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Transposition of two amino acids changes a promiscuous RNA binding protein into a sequence-specific RNA binding protein

机译:两个氨基酸的转座将混杂的RNA结合蛋白转变为序列特异性RNA结合蛋白

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摘要

In yeast (Saccharoymces cerevisiae), the branchpoint binding protein (BBP) recognizes the conserved yeast branchpoint sequence (UACUAAC) with a high level of specificity and affinity, while the human branchpoint binding protein (SF1) binds the less-conserved consensus branchpoint sequence (CURAY) in human introns with a lower level of specificity and affinity. To determine which amino acids in BBP provide the additional specificity and affinity absent in SF1, a panel of chimeric SF1 proteins was tested in RNA binding assays with wild-type and mutant RNA substrates. This approach revealed that the QUA2 domain of BBP is responsible for the enhanced RNA binding affinity and specificity displayed by BBP compared with SF1. Within the QUA2 domain, a transposition of adjacent arginine and lysine residues is primarily responsible for the switch in RNA binding between BBP and SF1. Alignment of multiple branchpoint binding proteins and the related STAR/GSG proteins suggests that the identity of these two amino acids and the RNA target sequences of all of these proteins are correlated.
机译:在酵母(Saccharoymces cerevisiae)中,分支点结合蛋白(BBP)以高水平的特异性和亲和力识别保守的酵母分支点序列(UACUAAC),而人类分支点结合蛋白(SF1)结合保守程度较低的共有分支点序列( CURAY)在人类内含子中的特异性和亲和力较低。为了确定BBP中的哪些氨基酸可提供SF1中缺少的其他特异性和亲和力,在具有野生型和突变RNA底物的RNA结合测定中测试了一组嵌合SF1蛋白。这种方法表明,与SF1相比,BBP的QUA2域负责增强BBP展示的RNA结合亲和力和特异性。在QUA2域中,相邻精氨酸和赖氨酸残基的转座主要负责BBP和SF1之间RNA结合的转换。多个分支点结合蛋白和相关的STAR / GSG蛋白的比对表明这两个氨基酸的身份与所有这些蛋白的RNA靶序列相关。

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