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Two strategically placed base pairs in helix 8 of mammalian signal recognition particle RNA are crucial for the SPR19-dependent binding of protein SRP54

机译:哺乳动物信号识别颗粒RNA螺旋8中两个策略性放置的碱基对对SRP19依赖的蛋白SRP54结合至关重要

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摘要

Signal recognition particle (SRP) guides secretory proteins to biological membranes in all organisms. Assembly of the large domain of mammalian SRP requires binding of SRP19 prior to the binding of protein SRP54 to SRP RNA. The crystal structure of the ternary complex reveals the parallel arrangement of RNA helices 6 and 8, a bridging of the helices via a hydrogen bonded A149–A201 pair and protein SRP19, and two A minor motifs between the asymmetric loop of helix 8 (A213 and A214) and helix 6. We investigated which residues in helix 8 are responsible for the SRP19-dependent binding of SRP54 by taking advantage of the finding that binding of human SRP54 to Methanococcus jannaschii SRP RNA is independent of SRP19. Chimeric human/M. jannaschii SRP RNA molecules were synthesized containing predominantly human SRP RNA but possessing M. jannaschii SRP RNA-derived substitutions. Activities of the chimeric RNAs were measured with respect to protein SRP19 and the methionine-rich RNA-binding domain of protein SRP54 (SRP54M). Changing A213 and A214 to a uridine has no effect on the SRP19-dependent binding of SRP54M. Instead, the two base pairs C189–G210 and C190–G209, positioned between the conserved binding site of SRP54 and the asymmetric loop, are critical for conveying SRP19 dependency. Furthermore, the nucleotide composition of five base pairs surrounding the asymmetric loop affects binding of SRP54M significantly. These results demonstrate that subtle, and not easily perceived, structural differences are of crucial importance in the assembly of mammalian SRP.
机译:信号识别颗粒(SRP)将分泌蛋白引导至所有生物体中的生物膜。哺乳动物SRP大结构域的组装需要在蛋白SRP54与SRP RNA结合之前先结合SRP19。三元复合物的晶体结构揭示了RNA螺旋6和8的平行排列,通过氢键结合的A149-A201对和蛋白SRP19的桥接,以及在螺旋8的不对称环之间的两个A较小基序(A213和A214)和螺旋6。我们利用人类SRP54与詹氏甲烷球菌SRP RNA的结合独立于SRP19的发现,研究了螺旋8中的哪些残基负责SRP19依赖的SRP54结合。嵌合人/ M。合成了詹纳希氏菌SRP RNA分子,主要含有人SRP RNA,但具有詹氏梭菌SRP RNA衍生的替代物。相对于蛋白SRP19和蛋白SRP54(SRP54M)的富含甲硫氨酸的RNA结合结构域,测量了嵌合RNA的活性。将A213和A214更改为尿苷对SRP54M的SRP19依赖性结合没有影响。相反,位于SRP54保守结合位点和不对称环之间的两个碱基对C189–G210和C190–G209对传达SRP19依赖性至关重要。此外,围绕不对称环的五个碱基对的核苷酸组成会显着影响SRP54M的结合。这些结果表明,在哺乳动物SRP的组装中,细微且不易察觉的结构差异至关重要。

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