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High-affinity consensus binding of target RNAs by the STAR/GSG proteins GLD-1, STAR-2 and Quaking

机译:STAR / GSG蛋白GLD-1,STAR-2和Quaking对靶RNA的高亲和力共有结合

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STAR/GSG proteins regulate gene expression in metazoans by binding consensus sites in the 5' or 3' UTRs of target mRNA transcripts. Owing to the high degree of homology across the STAR domain, most STAR proteins recognize similar RNA consensus sequences. Previously, the consensus for a number of well-characterized STAR proteins was defined as a hexameric sequence, referred to as the SBE, for S TAR protein b inding e lement. C. elegans GLD-1 and mouse Quaking (Qk-1) are two representative STAR proteins that bind similar consensus hexamers, which differ only in the preferred nucleotide identities at certain positions. Earlier reports also identified partial consensus elements located upstream or downstream of a canonical consensus hexamer in target RNAs, although the relative contribution of these sequences to the overall binding energy remains less well understood. Additionally, a recently identified STAR protein called STAR-2 from C. elegans is thought to bind target RNA consensus sites similar to that of GLD-1 and Qk-1. Here, a combination of fluorescence-polarization and gel mobility shift assays was used to demonstrate that STAR-2 binds to a similar RNA consensus as GLD-1 and Qk-1. These assays were also used to further delineate the contributions of each hexamer consensus nucleotide to high-affinity binding by GLD-1, Qk-1 and STAR-2 in a variety of RNA contexts. In addition, the effects of inserting additional full or partial consensus elements upstream or downstream of a canonical hexamer in target RNAs were also measured to better define the sequence elements and RNA architecture recognized by different STAR proteins. The results presented here indicate that a single hexameric consensus is sufficient for high-affinity RNA binding by STAR proteins, and that upstream or downstream partial consensus elements may alter binding affinities depending on the sequence and spacing. The general requirements determined for high-affinity RNA binding by STAR proteins will help facilitate the identification of novel regulatory targets in vivo.
机译:STAR / GSG蛋白通过结合靶mRNA转录本5'或3'UTR中的共有位点来调节后生动物中的基因表达。由于整个STAR结构域的高度同源性,大多数STAR蛋白都能识别相似的RNA共有序列。以前,对于许多特征明确的STAR蛋白,共识被定义为S TAR蛋白基础元素的六聚体序列,称为SBE。秀丽隐杆线虫GLD-1和小鼠Quaking(Qk-1)是结合相似共有六聚体的两个代表性STAR蛋白,它们仅在某些位置的优选核苷酸同一性不同。较早的报道还鉴定了位于靶标RNA中规范共有六聚体上游或下游的部分共有元素,尽管这些序列对整体结合能的相对贡献仍知之甚少。另外,最近鉴定的来自秀丽隐杆线虫的称为STAR-2的STAR蛋白被认为可以结合类似于GLD-1和Qk-1的靶RNA共有位点。在这里,荧光偏振和凝胶迁移率迁移分析的组合用于证明STAR-2结合与GLD-1和Qk-1类似的RNA共有物。这些测定法还用于进一步描述每种六聚体共有核苷酸在各种RNA环境中对GLD-1,Qk-1和STAR-2的高亲和力结合的贡献。此外,还测量了在目标RNA中在规范六聚体的上游或下游插入其他全部或部分共有元件的效果,以更好地定义被不同STAR蛋白识别的序列元件和RNA结构。此处显示的结果表明,单个六聚体共有序列足以实现STAR蛋白与高亲和力RNA的结合,并且上游或下游部分共有序列元件可能会根据序列和间隔改变结合亲和力。确定通过STAR蛋白进行高亲和性RNA结合的一般要求将有助于促进体内新的调控靶标的鉴定。

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