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The importance of sequence diversity in the aggregation and evolution of proteins

机译:序列多样性在蛋白质聚集和进化中的重要性

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Incorrect folding of proteins, leading to aggregation and amyloid formation, is associated with a group of highly debilitating medical conditions(1,2) including Alzheimer's disease and late-onset diabetes. The issue of how unwanted protein association is normally avoided in a living system is particularly significant in the context of the evolution of multidomain proteins, which account for over 70% of all eukaryotic proteins(3), where the effective local protein concentration in the vicinity of each domain is very high. Here we describe the aggregation kinetics of multidomain protein constructs of immunoglobulin domains and the ability of different homologous domains to aggregate together. We show that aggregation of these proteins is a specific process and that the efficiency of coaggregation between different domains decreases markedly with decreasing sequence identity. Thus, whereas immunoglobulin domains with more than about 70% identity are highly prone to coaggregation, those with less than 30 - 40% sequence identity do not detectably interact. A bioinformatics analysis of consecutive homologous domains in large multidomain proteins shows that such domains almost exclusively have sequence identities of less than 40%, in other words below the level at which coaggregation is likely to be efficient. We propose that such low sequence identities could have a crucial and general role in safeguarding proteins against misfolding and aggregation.
机译:蛋白质折叠不正确会导致聚集和淀粉样蛋白形成,这与包括阿尔茨海默氏病和迟发性糖尿病在内的一组高度虚弱的医学病症有关(1,2)。在多域蛋白质进化的背景下,通常如何避免在生命系统中不必要的蛋白质缔合的问题尤为重要,多域蛋白质占所有真核蛋白质的70%以上(3),其中有效的局部蛋白质浓度在附近每个域的百分比很高。在这里,我们描述了免疫球蛋白域的多域蛋白质构建体的聚集动力学以及不同同源域聚集在一起的能力。我们表明这些蛋白质的聚合是一个特定的过程,并且不同域之间的共聚合效率随着序列同一性的降低而显着降低。因此,尽管具有大于约70%同一性的免疫球蛋白结构域高度倾向于共聚集,但是具有小于30-40%序列同一性的那些免疫球蛋白结构域则不能检测到相互作用。对大型多域蛋白中连续同源域的生物信息学分析表明,此类域几乎完全具有小于40%的序列同一性,换句话说,低于可能发生高效聚集的水平。我们建议,这种低序列同一性可能在保护蛋白质免受错误折叠和聚集的影响中具有至关重要的作用。

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