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首页> 外文期刊>BMC Molecular Biology >Identification of nucleotides and amino acids that mediate the interaction between ribosomal protein L30 and the SECIS element
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Identification of nucleotides and amino acids that mediate the interaction between ribosomal protein L30 and the SECIS element

机译:鉴定介导核糖体蛋白L30与SECIS元件相互作用的核苷酸和氨基酸

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Background Ribosomal protein L30 belongs to the L7Ae family of RNA-binding proteins, which recognize diverse targets. L30 binds to kink-turn motifs in the 28S ribosomal RNA, L30 pre-mRNA, and mature L30 mRNA. L30 has a noncanonical function as a component of the UGA recoding machinery that incorporates selenocysteine (Sec) into selenoproteins during translation. L30 binds to a putative kink-turn motif in the Sec Insertion Sequence (SECIS) element in the 3’ UTR of mammalian selenoprotein mRNAs. The SECIS also interacts with SECIS-binding protein 2 (SBP2), an essential factor for Sec incorporation. Previous studies showed that L30 and SBP2 compete for binding to the SECIS in vitro. The SBP2:SECIS interaction has been characterized but much less is known about how L30 recognizes the SECIS. Results Here we use enzymatic RNA footprinting to define the L30 binding site on the SECIS. Like SBP2, L30 protects nucleotides in the 5’ side of the internal loop, the 5’ side of the lower helix, and the SECIS core, including the GA tandem base pairs that are predicted to form a kink-turn. However, L30 has additional determinants for binding as it also protects nucleotides in the 3’ side of the internal loop, which are not protected by SBP2. In support of the competitive binding model, we found that purified L30 repressed UGA recoding in an in vitro translation system, and that this inhibition was rescued by SBP2. To define the amino acid requirements for SECIS-binding, site-specific mutations in L30 were generated based on published structural studies of this protein in a complex with its canonical target, the L30 pre-mRNA. We identified point mutations that selectively inhibited binding of L30 to the SECIS, to the L30 pre-mRNA, or both RNAs, suggesting that there are subtle differences in how L30 interacts with the two targets. Conclusions This study establishes that L30 and SBP2 bind to overlapping but non-identical sites on the SECIS. The amino acid requirements for the interaction of L30 with the SECIS differ from those that mediate binding to the L30 pre-mRNA. Our results provide insight into how L7Ae family members recognize their cognate RNAs.
机译:背景核糖体蛋白L30属于RNA结合蛋白的L7Ae家族,可识别多种靶标。 L30结合28S核糖体RNA,L30 pre-mRNA和成熟的L30 mRNA中的扭结-基序。 L30作为UGA编码机制的组成部分具有非规范功能,该机制在翻译过程中将硒代半胱氨酸(Sec)掺入硒蛋白中。 L30与哺乳动物硒蛋白mRNA 3'UTR的Sec插入序列(SECIS)元件中的推定拐点转基序结合。 SECIS还与SECIS结合蛋白2(SBP2)相互作用,这是Sec掺入的必要因素。先前的研究表明,L30和SBP2在体外竞争与SECIS的结合。 SBP2:SECIS交互已被表征,但对L30如何识别SECIS的了解还很少。结果在这里,我们使用酶促RNA足迹来定义SECIS上的L30结合位点。与SBP2一样,L30保护内部环5'端,下部螺旋5'端和SECIS核心的核苷酸,包括预计会形成扭结的GA串联碱基对。但是,L30具有其他结合决定因素,因为它还可以保护内部环3'侧的核苷酸,该核苷酸不受SBP2的保护。为了支持竞争性结合模型,我们发现纯化的L30在体外翻译系统中抑制了UGA编码,并且这种抑制作用被SBP2挽救了。为了定义SECIS结合的氨基酸要求,根据已发布的该蛋白质与其规范靶标L30 pre-mRNA的复合体的结构研究,生成了L30中的位点特异性突变。我们发现了点突变,这些突变选择性地抑制了L30与SECIS,L30 pre-mRNA或两个RNA的结合,这表明L30与两个靶标相互作用的方式存在细微的差异。结论这项研究确定L30和SBP2与SECIS上重叠但不完全相同的位点结合。 L30与SECIS相互作用的氨基酸要求不同于介导与L30 pre-mRNA结合的氨基酸。我们的结果提供了有关L7Ae家族成员如何识别其同源RNA的见识。

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