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Mutually exclusive STAT1 modifications identified by Ubc9/substrate dimerization-dependent SUMOylation

机译:通过Ubc9 /底物二聚化依赖性SUMOylation鉴定互斥的STAT1修饰

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Post-translational modifications control the physiological activity of the signal transducer and activator of transcription STAT1. While phosphorylation at tyrosine Y701 is a prerequisite for STAT1 dimerization, its SUMOylation represses the transcriptional activity. Recently, we have demonstrated that SUMOylation at lysine K703 inhibits the phosphorylation of nearby localized Y701 of STAT1. Here, we analysed the influence of phosphorylation of Y701 on SUMOylation of K703 in vivo. For that reason, an Ubc9/substrate dimerization-dependent SUMOylation (USDDS) system was developed, which consists of fusions of the SUMOylation substrate and of the SUMO-conjugating enzyme Ubc9 to the chemically activatable heterodimerization domains FKBP and FRB, respectively. When FKBP fusion proteins of STAT1, p53, CRSP9, FOS, CSNK2B, HES1, TCF21 and MYF6 are coexpressed with Ubc9-FRB, treatment of HEK293 cells with the rapamycin-related dimerizer compound AP21967 induces SUMOylation of these proteins in vivo. For STAT1-FKBP and p53-FKBP we show that this SUMOylation takes place at their specific SUMOylation sites in vivo. Using USDDS, we then demonstrate that STAT1 phosphorylation at Y701 induced by interferon-β treatment inhibits SUMOylation of K703 in vivo. Thus, pY701 and SUMO-K703 of STAT1 represent mutually exclusive modifications, which prevent signal integration at this molecule and probably ensure the existence of differentially modified subpopulations of STAT1 necessary for its regulated nuclear cytoplasmic activation/inactivation cycle.
机译:翻译后修饰控制着信号转导子和转录激活子STAT1的生理活性。虽然酪氨酸Y701的磷酸化是STAT1二聚化的先决条件,但其SUMOylation抑制转录活性。最近,我们已经证明赖氨酸K703的SUMOylation抑制STAT1的局部Y701的磷酸化。在这里,我们分析了Y701的磷酸化对K703的SUMOylation在体内的影响。因此,开发了一种依赖于Ubc9 /底物二聚化的SUMOylation(USDDS)系统,该系统由SUMOylation底物和SUMO共轭酶Ubc9分别与化学可活化的异二聚域FKBP和FRB融合而成。当STAT1,p53,CRSP9,FOS,CSNK2B,HES1,TCF21和MYF6的FKBP融合蛋白与Ubc9-FRB共表达时,用雷帕霉素相关的二聚体化合物AP21967处理HEK293细胞会在体内诱导这些蛋白的SUMOylation。对于STAT1-FKBP和p53-FKBP,我们显示了这种SUMOylation在体内的特定SUMOylation位点发生。然后,使用USDDS,我们证明干扰素-β处理诱导Y701处的STAT1磷酸化在体内抑制K703的SUMOylation。因此,STAT1的pY701和SUMO-K703代表相互排斥的修饰,它们阻止了该分子上的信号整合,并可能确保了STAT1调控核细胞质激活/失活周期所必需的差异修饰亚群的存在。

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