首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Nuclear Import of Upf3p Is Mediated by Importin-α/-β and Export to the Cytoplasm Is Required for a Functional Nonsense-Mediated mRNA Decay Pathway in Yeast
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Nuclear Import of Upf3p Is Mediated by Importin-α/-β and Export to the Cytoplasm Is Required for a Functional Nonsense-Mediated mRNA Decay Pathway in Yeast

机译:Upf3p的核输入是由Importin-α/-β介导的,并且功能性无义介导的酵母mRNA衰变途径需要出口到细胞质。

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Upf3p, which is required for nonsense-mediated mRNA decay (NMD) in yeast, is primarily cytoplasmic but accumulates inside the nucleus when UPF3 is overexpressed or when upf3 mutations prevent nuclear export. Upf3p physically interacts with Srp1p (importin-α). Upf3p fails to be imported into the nucleus in a temperature-sensitive srp1-31 strain, indicating that nuclear import is mediated by the importin-α/β heterodimer. Nuclear export of Upf3p is mediated by a leucine-rich nuclear export sequence (NES-A), but export is not dependent on the Crm1p exportin. Mutations identified in NES-A prevent nuclear export and confer an Nmd– phenotype. The addition of a functional NES element to an export-defective upf – allele restores export and partially restores an Nmd+ phenotype. Our findings support a model in which the movement of Upf3p between the nucleus and the cytoplasm is required for a fully functional NMD pathway. We also found that overexpression of Upf2p suppresses the Nmd– phenotype in mutant strains carrying nes-A alleles but has no effect on the localization of Upf3p. To explain these results, we suggest that the mutations in NES-A that impair nuclear export cause additional defects in the function of Upf3p that are not rectified by restoration of export alone.
机译:酵母中无义介导的mRNA衰变(NMD)所必需的Upf3p主要是细胞质,但是当UPF3过表达或upf3突变阻止核输出时,它会聚集在细胞核内。 Upf3p与Srp1p(importin-α)进行物理交互。 Upf3p无法导入对温度敏感的srp1-31菌株的核中,表明核导入是由importin-α/β异二聚体介导的。 Upf3p的核输出是由富含亮氨酸的核输出序列(NES-A)介导的,但输出并不依赖于Crm1p的输出蛋白。 NES-A中鉴定出的突变阻止了核输出并赋予了Nmd–表型。向输出缺陷的upf中添加功能性NES元素-等位基因可恢复输出,部分恢复Nmd +表型。我们的发现支持一个模型,在该模型中,Upf3p在细胞核和细胞质之间的移动是完整功能NMD通路所必需的。我们还发现,在携带nes-A等位基因的突变株中,Upf2p的过表达抑制了Nmd-表型,但对Upf3p的定位没有影响。为了解释这些结果,我们建议损害核输出的NES-A突变会导致Upf3p功能的其他缺陷,而这些缺陷不能仅通过恢复出口来纠正。

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