Satoh Ryosuke, Hagihara Kanako, Sugiura Reiko
Laboratory of Molecular Pharmacogenomics, Department of Pharmaceutical Sciences, Kindai University, Higashiosaka City, Osaka, 577-8502, Japan.
Curr Genet. 2018 Feb;64(1):103-108. doi: 10.1007/s00294-017-0732-5. Epub 2017 Aug 10.
In eukaryotic cells, RNA binding proteins (RBPs) play critical roles in regulating almost every aspect of gene expression, often shuttling between the nucleus and the cytoplasm. They are also key determinants in cell fate via controlling the target mRNAs under the regulation of various signaling pathways in response to environmental stresses. Therefore, understanding the mechanisms that couple the location of mRNA and RBPs is a major challenge in the field of gene expression and signal responses. In fission yeast, a KH-type RBP Rnc1 negatively regulates MAPK signaling activation via mRNA stabilization of the dual-specificity MAPK phosphatase Pmp1, which dephosphorylates MAPK Pmk1. Rnc1 also serves as a target of MAPK phosphorylation, which makes a feedback loop mediated by an RBP. We recently discovered that the nuclear export of Rnc1 requires mRNA-binding ability and the mRNA export factor Rae1. This strongly suggested the presence of an mRNA-export system, which recognizes the mRNA/RBP complex and dictates the location and post-transcriptional regulation of mRNA cargo. Here, we briefly review the known mechanisms of general nuclear transporting systems, with an emphasis on our recent findings on the spatial regulation of Rnc1 and its impact on the regulation of the MAPK signal transduction cascade.
在真核细胞中,RNA结合蛋白(RBPs)在调控基因表达的几乎各个方面发挥着关键作用,常常穿梭于细胞核与细胞质之间。它们也是细胞命运的关键决定因素,通过在各种信号通路的调控下控制靶mRNA来响应环境压力。因此,理解将mRNA和RBPs的定位联系起来的机制是基因表达和信号应答领域的一项重大挑战。在裂殖酵母中,一种KH型RBP Rnc1通过双特异性MAPK磷酸酶Pmp1的mRNA稳定性负调控MAPK信号激活,Pmp1可使MAPK Pmk1去磷酸化。Rnc1还是MAPK磷酸化的靶点,这形成了一个由RBP介导的反馈环。我们最近发现,Rnc1的核输出需要mRNA结合能力和mRNA输出因子Rae1。这有力地表明存在一种mRNA输出系统,该系统识别mRNA/RBP复合物,并决定mRNA货物的定位和转录后调控。在此,我们简要回顾一般核转运系统的已知机制,重点介绍我们最近关于Rnc1空间调控及其对MAPK信号转导级联调控影响的研究发现。