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内质网 Ca2+ 释放通过细胞外信号调节激酶(ERK)1/2 介导的丝氨酸 635 磷酸化调节内皮型一氧化氮合酶。

Endoplasmic reticulum Ca2+ release modulates endothelial nitric-oxide synthase via extracellular signal-regulated kinase (ERK) 1/2-mediated serine 635 phosphorylation.

机构信息

Davis Heart and Lung Research Institute, Division of Cardiovascular Medicine, Department of Molecular and Cellular Biochemistry, The Ohio State University College of Medicine, Columbus, Ohio 43210, USA.

出版信息

J Biol Chem. 2011 Jun 3;286(22):20100-8. doi: 10.1074/jbc.M111.220236. Epub 2011 Mar 28.

DOI:10.1074/jbc.M111.220236
PMID:21454579
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3103382/
Abstract

Endothelial nitric-oxide synthase (eNOS) plays a central role in cardiovascular regulation. eNOS function is critically modulated by Ca(2+) and protein phosphorylation, but the interrelationship between intracellular Ca(2+) mobilization and eNOS phosphorylation is poorly understood. Here we show that endoplasmic reticulum (ER) Ca(2+) release activates eNOS by selectively promoting its Ser-635/633 (bovine/human) phosphorylation. With bovine endothelial cells, thapsigargin-induced ER Ca(2+) release caused a dose-dependent increase in eNOS Ser-635 phosphorylation, leading to elevated NO production. ER Ca(2+) release also promoted eNOS Ser-633 phosphorylation in mouse vessels in vivo. This effect was independent of extracellular Ca(2+) and selective to Ser-635 because the phosphorylation status of other eNOS sites, including Ser-1179 or Thr-497, was unaffected in thapsigargin-treated cells. Blocking ERK1/2 abolished ER Ca(2+) release-induced eNOS Ser-635 phosphorylation, whereas inhibiting protein kinase A or Ca(2+)/calmodulin-dependent protein kinase II had no effect. Protein phosphorylation assay confirmed that ERK1/2 directly phosphorylated the eNOS Ser-635 residue in vitro. Further studies demonstrated that ER Ca(2+) release-induced ERK1/2 activation mediated the enhancing action of purine or bradykinin receptor stimulation on eNOS Ser-635/633 phosphorylation in bovine/human endothelial cells. Mutating the Ser-635 to nonphosphorylatable alanine prevented ATP from activating eNOS in cells. Taken together, these studies reveal that ER Ca(2+) release enhances eNOS Ser-635 phosphorylation and function via ERK1/2 activation. Because ER Ca(2+) is commonly mobilized by agonists or physicochemical stimuli, the identified ER Ca(2+)-ERK1/2-eNOS Ser-635 phosphorylation pathway may have a broad role in the regulation of endothelial function.

摘要

内皮型一氧化氮合酶(eNOS)在心血管调节中起着核心作用。eNOS 的功能受到 Ca2+和蛋白质磷酸化的严格调节,但细胞内 Ca2+动员与 eNOS 磷酸化之间的相互关系还了解甚少。本文中,我们发现内质网(ER)Ca2+释放通过选择性促进 eNOS 的 Ser-635/633(牛/人)磷酸化来激活 eNOS。在牛内皮细胞中,毒胡萝卜素诱导的 ER Ca2+释放导致 eNOS Ser-635 磷酸化呈剂量依赖性增加,从而导致 NO 产量升高。ER Ca2+释放也促进了体内小鼠血管中 eNOS Ser-633 的磷酸化。这种作用不依赖于细胞外 Ca2+,并且对 Ser-635 具有选择性,因为毒胡萝卜素处理的细胞中其他 eNOS 位点(包括 Ser-1179 或 Thr-497)的磷酸化状态不受影响。阻断 ERK1/2 可消除 ER Ca2+释放诱导的 eNOS Ser-635 磷酸化,而抑制蛋白激酶 A 或 Ca2+/钙调蛋白依赖性蛋白激酶 II 则没有作用。蛋白磷酸化测定证实 ERK1/2 可在体外直接磷酸化 eNOS Ser-635 残基。进一步的研究表明,ER Ca2+释放诱导的 ERK1/2 激活介导了嘌呤或缓激肽受体刺激在牛/人内皮细胞中增强 eNOS Ser-635/633 磷酸化的作用。将 Ser-635 突变为非磷酸化的丙氨酸可防止 ATP 在细胞中激活 eNOS。总之,这些研究表明,ER Ca2+释放通过 ERK1/2 激活增强 eNOS Ser-635 磷酸化和功能。由于激动剂或物理化学刺激通常会动员 ER Ca2+,因此所鉴定的 ER Ca2+-ERK1/2-eNOS Ser-635 磷酸化途径可能在调节内皮功能方面具有广泛的作用。

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