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Ubiquitin-like protein Hub1 is required for pre-mRNA splicing and localization of an essential splicing factor in fission yeast

机译:拟泛素样蛋白剪接和裂变酵母中必需剪接因子的定位需要泛素样蛋白Hub1

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摘要

Hub1/Ubl5 is a member of the family of ubiquitin-like proteins (UBLs). The tertiary structure of Hub1 is similar to that of ubiquitin; however, it differs from known modifiers in that there is no conserved glycine residue near the C terminus which, in ubiquitin and UBLs, is required for covalent modification of target proteins. Instead, there is a conserved dityrosine motif proximal to the terminal nonconserved amino acid. In S. cerevisiae, high molecular weight adducts can be formed in vivo from Hub1, but the structure of these adducts is not known, and they could be either covalent or noncovalent. The budding yeast HUB1 gene is not essential, but Delta hub1 mutants display defects in mating. Here, we report that fission yeast hub1 is an essential gene, whose loss results in cell cycle defects and inefficient pre-mRNA splicing. A screen for Hub1 interactors identified Snu66, a component of the U4/U6.U5 tri-snRNP splicing complex. Furthermore, overexpression of Snu66 suppresses the lethality of a hub1ts mutant. In cells lacking functional hub1, the nuclear localization of Snu66 is disrupted, suggesting that an important role for Hub1 is the correct subcellular targeting of Snu66, although our data suggest that Hub1 is likely to perform other roles in splicing as well.
机译:Hub1 / Ubl5是泛素样蛋白(UBL)家族的成员。 Hub1的三级结构类似于泛素。但是,它与已知修饰剂的不同之处在于,在C末端附近没有保守的甘氨酸残基,而在泛素和UBL中,该残基是目标蛋白的共价修饰所必需的。相反,在末端非保守氨基酸附近有一个保守的二酪氨酸基序。在酿酒酵母中,可以从Hub1体内形成高分子量加合物,但这些加合物的结构尚不清楚,它们可以是共价或非共价的。萌芽的酵母HUB1基因不是必需的,但Delta hub1突变体显示出交配缺陷。在这里,我们报告裂变酵母hub1是必不可少的基因,其损失导致细胞周期缺陷和低效率的前mRNA拼接。 Hub1相互作用物的屏幕确定了Snu66,它是U4 / U6.U5 tri-snRNP剪接复合体的组成部分。此外,Snu66的过表达抑制了hub1ts突变体的致死性。在缺乏功能Hub1的细胞中,Snu66的核定位被破坏,这表明Hub1的重要作用是正确对Snu66进行亚细胞靶向,尽管我们的数据表明Hub1也可能在剪接中还发挥其他作用。

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