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首页> 外文期刊>Molecular cell >A spliceosomal intron binding protein, IBP160, links position-dependent assembly of intron-encoded box C/D snoRNP to pre-mRNA splicing
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A spliceosomal intron binding protein, IBP160, links position-dependent assembly of intron-encoded box C/D snoRNP to pre-mRNA splicing

机译:剪接内含子结合蛋白IBP160将内含子编码盒C / D snoRNP的位置依赖性装配与mRNA前剪接联系起来

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摘要

Pre-mRNA splicing in vertebrates is molecularly linked to other processes. We previously reported that splicing is required for efficient assembly of intron-encoded box C/D small nucleolar ribonucleoprotein (snoRNP). In the spliceosomal C1 complex, snoRNP proteins efficiently assemble onto snoRNA sequences if they are located about 50 nt upstream of the intron branchpoint. Here, we identify the splicing factor responsible for coupling snoRNP assembly to intron excision. Intron binding protein (IBP) 160, a helicase-like protein previously detected in the spliceosomal C1 complex, binds the pre-mRNA in a sequence-independent manner, contacting nucleotides 33-40 upstream of the intron branch site, regardless of whether a snoRNA is present. Depletion of IBP160 abrogates snoRNP assembly in vitro. IBP160 binding directly to a snoRNA located too close to the intron branch site interferes with snoRNP assembly. Thus, IBP160 is the key factor linking snoRNP biogenesis and perhaps other postsplicing events to pre-mRNA splicing.
机译:脊椎动物中的pre-mRNA剪接与其他过程分子连接。我们以前曾报道,内含子编码盒C / D小核仁核糖核蛋白(snoRNP)的有效组装需要剪接。在剪接体C1复合体中,如果snoRNP蛋白位于内含子分支点上游约50 nt处,则它们会有效地组装到snoRNA序列上。在这里,我们确定负责将snoRNP大会耦合到内含子切除的剪接因子。内含子结合蛋白(IBP)160是先前在剪接体C1复合物中检测到的解旋酶样蛋白,它以不依赖序列的方式结合pre-mRNA,与内含子分支位点上游的核苷酸33-40接触,而不管snoRNA是否存在。 IBP160的消耗在体外废除了snoRNP组装。 IBP160直接与太靠近内含子分支位点的snoRNA结合会干扰snoRNP组装。因此,IBP160是将snoRNP生物发生以及其他后剪接事件与mRNA剪接连接的关键因素。

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