Feron O, Dessy C, Opel D J, Arstall M A, Kelly R A, Michel T
Cardiovascular Division, Department of Medicine, Brigham and Women's Hospital, Harvard Medical School, Boston, Massachusetts 02115, USA.
J Biol Chem. 1998 Nov 13;273(46):30249-54. doi: 10.1074/jbc.273.46.30249.
The endothelial isoform of nitric oxide synthase (eNOS) is dually acylated and thereby targeted to signal-transducing microdomains termed caveolae. In endothelial cells, eNOS interacts with caveolin-1, which represses eNOS enzyme activity. In cardiac myocytes, eNOS associates with the muscle-specific caveolin-3 isoform, but whether this interaction affects NO production and regulates myocyte function is unknown. We isolated neonatal cardiac myocytes from mutant mice with targeted disruption of the eNOS gene and transfected them with wild-type (WT) eNOS or myristoylation-deficient (myr-) eNOS mutant cDNA. In myocytes expressing WT eNOS, the muscarinic cholinergic agonist carbachol completely abrogated the spontaneous beating rate and induced a 4-fold elevation of the cGMP level. By contrast, in the myr- eNOS myocytes, carbachol failed to exert its negative chronotropic effect and to increase cGMP levels. We then used a reversible permeabilization protocol to load intact neonatal rat myocytes with an oligopeptide corresponding to the caveolin-3 scaffolding domain. This peptide completely and specifically inhibited the carbachol-induced negative chronotropic effect and the accompanying cGMP elevation. Thus, our results suggest that acylated eNOS may couple muscarinic receptor activation to heart rate control and indicate a key role for eNOS/caveolin interactions in the cholinergic modulation of cardiac myocyte function.
一氧化氮合酶的内皮型异构体(eNOS)被双重酰化,因此定位于称为小窝的信号转导微区。在内皮细胞中,eNOS与小窝蛋白-1相互作用,后者抑制eNOS酶活性。在心肌细胞中,eNOS与肌肉特异性小窝蛋白-3异构体相关联,但这种相互作用是否影响一氧化氮的产生并调节心肌细胞功能尚不清楚。我们从eNOS基因靶向破坏的突变小鼠中分离出新生心肌细胞,并用野生型(WT)eNOS或肉豆蔻酰化缺陷型(myr-)eNOS突变体cDNA转染它们。在表达WT eNOS的心肌细胞中,毒蕈碱胆碱能激动剂卡巴胆碱完全消除了自发搏动率,并使cGMP水平升高了4倍。相比之下,在myr- eNOS心肌细胞中,卡巴胆碱未能发挥其负性变时作用,也未能提高cGMP水平。然后,我们使用一种可逆通透化方案,用对应于小窝蛋白-3支架结构域的寡肽加载完整的新生大鼠心肌细胞。该肽完全且特异性地抑制了卡巴胆碱诱导的负性变时作用以及伴随的cGMP升高。因此,我们的结果表明,酰化的eNOS可能将毒蕈碱受体激活与心率控制联系起来,并表明eNOS/小窝蛋白相互作用在心肌细胞功能的胆碱能调节中起关键作用。