Kamina Anyango D, Williams Noreen
Department of Microbiology and Immunology and Witebsky Center for Microbial Pathogenesis and Immunology, University at Buffalo, Buffalo, New York, United States of America.
PLoS One. 2017 May 18;12(5):e0177890. doi: 10.1371/journal.pone.0177890. eCollection 2017.
RNA binding proteins are involved in many aspects of RNA metabolism. In Trypanosoma brucei, our laboratory has identified two trypanosome-specific RNA binding proteins P34 and P37 that are involved in the maturation of the 60S subunit during ribosome biogenesis. These proteins are part of the T. brucei 5S ribonucleoprotein particle (5S RNP) and P34 binds to 5S ribosomal RNA (rRNA) and ribosomal protein L5 through its N-terminus and its RNA recognition motif (RRM) domains. We generated truncated P34 proteins to determine these domains' interactions with 5S rRNA and L5. Our analyses demonstrate that RRM1 of P34 mediates the majority of binding with 5S rRNA and the N-terminus together with RRM1 contribute the most to binding with L5. We determined that the consensus ribonucleoprotein (RNP) 1 and 2 sequences, characteristic of canonical RRM domains, are not fully conserved in the RRM domains of P34. However, the aromatic amino acids previously described to mediate base stacking interactions with their RNA target are conserved in both of the RRM domains of P34. Surprisingly, mutation of these aromatic residues did not disrupt but instead enhanced 5S rRNA binding. However, we identified four arginine residues located in RRM1 of P34 that strongly impact L5 binding. These mutational analyses of P34 suggest that the binding site for 5S rRNA and L5 are near each other and specific residues within P34 regulate the formation of the 5S RNP. These studies show the unique way that the domains of P34 mediate binding with the T. brucei 5S RNP.
RNA结合蛋白参与RNA代谢的许多方面。在布氏锥虫中,我们实验室鉴定出两种锥虫特异性RNA结合蛋白P34和P37,它们在核糖体生物发生过程中参与60S亚基的成熟。这些蛋白是布氏锥虫5S核糖核蛋白颗粒(5S RNP)的一部分,P34通过其N端及其RNA识别基序(RRM)结构域与5S核糖体RNA(rRNA)和核糖体蛋白L5结合。我们生成了截短的P34蛋白,以确定这些结构域与5S rRNA和L5的相互作用。我们的分析表明,P34的RRM1介导了与5S rRNA的大部分结合,N端与RRM1一起对与L5的结合贡献最大。我们确定,典型RRM结构域特有的共有核糖核蛋白(RNP)1和2序列在P34的RRM结构域中并不完全保守。然而,先前描述的介导与其RNA靶标进行碱基堆积相互作用的芳香族氨基酸在P34的两个RRM结构域中均保守。令人惊讶的是,这些芳香族残基的突变并未破坏而是增强了5S rRNA结合。然而,我们在P34的RRM1中鉴定出四个精氨酸残基,它们强烈影响L5结合。对P34的这些突变分析表明,5S rRNA和L5的结合位点彼此靠近,并且P34内的特定残基调节5S RNP的形成。这些研究揭示了P34结构域介导与布氏锥虫5S RNP结合的独特方式。