Luo Ming, Jones Sandra M, Phare Susan M, Coffey Michael J, Peters-Golden Marc, Brock Thomas G
Department of Internal Medicine, University of Michigan, Ann Arbor, Michigan 48109, USA.
J Biol Chem. 2004 Oct 1;279(40):41512-20. doi: 10.1074/jbc.M312568200. Epub 2004 Jul 26.
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.
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。