Friedrich Miescher Institute for Biomedical Research, Maulbeerstrasse 66, 4058, Basel, Switzerland.
Swiss Institute of Bioinformatics, 4058, Basel, Switzerland.
Nat Commun. 2018 Apr 19;9(1):1549. doi: 10.1038/s41467-018-03920-7.
RNA-binding proteins regulate all aspects of RNA metabolism. Their association with RNA is mediated by RNA-binding domains, of which many remain uncharacterized. A recently reported example is the NHL domain, found in prominent regulators of cellular plasticity like the C. elegans LIN-41. Here we employ an integrative approach to dissect the RNA specificity of LIN-41. Using computational analysis, structural biology, and in vivo studies in worms and human cells, we find that a positively charged pocket, specific to the NHL domain of LIN-41 and its homologs (collectively LIN41), recognizes a stem-loop RNA element, whose shape determines the binding specificity. Surprisingly, the mechanism of RNA recognition by LIN41 is drastically different from that of its more distant relative, the fly Brat. Our phylogenetic analysis suggests that this reflects a rapid evolution of the domain, presenting an interesting example of a conserved protein fold that acquired completely different solutions to RNA recognition.
RNA 结合蛋白调节 RNA 代谢的各个方面。它们与 RNA 的结合是由 RNA 结合域介导的,其中许多结合域的特征尚未被描述。最近报道的一个例子是 NHL 结构域,它存在于细胞可塑性的重要调节因子中,如线虫中的 LIN-41。在这里,我们采用综合方法来剖析 LIN-41 的 RNA 特异性。通过计算分析、结构生物学以及线虫和人类细胞中的体内研究,我们发现一个带正电荷的口袋,LIN-41 的 NHL 结构域及其同源物(统称为 LIN41)具有特异性,能够识别一个茎环 RNA 元件,其形状决定了结合特异性。令人惊讶的是,LIN41 识别 RNA 的机制与它的远亲 Brat 截然不同。我们的系统发育分析表明,这反映了该结构域的快速进化,为 RNA 识别的保守蛋白折叠提供了一个有趣的例子,它获得了完全不同的解决方案。