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首页> 外文期刊>Bioscience Reports >Endothelial nitric oxide synthase is regulated by ERK phosphorylation at Ser602
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Endothelial nitric oxide synthase is regulated by ERK phosphorylation at Ser602

机译:内皮一氧化氮合酶受Ser602处ERK磷酸化的调节

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eNOS (endothelial nitric oxide synthase) contains a MAPK (mitogen-activated protein kinase)-binding site associated with a major eNOS control element. Purified ERK (extracellular-signal-regulated kinase) phosphorylates eNOS with a stoichiometry of 2–3 phosphates per eNOS monomer. Phosphorylation decreases NO synthesis and cytochrome c reductase activity. Three sites of phosphorylation were detected by MS. All sites matched the SP and TP MAPK (mitogen-activated protein kinase) phosphorylation motif. Ser602 lies at the N-terminal edge of the 42-residue eNOS AI (autoinhibitory) element. The pentabasic MAPK-binding site lies at the opposite end of the AI, and other critical regulatory features are between them. Thr46 and Ser58 are located in a flexible region associated with the N terminus of the oxygenase domain. In contrast with PKC (protein kinase C), phosphorylation by ERK did not significantly interfere with CaM (calmodulin) binding as analysed by optical biosensing. Instead, ERK phosphorylation favours a state in which FMN and FAD are in close association and prevents conformational changes that expose reduced FMN to acceptors. The close associations between control sites in a few regions of the molecule suggest that control of signal generation is modulated by multiple inputs interacting directly on the surface of eNOS via overlapping binding domains and tightly grouped targets.
机译:eNOS(内皮型一氧化氮合酶)包含一个与主要eNOS控制元件相关的MAPK(丝裂原激活的蛋白激酶)结合位点。纯化的ERK(细胞外信号调节激酶)使每个eNOS单体的化学计量为2-3磷酸化eNOS。磷酸化降低了NO的合成和细胞色素C还原酶的活性。通过MS检测到三个磷酸化位点。所有位点均与SP和TP MAPK(促分裂原激活的蛋白激酶)磷酸化基序匹配。 Ser602位于42个残基的eNOS AI(自抑制)元件的N端边缘。五磷酸MAPK结合位点位于AI的另一端,其他关键的调控特征也位于它们之间。 Thr46和Ser58位于与加氧酶结构域N末端相关的柔性区域。与PKC(蛋白激酶C)相反,通过光学生物传感分析,ERK的磷酸化不会显着干扰CaM(钙调蛋白)的结合。相反,ERK磷酸化有利于FMN和FAD紧密结合的状态,并防止将还原的FMN暴露给受体的构象变化。分子几个区域中控制位点之间的紧密联系表明,信号产生的控制是通过多个输入(通过重叠的结合域和紧密分组的靶标直接在eNOS表面上相互作用)来调节的。

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