Izert Matylda Anna, Szybowska Patrycja Emanuela, Górna Maria Wiktoria, Merski Matthew
Structural Biology Group, Department of Chemistry, Biological and Chemical Research Centre, University of Warsaw, Warsaw, Poland.
Front Bioinform. 2021 Jul 6;1:696368. doi: 10.3389/fbinf.2021.696368. eCollection 2021.
Protein repeats are short, highly similar peptide motifs that occur several times within a single protein, for example the TPR and Ankyrin repeats. Understanding the role of mutation in these proteins is complicated by the competing facts that 1) the repeats are much more restricted to a set sequence than non-repeat proteins, so mutations should be harmful much more often because there are more residues that are heavily restricted due to the need of the sequence to repeat and 2) the symmetry of the repeats in allows the distribution of functional contributions over a number of residues so that sometimes no specific site is singularly responsible for function (unlike enzymatic active site catalytic residues). To address this issue, we review the effects of mutations in a number of natural repeat proteins from the tetratricopeptide and Ankyrin repeat families. We find that mutations are context dependent. Some mutations are indeed highly disruptive to the function of the protein repeats while mutations in identical positions in other repeats in the same protein have little to no effect on structure or function.
蛋白质重复序列是短的、高度相似的肽基序,在单个蛋白质中出现多次,例如四肽重复序列(TPR)和锚蛋白重复序列。由于以下相互矛盾的事实,理解这些蛋白质中突变的作用变得复杂:1)与非重复蛋白质相比,重复序列对特定序列的限制要大得多,因此突变更常具有危害性,因为由于序列重复的需要,有更多的残基受到严格限制;2)重复序列的对称性允许功能贡献分布在多个残基上,因此有时没有特定的位点单独负责功能(这与酶活性位点催化残基不同)。为了解决这个问题,我们综述了来自四肽重复序列和锚蛋白重复序列家族的一些天然重复蛋白中突变的影响。我们发现,突变是依赖于上下文的。一些突变确实对蛋白质重复序列的功能具有高度破坏性,而同一蛋白质中其他重复序列相同位置的突变对结构或功能几乎没有影响。