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小窝蛋白-1与内皮型一氧化氮合酶还原酶结构域之间的相互作用。对催化作用的影响。

Interaction between caveolin-1 and the reductase domain of endothelial nitric-oxide synthase. Consequences for catalysis.

作者信息

Ghosh S, Gachhui R, Crooks C, Wu C, Lisanti M P, Stuehr D J

机构信息

Department of Immunology, Lerner Research Institute, The Cleveland Clinic, Cleveland, Ohio 44195, USA.

出版信息

J Biol Chem. 1998 Aug 28;273(35):22267-71. doi: 10.1074/jbc.273.35.22267.

Abstract

Endothelial nitric-oxide synthase (eNOS) is targeted to caveoli through interaction with caveolin-1 (cav-1). cav-1 binding to a consensus site in the eNOS oxygenase domain is proposed to antagonize calmodulin (CaM) binding and thereby inhibit eNOS nitric oxide (NO) synthesis. To study the mechanism, we examined how cav-1 scaffolding domain peptide (amino acids 82-101; cav-1P) would affect NO synthesis, NADPH oxidation, cytochrome c reduction, and ferricyanide reduction by full-length eNOS or its isolated oxygenase and reductase domains. Cav-1P equivalently inhibited NO synthesis and NADPH oxidation by full-length eNOS in a manner reversible by CaM but did not affect NADPH-independent NO synthesis by full-length eNOS or its oxygenase domain, indicating inhibition required the reductase domain. Similar concentrations of cav-1P inhibited cytochrome c reduction by full-length eNOS or the reductase domain (amino acids 492-1205) in a CaM-reversible manner, indicating cav-1P interaction with reductase or full-length eNOS are equivalent. Ferricyanide reduction was unaffected by cav-1P in all cases. Immunoblotting showed that full-length eNOS, eNOS oxygenase, and eNOS reductase all bound to an immobilized glutathione S-transferase-cav-1 fusion protein. Thus, cav-1 interacts independently with both oxygenase and reductase domains of eNOS. The reductase interaction occurs independent of a cav-1 binding motif, is CaM-reversible, and is of sufficient affinity to match cav-1P inhibition of NO synthesis by full-length eNOS. We propose that cav-1 binding to eNOS reductase compromises its ability to bind CaM and to donate electrons to the eNOS heme, thereby inhibiting NO synthesis.

摘要

内皮型一氧化氮合酶(eNOS)通过与小窝蛋白-1(cav-1)相互作用而靶向定位于小窝。据推测,cav-1与eNOS加氧酶结构域中的共有位点结合会拮抗钙调蛋白(CaM)的结合,从而抑制eNOS一氧化氮(NO)的合成。为了研究其机制,我们检测了cav-1支架结构域肽(氨基酸82 - 101;cav-1P)如何影响全长eNOS或其分离的加氧酶和还原酶结构域的NO合成、NADPH氧化、细胞色素c还原以及铁氰化物还原。Cav-1P以一种可被CaM逆转的方式等效地抑制全长eNOS的NO合成和NADPH氧化,但不影响全长eNOS或其加氧酶结构域的不依赖NADPH的NO合成,这表明抑制作用需要还原酶结构域。相似浓度的cav-1P以CaM可逆的方式抑制全长eNOS或还原酶结构域(氨基酸492 - 1205)的细胞色素c还原,这表明cav-1P与还原酶或全长eNOS的相互作用是等效的。在所有情况下,铁氰化物还原均不受cav-1P影响。免疫印迹显示全长eNOS、eNOS加氧酶和eNOS还原酶均与固定化的谷胱甘肽S - 转移酶 - cav-1融合蛋白结合。因此,cav-1与eNOS的加氧酶和还原酶结构域均独立相互作用。还原酶的相互作用独立于cav-1结合基序发生,是CaM可逆的,并且具有足够的亲和力以匹配cav-1P对全长eNOS的NO合成的抑制作用。我们提出,cav-1与eNOS还原酶的结合损害了其结合CaM以及向eNOS血红素供电子的能力,从而抑制NO合成。

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