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Domains of human U4atac snRNA required for U12-dependent splicing in vivo

机译:体内U12依赖性剪接所需的人U4atac snRNA结构域

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摘要

U4atac snRNA forms a base-paired complex with U6atac snRNA. Both snRNAs are required for the splicing of the minor U12-dependent class of eukaryotic nuclear introns. We have developed a new genetic suppression assay to investigate the in vivo roles of several regions of U4atac snRNA in U12-dependent splicing. We show that both the stem I and stem II regions, which have been proposed to pair with U6atac snRNA, are required for in vivo splicing. Splicing activity also requires U4atac sequences in the 5′ stem–loop element that bind a 15.5 kDa protein that also binds to a similar region of U4 snRNA. In contrast, mutations in the region immediately following the stem I interaction region, as well as a deletion of the distal portion of the 3′ stem–loop element, were active for splicing. Complete deletion of the 3′ stem–loop element abolished in vivo splicing function as did a mutation of the Sm protein binding site. These results show that the in vivo sequence requirements of U4atac snRNA are similar to those described previously for U4 snRNA using in vitro assays and provide experimental support for models of the U4atac/U6atac snRNA interaction.
机译:U4atac snRNA与U6atac snRNA形成碱基配对的复合体。这两种snRNA都是剪接较小的U12依赖类真核细胞核内含子所必需的。我们已经开发了一种新的基因抑制测定法,以研究U4atac snRNA的几个区域在U12依赖性剪接中的体内作用。我们显示,茎I和茎II区域,已提出与U6atac snRNA配对,是体内剪接所必需的。剪接活性还需要在5'茎-环元件中结合U4atac序列,该序列结合15.5 kDa蛋白,该蛋白还与U4 snRNA的相似区域结合。相反,在茎I相互作用区域之后的区域中的突变以及3'茎-环元件的远端部分的缺失对于剪接都是活跃的。 3'茎环元件的完全删除取消了体内剪接功能,Sm蛋白结合位点的突变也取消了。这些结果表明,U4atac snRNA的体内序列要求与之前使用体外测定法对U4 snRNA的描述相似,并为U4atac / U6atac snRNA相互作用模型提供了实验支持。

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