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RNA aptamers that specifically bind to a 16S ribosomal RNA decoding region construct

机译:与16S核糖体RNA解码区域构建体特异性结合的RNA适体

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RNA–RNA recognition is a critical process in controlling many key biological events, such as translation and ribozyme functions. The recognition process governing RNA–RNA interactions can involve complementary Watson–Crick (WC) base pair binding, or can involve binding through tertiary structural interaction. Hence, it is of interest to determine which of the RNA–RNA binding events might emerge through an in vitro selection process. The A-site of the 16S rRNA decoding region was chosen as the target, both because it possesses several different RNA structural motifs, and because it is the rRNA site where codon/anticodon recognition occurs requiring recognition of both mRNA and tRNA. It is shown here that a single family of RNA molecules can be readily selected from two different sizes of RNA library. The tightest binding aptamer to the A-site 16S rRNA construct, 109.2-3, has its consensus sequences confined to a stem–loop region, which contains three nucleotides complementary to three of the four nucleotides in the stem–loop region of the A-site 16S rRNA. Point mutations on each of the three nucleotides on the stem–loop of the aptamer abolish its binding capacity. These studies suggest that the RNA aptamer 109.2-3 interacts with the simple 27 nt A-site decoding region of 16S rRNA through their respective stem–loops. The most probable mode of interaction is through complementary WC base pairing, commonly referred to as a loop–loop ‘kissing' motif. High affinity binding to the other structural motifs in the decoding region were not observed.
机译:RNA–RNA识别是控制许多关键生物学事件(例如翻译和核酶功能)的关键过程。控制RNA-RNA相互作用的识别过程可能涉及互补的沃森-克里克(WC)碱基对结合,也可能涉及通过三级结构相互作用的结合。因此,确定哪种RNA–RNA结合事件可能通过体外选择过程出现是很有意义的。选择16S rRNA解码区的A位点作为靶标,这是因为它具有几个不同的RNA结构基序,并且因为它是发生密码子/反密码子识别的rRNA位点,需要同时识别mRNA和tRNA。在此显示,可以容易地从两种不同大小的RNA文库中选择一个RNA分子家族。与A位点16S rRNA构建体最紧密的结合适体109.2-3,其共有序列仅限于茎环区域,该区域包含与A-茎环区域四个核苷酸中的三个互补的三个核苷酸。位点16S rRNA。适体茎环上三个核苷酸的每个点突变消除了其结合能力。这些研究表明,RNA适体109.2-3通过其各自的茎环与16S rRNA的简单27 nt A位点解码区域相互作用。相互作用的最可能方式是通过互补的WC碱基配对,通常被称为“环-环”“亲吻”基序。没有观察到与解码区域中其他结构基序的高亲和力结合。

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