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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Mutations in the YRB1 Gene Encoding Yeast Ran-Binding-Protein-1 That Impair Nucleocytoplasmic Transport and Suppress Yeast Mating Defects
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Mutations in the YRB1 Gene Encoding Yeast Ran-Binding-Protein-1 That Impair Nucleocytoplasmic Transport and Suppress Yeast Mating Defects

机译:YRB1基因编码酵母Ran结合蛋白1的突变,损害核细胞质运输并抑制酵母交配缺陷。

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摘要

We identified two temperature-sensitive (ts) mutations in the essential gene, YRB1 , which encodes the yeast homolog of Ran-binding-protein-1 (RanBP1), a known coregulator of the Ran GTPase cycle. Both mutations result in single amino acid substitutions of evolutionarily conserved residues (A91D and R127K, respectively) in the Ran-binding domain of Yrb1. The altered proteins have reduced affinity for Ran (Gsp1) in vivo. After shift to restrictive temperature, both mutants display impaired nuclear protein import and one also reduces poly(A)+ RNA export, suggesting a primary defect in nucleocytoplasmic trafficking. Consistent with this conclusion, both yrb1ts mutations display deleterious genetic interactions with mutations in many other genes involved in nucleocytoplasmic transport, including SRP1 (α-importin) and several β-importin family members. These yrb1ts alleles were isolated by their ability to suppress two different types of mating-defective mutants (respectively, fus1 Δ and ste5ts ), indicating that reduction in nucleocytoplasmic transport enhances mating proficiency. Indeed, in both yrb1ts mutants, Ste5 (scaffold protein for the pheromone response MAPK cascade) is mislocalized to the cytosol, even in the absence of pheromone. Also, both yrb1ts mutations suppress the mating defect of a null mutation in MSN5 , which encodes the receptor for pheromone-stimulated nuclear export of Ste5. Our results suggest that reimport of Ste5 into the nucleus is important in downregulating mating response.
机译:我们在基本基因YRB1中鉴定了两个温度敏感(ts)突变,该基因编码Ran结合蛋白1(RanBP1)(Ran GTPase循环的已知调节子)的酵母同源物。这两个突变都导致Yrb1的Ran结合域中的进化保守残基(分别为A91D和R127K)的单个氨基酸取代。改变后的蛋白质在体内对Ran(Gsp1)的亲和力降低。转变为限制性温度后,两个突变体均显示出受损的核蛋白输入,并且一个也降低了poly(A)+ RNA的输出,表明核质运输中的主要缺陷。与该结论一致,两个yrb1ts突变都显示出有害的遗传相互作用,并与许多其他涉及核质转运的基因(包括SRP1(α-importin)和多个β-importin家族成员)的突变发生相互作用。这些yrb1ts等位基因通过抑制两种不同类型的交配缺陷型突变体(分别为fus1Δ和ste5ts)的能力得以分离,表明核质转运的减少增强了交配能力。实际上,在两个yrb1ts突变体中,即使没有信息素,Ste5(信息素应答MAPK级联反应的支架蛋白)也都错位到了细胞质中。同样,两个yrb1ts突变均抑制了MSN5中无效突变的交配缺陷,该突变编码信息素刺激Ste5的信息素受体。我们的结果表明,Ste5重新导入细胞核对下调交配反应很重要。

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