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粟酒裂殖酵母中由独立于Crm1的核输出系统介导的KH结构域RNA结合蛋白Rnc1的空间调控。

Spatial regulation of the KH domain RNA-binding protein Rnc1 mediated by a Crm1-independent nuclear export system in Schizosaccharomyces pombe.

作者信息

Satoh Ryosuke, Matsumura Yasuhiro, Tanaka Akitomo, Takada Makoto, Ito Yuna, Hagihara Kanako, Inari Masahiro, Kita Ayako, Fukao Akira, Fujiwara Toshinobu, Hirai Shinya, Tani Tokio, Sugiura Reiko

机构信息

Laboratory of Molecular Pharmacogenomics, Department of Pharmaceutical Sciences, Kindai University, Higashiosaka City, Osaka, 577-8502, Japan.

Laboratory of Biochemistry, Department of Pharmacy, Kindai University, Higashiosaka City, Osaka, 577-8502, Japan.

出版信息

Mol Microbiol. 2017 May;104(3):428-448. doi: 10.1111/mmi.13636. Epub 2017 Feb 24.

Abstract

RNA-binding proteins (RBPs) play important roles in the posttranscriptional regulation of gene expression, including mRNA stability, transport and translation. Fission yeast rnc1 encodes a K Homology (KH)-type RBP, which binds and stabilizes the Pmp1 MAPK phosphatase mRNA thereby suppressing the Cl hypersensitivity of calcineurin deletion and MAPK signaling mutants. Here, we analyzed the spatial regulation of Rnc1 and discovered a putative nuclear export signal (NES) , which dictates the cytoplasmic localization of Rnc1 in a Crm1-independent manner. Notably, mutations in the NES altered nucleocytoplasmic distribution of Rnc1 and abolished its function to suppress calcineurin deletion, although the Rnc1 NES mutant maintains the ability to bind Pmp1 mRNA. Intriguingly, the Rnc1 NES mutant destabilized Pmp1 mRNA, suggesting the functional importance of the Rnc1 cytoplasmic localization. Mutation in Rae1, but not Mex67 deletion or overproduction, induced Rnc1 accumulation in the nucleus, suggesting that Rnc1 is exported from the nucleus to the cytoplasm via the mRNA export pathway involving Rae1. Importantly, mutations in the Rnc1 KH-domains abolished the mRNA-binding ability and induced nuclear localization, suggesting that Rnc1 may be exported from the nucleus together with its target mRNAs. Collectively, the functional Rae1-dependent mRNA export system may influence the cytoplasmic localization and function of Rnc1.

摘要

RNA结合蛋白(RBPs)在基因表达的转录后调控中发挥着重要作用,包括mRNA稳定性、运输和翻译。裂殖酵母rnc1编码一种K同源(KH)型RBP,它结合并稳定Pmp1 MAPK磷酸酶mRNA,从而抑制钙调神经磷酸酶缺失和MAPK信号突变体的Cl超敏反应。在这里,我们分析了Rnc1的空间调控,并发现了一个假定的核输出信号(NES),它以不依赖Crm1的方式决定Rnc1的细胞质定位。值得注意的是,NES中的突变改变了Rnc1的核质分布,并消除了其抑制钙调神经磷酸酶缺失的功能,尽管Rnc1 NES突变体保持了结合Pmp1 mRNA的能力。有趣的是,Rnc1 NES突变体使Pmp1 mRNA不稳定,这表明Rnc1细胞质定位具有功能重要性。Rae1中的突变,但不是Mex67缺失或过量表达,诱导Rnc1在细胞核中积累,这表明Rnc1通过涉及Rae1的mRNA输出途径从细胞核输出到细胞质。重要的是,Rnc1 KH结构域中的突变消除了mRNA结合能力并诱导了核定位,这表明Rnc1可能与其靶mRNA一起从细胞核输出。总的来说,功能性的依赖Rae1的mRNA输出系统可能会影响Rnc1的细胞质定位和功能。

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