基酸组成受到两种类型的“疏水性棘轮”的影响,但它们与突变没有严格的平衡;特别是半胱氨酸在突变中比在界面或表面中丰富得多;3)在 MBS 同源二聚体中,界面是保守的,而在很大一部分 SBS 同源二聚体中,界面不如溶剂可及表面保守;4)MBS 同源二聚体界面与配体结合位点的协同进化比 SBS 同源二聚体界面更强,MBS 复合物在界面上从配体传递信息的能力比 SBS 同源二聚体更强,这解释了前者的变构作用的富集。