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The association of a La module with the PABP-interacting motif PAM2 is a recurrent evolutionary process that led to the neofunctionalization of la-related proteins

机译:La模块与PABP相互作用的基序PAM2的关联是一个循环进化过程,导致la相关蛋白的新功能化

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La-related proteins (LARPs) are largely uncharacterized factors, well conserved throughout evolution. Recent reports on the function of human LARP4 and LARP6 suggest that these proteins fulfill key functions in mRNA metabolism and/or translation. We report here a detailed evolutionary history of the LARP4 and 6 families in eukaryotes. Genes coding for LARP4 and 6 were duplicated in the common ancestor of the vertebrate lineage, but one LARP6 gene was subsequently lost in the common ancestor of the eutherian lineage. The LARP6 gene was also independently duplicated several times in the vascular plant lineage. We observed that vertebrate LARP4 and plant LARP6 duplication events were correlated with the acquisition of a PABP-interacting motif 2 (PAM2) and with a significant reorganization of their RNA-binding modules. Using isothermal titration calorimetry (ITC) and immunoprecipitation methods, we show that the two plant PAM2-containing LARP6s (LARP6b and c) can, indeed, interact with the major plant poly(A)-binding protein (PAB2), while the third plant LARP6 (LARP6a) is unable to do so. We also analyzed the RNA-binding properties and the subcellular localizations of the two types of plant LARP6 proteins and found that they display nonredundant characteristics. As a whole, our results support a model in which the acquisition by LARP4 and LARP6 of a PAM2 allowed their targeting to mRNA 3′ UTRs and led to their neofunctionalization.
机译:La相关蛋白(LARP)很大程度上是未知的因子,在整个进化过程中都非常保守。关于人LARP4和LARP6功能的最新报道表明,这些蛋白质在mRNA代谢和/或翻译中起关键作用。我们在这里报告了真核生物中LARP4和6家族的详细进化史。编码LARP4和6的基因在脊椎动物谱系的共同祖先中复制,但是随后一个LARP6基因在eutherian谱系的共同祖先中丢失。 LARP6基因在维管植物谱系中也独立复制了几次。我们观察到脊椎动物LARP4和植物LARP6复制事件与PABP相互作用基序2(PAM2)的获得及其RNA结合模块的重大重组有关。使用等温滴定热法(ITC)和免疫沉淀方法,我们证明了这两种含植物PAM2的LARP6s(LARP6b和c)确实可以与主要的植物poly(A)结合蛋白(PAB2)相互作用,而第三种植物LARP6(LARP6a)无法这样做。我们还分析了两种植物LARP6蛋白的RNA结合特性和亚细胞定位,发现它们显示出非冗余特征。总体而言,我们的结果支持一个模型,其中LARP4和LARP6对PAM2的获取允许其靶向mRNA 3'UTR,并导致其新功能化。

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