首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Nitration of protein kinase G-Iα modulates cyclic nucleotide crosstalk via phosphodiesterase 3A: Implications for acute lung injury
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Nitration of protein kinase G-Iα modulates cyclic nucleotide crosstalk via phosphodiesterase 3A: Implications for acute lung injury

机译:蛋白质激酶G-Iα的硝化通过磷酸二酯酶3a调节循环核苷酸串扰:急性肺损伤的影响

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摘要

Phosphodiesterase 3A (PDE3A) selectively cleaves the phosphodiester bond of cAMP and is inhibited by cGMP, making it an important regulator of cAMP–cGMP signaling crosstalk in the pulmonary vasculature. In addition, the nitric oxide–cGMP axis is known to play an important role in maintaining endothelial barrier function. However, the potential role of protein kinase G-Iα (PKG-Iα) in this protective process is unresolved and was the focus of our study. We describe here a novel mechanism regulating PDE3A activity, which involves a PKG-Iα–dependent inhibitory phosphorylation of PDE3A at serine 654. We also show that this phosphorylation is critical for maintaining intracellular cAMP levels in the pulmonary endothelium and endothelial barrier integrity. In an animal model of acute lung injury (ALI) induced by challenging mice with lipopolysaccharide (LPS), an increase in PDE3 activity and a decrease in cAMP levels in lung tissue was associated with reduced PKG activity upon PKG-Iα nitration at tyrosine 247. The peroxynitrite scavenger manganese (III) tetrakis(1-methyl-4-pyridyl)porphyrin prevented this increase in PDE3 activity in LPS-exposed lungs. In addition, site-directed mutagenesis of PDE3A to replace serine 654 with alanine yielded a mutant protein that was insensitive to PKG-dependent regulation. Taken together, our data demonstrate a novel functional link between nitrosative stress induced by LPS during ALI and the downregulation of barrier-protective intracellular cAMP levels. Our data also provide new evidence that PKG-Iα is critical for endothelial barrier maintenance and that preservation of its catalytic activity may be efficacious in ALI therapy.
机译:磷酸二酯酶3A(PDE3A)选择性裂解cAMP的磷酸二酯键,并且通过cGMP的抑制,使得它的cAMP-cGMP信号串扰在肺脉管系统的重要调节器。此外,一氧化氮的cGMP轴已知在维持内皮屏障功能中发挥重要的作用。然而,蛋白质的潜在作用激酶G-Iα(PKG-Iα)在这个保护过程中得到解决,是我们研究的重点。在这里,我们描述了一种新的机制调节PDE3A活性,这涉及在丝氨酸654 PDE3A的PKG-Iα依赖性抑制性磷酸我们还表明,此磷酸化是在肺内皮和内皮屏障完整性维持胞内cAMP水平的关键。在通过挑战与脂多糖(LPS)诱导小鼠急性肺损伤(ALI)的动物模型,在PDE3活性的增加和在肺组织中的cAMP水平的降低与经PKG-Iα硝化降低的PKG活性在酪氨酸247相关联。该过氧化亚硝酸盐清除剂锰(III)四(1-甲基-4-吡啶基)卟啉防止这种增加PDE3活性LPS暴露肺部。此外,PDE3A的位点定向诱变来替换丝氨酸654用丙氨酸,得到的突变体蛋白,这是不敏感的PKG依赖性调节。总之,我们的数据证明ALI期间由LPS诱导的亚硝化应激和阻挡保护细胞内cAMP水平的下调之间的新的功能性连接。我们的数据还提供了新的证据表明,PKG-Iα是内皮屏障维护至关重要,其催化活性的保存工作可能在ALI治疗有效。

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