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蛋白激酶A通过使5-脂氧合酶的丝氨酸523位点磷酸化来抑制白三烯的合成。

Protein kinase A inhibits leukotriene synthesis by phosphorylation of 5-lipoxygenase on serine 523.

作者信息

Luo Ming, Jones Sandra M, Phare Susan M, Coffey Michael J, Peters-Golden Marc, Brock Thomas G

机构信息

Department of Internal Medicine, University of Michigan, Ann Arbor, Michigan 48109, USA.

出版信息

J Biol Chem. 2004 Oct 1;279(40):41512-20. doi: 10.1074/jbc.M312568200. Epub 2004 Jul 26.

DOI:10.1074/jbc.M312568200
PMID:15280375
Abstract

Leukotrienes (LTs) are lipid messengers generated by leukocytes that drive inflammation and modulate neighboring cell function. The synthesis of LTs from arachidonic acid is initiated by the enzyme 5-lipoxygenase (5-LO). We report for the first time that LT synthesis is inhibited by the direct action of protein kinase A (PKA) on 5-LO. The catalytic subunit of PKA directly phosphorylated 5-LO in vivo and in vitro and inhibited activity in intact cells and in vitro. Mutation of Ser-523 on human 5-LO prevented phosphorylation by PKA and restored LT synthesis. Treatment with PKA activators inhibited LTB(4) synthesis in 3T3 cells expressing wild type 5-LO but not in cells expressing the S523A mutant of 5-LO. The mechanism of inhibition of LTB(4) synthesis did not involve either reduced membrane association of activated 5-LO or redistribution of 5-LO from the nucleus to the cytoplasm. Instead, PKA phosphorylation of recombinant 5-LO inhibited in vitro activity, as did co-transfection of cells with 5-LO plus the catalytic subunit of PKA. Also, substitution of Ser-523 with glutamic acid, mimicking phosphorylation, resulted in the total loss of 5-LO activity. These results indicate that PKA phosphorylates 5-LO on Ser-523, which inhibits the catalytic activity of 5-LO and reduces cellular LT generation. Thus, PKA activation, as can occur in response to adenosine, prostaglandin E(2), beta-adrenergic agonists, and other mediators, is a means of directly reducing 5-LO activity and LT synthesis that may be important in limiting inflammation and maintaining homeostasis.

摘要

白三烯(LTs)是由白细胞产生的脂质信使,可驱动炎症并调节邻近细胞的功能。从花生四烯酸合成白三烯是由5-脂氧合酶(5-LO)启动的。我们首次报道蛋白激酶A(PKA)对5-LO的直接作用可抑制白三烯的合成。PKA的催化亚基在体内和体外直接磷酸化5-LO,并抑制完整细胞和体外的活性。人5-LO上的Ser-523突变可阻止PKA的磷酸化并恢复白三烯的合成。用PKA激活剂处理可抑制表达野生型5-LO的3T3细胞中白三烯B4(LTB4)的合成,但在表达5-LO的S523A突变体的细胞中则无此作用。抑制LTB4合成的机制既不涉及活化的5-LO膜结合减少,也不涉及5-LO从细胞核到细胞质的重新分布。相反,重组5-LO的PKA磷酸化抑制了体外活性,细胞用5-LO与PKA催化亚基共转染也有同样效果。此外,用谷氨酸替代Ser-523模拟磷酸化,导致5-LO活性完全丧失。这些结果表明,PKA使5-LO的Ser-523磷酸化,从而抑制5-LO的催化活性并减少细胞白三烯的生成。因此,PKA激活(如对腺苷、前列腺素E2、β-肾上腺素能激动剂和其他介质的反应)是直接降低5-LO活性和白三烯合成的一种方式,这在限制炎症和维持体内平衡方面可能很重要。

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