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Evolution of a tissue-specific splicing network.

机译:组织特定的剪接网络的演变。

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摘要

Alternative splicing of precursor mRNA (pre-mRNA) is a strategy employed by most eukaryotes to increase transcript and proteomic diversity. Many metazoan splicing factors are members of multigene families, with each member having different functions. How these highly related proteins evolve unique properties has been unclear. Here we characterize the evolution and function of a new Drosophila splicing factor, termed LS2 (Large Subunit 2), that arose from a gene duplication event of dU2AF(50), the large subunit of the highly conserved heterodimeric general splicing factor U2AF (U2-associated factor). The quickly evolving LS2 gene has diverged from the splicing-promoting, ubiquitously expressed dU2AF(50) such that it binds a markedly different RNA sequence, acts as a splicing repressor, and is preferentially expressed in testes. Target transcripts of LS2 are also enriched for performing testes-related functions. We therefore propose a path for the evolution of a new splicing factor in Drosophila that regulates specific pre-mRNAs and contributes to transcript diversity in a tissue-specific manner.
机译:前体mRNA(pre-mRNA)的选择性剪接是大多数真核生物采用的增加转录本和蛋白质组学多样性的策略。许多后生动物剪接因子是多基因家族的成员,每个成员具有不同的功能。这些高度相关的蛋白质如何演化独特的性质还不清楚。在这里,我们描述了一种新的果蝇剪接因子,称为LS2(大亚基2)的进化和功能,它是由于dU2AF(50)(高度保守的异二聚体一般剪接因子U2AF(U2-相关因素)。迅速发展的LS2基因与促进剪接的普遍表达的dU2AF(50)背道而驰,因此它与明显不同的RNA序列结合,充当剪接阻遏物,并优先在睾丸中表达。 LS2的目标转录本也得到丰富,以执行与睾丸相关的功能。因此,我们提出了一条在果蝇中新剪接因子进化的途径,该剪接因子调节特定的前mRNA,并以组织特异性方式有助于转录本多样性。

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