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Dbp5是一种mRNA输出所需的DEAD盒蛋白,它通过与CAN/Nup159p的保守相互作用被招募到核孔复合体的胞质纤维上。

Dbp5, a DEAD-box protein required for mRNA export, is recruited to the cytoplasmic fibrils of nuclear pore complex via a conserved interaction with CAN/Nup159p.

作者信息

Schmitt C, von Kobbe C, Bachi A, Panté N, Rodrigues J P, Boscheron C, Rigaut G, Wilm M, Séraphin B, Carmo-Fonseca M, Izaurralde E

机构信息

University of Geneva, Department of Molecular Biology, 30 quai Ernest-Ansermet, CH-1205 Geneva.

出版信息

EMBO J. 1999 Aug 2;18(15):4332-47. doi: 10.1093/emboj/18.15.4332.

Abstract

Dbp5 is a DEAD-box protein essential for mRNA export from the nucleus in yeast. Here we report the isolation of a cDNA encoding human Dbp5 (hDbp5) which is 46% identical to yDbp5p. Like its yeast homologue, hDbp5 is localized within the cytoplasm and at the nuclear rim. By immunoelectron microscopy, the nuclear envelope-bound fraction of Dbp5 has been localized to the cytoplasmic fibrils of the nuclear pore complex (NPC). Consistent with this localization, we show that both the human and yeast proteins directly interact with an N-terminal region of the nucleoporins CAN/Nup159p. In a conditional yeast strain in which Nup159p is degraded when shifted to the nonpermissive temperature, yDbp5p dissociates from the NPC and localizes to the cytoplasm. Thus, Dbp5 is recruited to the NPC via a conserved interaction with CAN/Nup159p. To investigate its function, we generated defective hDbp5 mutants and analysed their effects in RNA export by microinjection in Xenopus oocytes. A mutant protein containing a Glu-->Gln change in the conserved DEAD-box inhibited the nuclear exit of mRNAs. Together, our data indicate that Dbp5 is a conserved RNA-dependent ATPase which is recruited to the cytoplasmic fibrils of the NPC where it participates in the export of mRNAs out of the nucleus.

摘要

Dbp5是一种对酵母细胞核中mRNA输出至关重要的DEAD盒蛋白。在此我们报告了编码人Dbp5(hDbp5)的cDNA的分离,它与酵母Dbp5p有46%的同源性。与其酵母同源物一样,hDbp5定位于细胞质和核边缘。通过免疫电子显微镜观察,Dbp5与核膜结合的部分定位于核孔复合体(NPC)的细胞质纤维上。与这种定位一致,我们发现人和酵母蛋白都直接与核孔蛋白CAN/Nup159p的N端区域相互作用。在一个条件性酵母菌株中,当转移到非允许温度时Nup159p会降解,酵母Dbp5p从NPC解离并定位于细胞质中。因此,Dbp5通过与CAN/Nup159p的保守相互作用被招募到NPC。为了研究其功能,我们构建了有缺陷的hDbp5突变体,并通过显微注射到非洲爪蟾卵母细胞中分析它们对RNA输出的影响。一个在保守的DEAD盒中含有Glu→Gln变化的突变蛋白抑制了mRNA的核输出。总之,我们的数据表明Dbp5是一种保守的RNA依赖性ATP酶,它被招募到NPC的细胞质纤维上,在那里参与mRNA从细胞核输出。

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