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Evolutionary diversification of retinoic acid receptor ligand-binding pocket structure by molecular tinkering

机译:维甲酸受体配体结合口袋结构分子修补的进化多样化

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摘要

Whole genome duplications (WGDs) have been classically associated with the origin of evolutionary novelties and the so-called duplication–degeneration–complementation model describes the possible fates of genes after duplication. However, how sequence divergence effectively allows functional changes between gene duplicates is still unclear. In the vertebrate lineage, two rounds of WGDs took place, giving rise to paralogous gene copies observed for many gene families. For the retinoic acid receptors (RARs), for example, which are members of the nuclear hormone receptor (NR) superfamily, a unique ancestral gene has been duplicated resulting in three vertebrate paralogues: RARα, RARβ and RARγ. It has previously been shown that this single ancestral RAR was neofunctionalized to give rise to a larger substrate specificity range in the RARs of extant jawed vertebrates (also called gnathostomes). To understand RAR diversification, the members of the cyclostomes (lamprey and hagfish), jawless vertebrates representing the extant sister group of gnathostomes, provide an intermediate situation and thus allow the characterization of the evolutionary steps that shaped RAR ligand-binding properties following the WGDs. In this study, we assessed the ligand-binding specificity of cyclostome RARs and found that their ligand-binding pockets resemble those of gnathostome RARα and RARβ. In contrast, none of the cyclostome receptors studied showed any RARγ-like specificity. Together, our results suggest that cyclostome RARs cover only a portion of the specificity repertoire of the ancestral gnathostome RARs and indicate that the establishment of ligand-binding specificity was a stepwise event. This iterative process thus provides a rare example for the diversification of receptor–ligand interactions of NRs following WGDs.
机译:全基因组复制(WGDs)与进化新奇的起源有着经典的联系,所谓的复制-退化-互补模型描述了复制后基因的可能命运。然而,尚不清楚如何使序列差异有效地允许基因重复之间的功能改变。在脊椎动物谱系中,发生了两轮WGD,导致许多基因家族观察到旁系同源基因拷贝。例如,对于作为核激素受体(NR)超家族成员的视黄酸受体(RAR),已经复制了一个独特的祖先基因,从而产生了三个脊椎动物旁系同源物:RARα,RARβ和RARγ。先前已经证明,该单一祖先RAR被新功能化,以在现存的颌骨脊椎动物(也称为食蚁兽)的RAR中产生更大的底物特异性范围。为了了解RAR的多样性,环存孔成员(扁豆和ha鱼)是代表现存的食蚁兽姐妹组的无颚脊椎动物,提供了一种中间情况,因此可以表征WGD之后塑造RAR配体结合特性的进化步骤。在这项研究中,我们评估了环吻RARs的配体结合特异性,发现它们的配体结合口袋与gnathostomeRARα和RARβ相似。相反,所研究的环吻受体均未显示任何RARγ样特异性。在一起,我们的结果表明,Cyclostome RARs只覆盖了祖先gnahosthostome RARs的一部分特异性,并表明配体结合特异性的建立是一个逐步的过程。因此,这种迭代过程为WGD后NR受体-配体相互作用的多样化提供了一个罕见的例子。

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