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The N- and C-terminal RNA recognition motifs of splicing factor Prp24 have distinct functions in U6 RNA binding

机译:剪接因子Prp24的N和C末端RNA识别基序在U6 RNA结合中具有独特的功能

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摘要

Prp24 is an essential yeast U6 snRNP protein with four RNA recognition motifs (RRMs) that facilitates the association of U4 and U6 snRNPs during spliceosome assembly. Genetic interactions led to the proposal that RRMs 2 and 3 of Prp24 bind U6 RNA, while RRMs 1 and 4 bind U4 RNA. However, the function of each RRM has yet to be established through biochemical means. We compared the binding of recombinant full-length Prp24 and truncated forms lacking RRM I or RRM 4 with U6 RNA. Contrary to expectations, we found that the N-terminal segment containing RRM I is important for high-affinity binding to U6 RNA and for discrimination between wild-type U6 RNA and U6 with point mutations in the 3' intramolecular stem-loop. In contrast, deletion of RRM 4 and the C terminus did not significantly alter the affinity for U6 RNA, but resulted in the formation of higher order Prp24.U6 complexes. Truncation and internal deletion of U6 RNA mapped three Prp24-binding sites, with the central site providing most of the affinity for Prp24. A newly identified temperature-sensitive lethal point mutation in RRM 1 is exacerbated by mutations in the U6 RNA telestem, as is a mutation in RRM 2, but not one in RRM 3. We propose that RRMs I and 2 of yeast Prp24 bind the same central site in U6 RNA that is bound by the two RRMs of human Prp24, and that RRMs 3 and 4 bind lower affinity flanking sites, thereby restricting the stoichiometry of Prp24 binding.
机译:Prp24是具有四个RNA识别基序(RRM)的必需酵母U6 snRNP蛋白,可在剪接体组装过程中促进U4和U6 snRNP的缔合。遗传相互作用导致了这样的提议,即Prp24的RRM 2和3结合U6 RNA,而RRM 1和4结合U4 RNA。但是,每个RRM的功能尚未通过生化手段确定。我们比较了重组全长Prp24和缺少RRM I或RRM 4与U6 RNA的截短形式的结合。与期望相反,我们发现含有RRM I的N末端片段对于与U6 RNA的高亲和力结合以及区分野生型U6 RNA和U3分子内茎干点突变的U6非常重要。相反,删除RRM 4和C末端不会显着改变对U6 RNA的亲和力,但会导致形成更高阶的Prp24.U6复合物。 U6 RNA的截断和内部缺失定位了三个Prp24结合位点,而中心位点提供了对Prp24的大部分亲和力。新发现的RRM 1中的温度敏感致死点突变会因U6 RNA茎系统中的突变而加剧,就像RRM 2中的突变一样,但RRM 3中没有一个突变。我们建议酵母Prp24的RRM I和2结合相同U6 RNA中的一个中心位点与人Prp24的两个RRM结合,并且RRM 3和4结合了较低亲和力的侧翼位点,从而限制了Prp24结合的化学计量。

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