Institute for Evolution and Biodiversity, School of Biological Sciences, University of Münster, Hüfferstrasse 1, D48149 Münster, Germany.
Curr Opin Struct Biol. 2013 Jun;23(3):459-66. doi: 10.1016/j.sbi.2013.02.012. Epub 2013 Apr 3.
During protein evolution, novel domain arrangements are continuously formed. Rearrangements are important for the creation of molecular biodiversity and for functional molecular changes which underlie developmental shifts in the bauplan of organisms. Here we review the mechanisms by which new arrangements arise and the potential benefits of rearrangements. We concentrate on how new domains emerge and why they rapidly spread across genomes, gaining higher copy numbers than older, more established domains. This spread is most likely a consequence of their high adaptive potential but is unlikely to make up on its own for the drastic loss of domains, which is observed across different taxa. We show that a significant portion of the recently emerged domains, especially those in multidomain families, are highly disordered and speculate about the significance of these findings for the evolvability of novel genetic material.
在蛋白质进化过程中,新的结构域排列不断形成。重排对于创造分子多样性以及功能分子变化非常重要,这些变化是生物蓝图在发育过程中转变的基础。在这里,我们回顾了新结构域排列产生的机制以及重排的潜在好处。我们专注于新结构域是如何出现的,以及为什么它们会在基因组中迅速传播,获得比旧的、更成熟的结构域更高的拷贝数。这种传播很可能是其高适应性潜力的结果,但不太可能弥补不同分类群中观察到的结构域急剧丢失的情况。我们表明,最近出现的结构域的很大一部分,特别是那些在多结构域家族中的结构域,是高度无序的,并推测这些发现对新遗传物质的可进化性的意义。