Botti Valentina, McNicoll François, Steiner Michaela C, Richter Florian M, Solovyeva Anfisa, Wegener Marius, Schwich Oliver D, Poser Ina, Zarnack Kathi, Wittig Ilka, Neugebauer Karla M, Müller-McNicoll Michaela
Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, CT.
Cluster of Excellence Macromolecular Complexes, Institute of Cell Biology and Neuroscience, Goethe University Frankfurt, Frankfurt am Main, Germany.
J Cell Biol. 2017 Jul 3;216(7):1993-2009. doi: 10.1083/jcb.201610051. Epub 2017 Jun 7.
SR proteins function in nuclear pre-mRNA processing, mRNA export, and translation. To investigate their cellular dynamics, we developed a quantitative assay, which detects differences in nucleocytoplasmic shuttling among seven canonical SR protein family members. As expected, SRSF2 and SRSF5 shuttle poorly in HeLa cells but surprisingly display considerable shuttling in pluripotent murine P19 cells. Combining individual-resolution cross-linking and immunoprecipitation (iCLIP) and mass spectrometry, we show that elevated arginine methylation of SRSF5 and lower phosphorylation levels of cobound SRSF2 enhance shuttling of SRSF5 in P19 cells by modulating protein-protein and protein-RNA interactions. Moreover, SRSF5 is bound to pluripotency-specific transcripts such as and in the cytoplasm. SRSF5 depletion reduces and overexpression increases their cytoplasmic mRNA levels, suggesting that enhanced mRNA export by SRSF5 is required for the expression of pluripotency factors. Remarkably, neural differentiation of P19 cells leads to dramatically reduced SRSF5 shuttling. Our findings indicate that posttranslational modification of SR proteins underlies the regulation of their mRNA export activities and distinguishes pluripotent from differentiated cells.
SR蛋白在核内前体mRNA加工、mRNA输出及翻译过程中发挥作用。为研究其细胞动力学,我们开发了一种定量检测方法,可检测七种典型SR蛋白家族成员在核质穿梭方面的差异。不出所料,SRSF2和SRSF5在HeLa细胞中的穿梭能力较差,但令人惊讶的是,它们在多能性小鼠P19细胞中表现出相当程度的穿梭。结合单分辨率交联免疫沉淀(iCLIP)和质谱分析,我们发现SRSF5精氨酸甲基化水平升高以及与之结合的SRSF2磷酸化水平降低,通过调节蛋白质 - 蛋白质和蛋白质 - RNA相互作用,增强了SRSF5在P19细胞中的穿梭。此外,SRSF5在细胞质中与多能性特异性转录本如 及 结合。SRSF5的缺失会降低这些转录本的水平,而过表达则会增加其细胞质mRNA水平,这表明SRSF5增强的mRNA输出是多能性因子表达所必需的。值得注意的是,P19细胞的神经分化导致SRSF5穿梭显著减少。我们的研究结果表明,SR蛋白的翻译后修饰是其mRNA输出活性调控的基础,并且区分了多能性细胞和分化细胞。