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Molecular genetic analysis of the heterodimeric splicing factor U2AF: the RS domain on either the large or small Drosophila subunit is dispensable in vivo

机译:异二聚体剪接因子U2AF的分子遗传学分析:大或小的果蝇亚基上的RS结构域在体内都是必需的

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摘要

The pre-mRNA splicing factor U2AF (U2 snRNP auxiliary factor) has an essential role in 3′ splice site selection. U2AF binds the intron pyrimidine tract between the branchpoint and the 3′ splice site and recruits U2 snRNP to the branch site at an early step in spliceosome assembly. Human U2AF is a heterodimer composed of large (hU2AF65) and small (hU2AF35) subunits. Both subunits contain a domain enriched in arginine–serine dipeptide repeats termed an RS domain. The two U2AF RS domains have been assigned essential and independent roles in spliceosome assembly in vitro—the hU2AF65 RS domain is required to target U2 snRNP to the branch site and the hU2AF35 RS domain is necessary for protein–protein interactions with constitutive and alternative splicing factors. We have investigated the functional requirements for the RS domains on the Drosophila U2AF homolog in vivo. In sharp contrast to its essential role in U2 snRNP recruitment in vitro, the RS domain on the Drosophila large subunit homolog (dU2AF50) was completely dispensable in vivo. Prompted by this unexpected result, we analyzed the RS domain on the Drosophila small subunit homolog (dU2AF38). Despite its requirement for enhancer-dependent splicing activity in vitro, the dU2AF38 RS domain was also inessential in vivo. Finally, we have tested whether the Drosophila U2AF heterodimer requires any RS domain. Flies mutant for both the small and large subunits could not be rescued by dU2AF50ΔRS and dU2AF38ΔRS transgenes. Therefore, in contrast to the separate roles assigned to the U2AF RS domains in vitro, our genetic data suggest that they may have redundant functions in vivo.
机译:mRNA前剪接因子U2AF(U2 snRNP辅助因子)在3'剪接位点选择中起着至关重要的作用。 U2AF在分支点组装的早期步骤将内含嘧啶嘧啶束结合在分支点和3'剪接位点之间,并将U2 snRNP募集到分支点。人U2AF是由大(hU2AF 65 )和小的(hU2AF 35 )亚基组成的异二聚体。这两个亚基都含有一个富含精氨酸-丝氨酸二肽重复序列的结构域,称为RS结构域。在体外剪接体组装中,两个U2AF RS域已被指定为必需的和独立的角色-需要hU2AF 65 RS域将U2 snRNP靶向分支位点和hU2AF 35 RS结构域对于蛋白质与组成型和替代性剪接因子的相互作用是必需的。我们已经研究了果蝇U2AF同源体内的RS结构域的功能要求。与它在体外U2 snRNP募集中的重要作用形成鲜明对比的是,果蝇大亚基同源物(dU2AF 50 )上的RS结构域在体内是完全不需要的。由于这一出乎意料的结果,我们分析了果蝇小亚基同源物(dU2AF 38 )上的RS结构域。 dU2AF 38 RS结构域尽管需要在体外​​具有依赖于增强子的剪接活性,但在体内也不重要。最后,我们测试了果蝇U2AF异二聚体是否需要任何RS结构域。 dU2AF 50 ΔRS和dU2AF 38 ΔRS转基因不能拯救大小型亚基的苍蝇突变体。因此,与在体外分配给U2AF RS结构域的单独角色相反,我们的遗传数据表明它们在体内可能具有多余的功能。

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