香烟诱导内皮一氧化氮合酶磷酸化的改变:蛋白激酶C的作用。

L Wagner, B Laczy, M Tamaskó, I Mazák, L Markó, G A Molnár, Z Wagner, M Mohás, J Cseh, A Fekete, I Wittmann
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引用次数: 33

摘要

内皮型一氧化氮合酶(eNOS)受Ser(1177)和Thr(495)磷酸化调控,影响NO的生物利用度。香烟烟雾干扰eNOS-cGMP-NO通路,导致NO生成减少。在这里,作者研究了香烟烟雾对eNOS磷酸化的急性影响,重点是蛋白激酶(PKs)。内皮细胞培养首先用香烟烟雾缓冲液(CSB)进行浓度和时间依赖性处理,然后用还原性谷胱甘肽(GSH)或各种PK抑制剂(H-89、LY-294002、Ro-318425和ruboxistaurin)进行处理。Western blot检测eNOS、phospho-Ser(1177)-eNOS、phospho-Thr(495)-eNOS、Akt(PKB)和phospho-Akt蛋白水平。CSB以浓度和时间依赖的方式增加eNOS Ser位点(1177)和Thr位点(495)的磷酸化(p < 0.01, p < 0.05),并导致eNOS活性二聚体形式的解离(p < 0.05)。GSH降低了两个位点eNOS的磷酸化(与不含GSH的CSB相比p < 0.05),并阻止了二聚体eNOS水平的降低。CSB处理也降低了phospho-Ser(473)-Akt水平(与对照组相比p < 0.05)。H-89对PKA的抑制不影响csb诱导的磷酸化,而PKB抑制剂LY-294002在Ser位点增强了PKA的磷酸化(1117)。PKC阻滞剂r -318425和ruboxistaurin增强了CSB诱导的Ser位点磷酸化(1177),但降低了Thr位点磷酸化(495)(与CSB相比p < 0.05)。香烟烟雾会破坏酶活性的eNOS二聚体,并将eNOS磷酸化转移到抑制状态。这两种作用都可能导致一氧化氮的生物利用度降低。eNOS磷酸化模式向抑制状态的转变似乎与PKA和磷酸肌醇3-激酶(PI3-K)/Akt通路无关,而PKC似乎起着关键作用。
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Cigarette smoke-induced alterations in endothelial nitric oxide synthase phosphorylation: role of protein kinase C.

Endothelial nitric oxide synthase (eNOS) is regulated by phosphorylation of Ser(1177) and Thr(495), which affects NO bioavailability. Cigarette smoke disturbs the eNOS-cGMP-NO pathway and causes decreased NO production. Here the authors investigated the acute effects of cigarette smoke on eNOS phosphorylation, focusing on protein kinases (PKs). Endothelial cell culture was concentration- and time-dependently treated first with cigarette smoke buffer (CSB), then with reduced glutathione (GSH) or various PK inhibitors (H-89, LY-294002, Ro-318425, and ruboxistaurin). eNOS, phospho-Ser(1177)-eNOS, phospho-Thr(495)-eNOS, Akt(PKB), and phospho-Akt protein levels were determined by Western blot. CSB increased the phosphorylation of eNOS at Ser(1177) and more at Thr(495) in a concentration- and time-dependent manner (p < .01, p < .05 versus control, respectively) and resulted in the dissociation of the active dimeric form of eNOS (p < .05). GSH decreased the phosphorylation of eNOS at both sites (p < .05 versus CSB without GSH) and prevented the decrease of dimer eNOS level. CSB treatment also decreased the level of phospho-Ser(473)-Akt (p < .05 versus control). Inhibition of PKA by H-89 did not affect CSB-induced phosphorylation, whereas the PKB inhibitor LY-294002 enhanced it at Ser(1117). The PKC blockers Ro-318425 and ruboxistaurin augmented the CSB-induced phosphorylation at Ser(1177) but decreased phosphorylation at Thr(495) (p < .05 versus CSB). Cigarette smoke causes a disruption of the enzymatically active eNOS dimers and shifts the eNOS phosphorylation to an inhibitory state. Both effects might lead to reduced NO bioavailability. The shift of the eNOS phosphorylation pattern to an inhibitory state seems to be independent of the PKA and phosphoinositol 3-kinase (PI3-K)/Akt pathways, whereas PKC appears to play a key role.

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