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首页> 外文期刊>Cellular Signalling >Oxidative stress employs phosphatidyl inositol 3-kinase and ERK signalling pathways to activate cAMP phosphodiesterase-4D3 (PDE4D3) through multi-site phosphorylation at Ser239 and Ser579
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Oxidative stress employs phosphatidyl inositol 3-kinase and ERK signalling pathways to activate cAMP phosphodiesterase-4D3 (PDE4D3) through multi-site phosphorylation at Ser239 and Ser579

机译:氧化应激利用磷脂酰肌醇3激酶和ERK信号通路通过Ser239和Ser579的多位磷酸化激活cAMP磷酸二酯酶4D3(PDE4D3)

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摘要

RAW macrophages, which express the PDE4D3 and PDE4D5 cAMP phosphodiesterase isoforms, exhibited increased PDE4 activity when challenged with H2O2 in a fashion that was negated by treatment with the cell permeant antioxidant, N-acetyl cysteine and by diphenyleneiodonium chloride, an inhibitor of NADPH oxidase. In Cos1 cells transfected to express PDE4D3, challenge with H2O2 caused a rapid increase in both the activity and phosphorylation of PDE4D3. Lysates from H2O2-treated COS cells caused the phosphorylation of purified, recombinant PDE4D3 at two sites. One was the established ERK phosphorylation site at Ser579, located at the extreme C-terminus of the catalytic unit, and the other was a novel site at Ser239, located at the extreme N-terminus of the catalytic unit. Double Ser239Ala:Ser579Ala mutation of PDE4D3 prevented its H2O2-dependent phosphorylation both in vitro and in intact COS cells. Phosphorylation of PDE4D3 at Ser579 was ablated by treating COS cells with the MEK inhibitor, PD98059, which also negated activation. The activity of the Ser239Ala:Ser579Ala double mutant, and the Ser579Ala single PDE4D3 mutant was unaffected by H2O2 challenge of COS cells, whilst the Ser239Ala mutant was inhibited. Wortmannin inhibited the H2O2-dependent phosphorylation of PDE4D3 in COS cells by around 50%, whilst it fully ablated phosphorylation at Ser239 as well as ablating activation of PDE4D3. Neither immunodepletion of p70S6 kinase nor siRNA-mediated knockdown of mTor inhibited the H2O2-dependent phosphorylation of PDE4D3 at Ser239. Activation of PDE4D3 by challenge with H2O2 was not additive with activation through protein kinase A (PKA)-mediated phosphorylation of PDE4D3. Challenge with H2O2 did not alter PKA-mediated phosphorylation of PDE4D3 at Ser54. H2O2 dependent phosphorylation of PDE4D3, at Ser239 and Ser579, did not alter the sensitivity of PDE4D3 to inhibition by the selective PDE4 inhibitor, rolipram. An unknown protein kinase acting downstream of phosphatidyl inositol 3-kinase phosphorylates PDE4D3 at Ser239. This switches the effect of phosphorylation by ERK at Ser579 from inhibition to activation. We propose that phosphorylation at Ser239 attenuates interaction between either UCR2 or the UCR1/UCR2 module and the PDE4 catalytic unit so as to re-programme the functional outcome effect of phosphorylation by ERK. We identify a novel process through which reactive oxygen species activate long PDE4 isoforms so as to reduce cAMP levels and thereby promote inflammatory responses. (c) 2006 Elsevier Inc. All rights reserved.
机译:表示PDE4D3和PDE4D5 cAMP磷酸二酯酶同工型的RAW巨噬细胞在受到H2O2攻击时表现出增加的PDE4活性,其方式是用细胞渗透性抗氧化剂N-乙酰基半胱氨酸和NADPH氧化酶抑制剂二苯撑碘鎓氯化物处理。在转染表达PDE4D3的Cos1细胞中,用H2O2攻击导致PDE4D3的活性和磷酸化迅速增加。 H2O2处理过的COS细胞的裂解物在两个位点引起了纯化的重组PDE4D3的磷酸化。一个是在催化单元极端C末端的Ser579处建立的ERK磷酸化位点,另一个是在催化单元极端N末端的Ser239处的新位点。 PDE4D3的双重Ser239Ala:Ser579Ala双重突变在体外和完整的COS细胞中均阻止了其H2O2依赖性磷酸化。通过用MEK抑制剂PD98059处理COS细胞来消除Ser579处PDE4D3的磷酸化,该抑制剂也可以消除激活作用。 Ser239Ala:Ser579Ala双突变体和Ser579Ala单PDE4D3突变体的活性不受COS细胞的H2O2攻击的影响,而Ser239Ala突变体则受到抑制。 Wortmannin抑制COS细胞中PDE4D3的H2O2依赖性磷酸化约50%,同时它完全消除了Ser239的磷酸化以及PDE4D3的活化。 p70S6激酶的免疫耗竭和siRNA介导的mTor的敲低都不能抑制Ser239处PDE4D3的H2O2依赖性磷酸化。通过用H2O2激发而激活PDE4D3与通过蛋白激酶A(PKA)介导的PDE4D3磷酸化的激活并没有加和作用。用H2O2攻击不会改变Ser54上PKA介导的PDE4D3磷酸化。在Ser239和Ser579处,PDE4D3的H2O2依赖性磷酸化作用不会改变PDE4D3对选择性PDE4抑制剂rolipram抑制的敏感性。作用于磷脂酰肌醇3-激酶下游的未知蛋白激酶使Ser239的PDE4D3磷酸化。这将ERK在Ser579处的磷酸化作用从抑制作用转变为活化作用。我们建议在Ser239磷酸化减弱UCR2或UCR1 / UCR2模块和PDE4催化单元之间的相互作用,从而重新编程ERK磷酸化的功能结果效果。我们确定了一个新的过程,通过该过程,活性氧可激活长的PDE4同工型,从而降低cAMP的水平,从而促进炎症反应。 (c)2006 Elsevier Inc.保留所有权利。

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