Sethi J K, Empson R M, Galione A
University Department of Pharmacology, Oxford University, U.K.
Biochem J. 1996 Oct 15;319 ( Pt 2)(Pt 2):613-7. doi: 10.1042/bj3190613.
Cyclic ADP ribose (cADPR) is a potent Ca(2+)-releasing agent, and putative second messenger, the endogenous levels of which are tightly regulated by synthetic (ADP-ribosyl cyclases) and degradative (cADPR hydrolase) enzymes. These enzymes have been characterized in a number of mammalian and invertebrate tissues and their activities are often found on a single polypeptide. beta-NAD+, cGMP and nitric oxide (NO) have been reported to mobilize Ca2+ in the sea urchin egg via the cADPR-mediated pathway. We now report that in sea urchin egg homogenates, nicotinamide inhibits the Ca(2+)-mobilizing action of beta-NAD+, cGMP and NO, but has no effect on cADPR-induced Ca2+ release. Moreover, nicotinamide inhibits cGMP-induced regenerative Ca2+ waves in the intact sea urchin egg. By successfully separating the cADPR-metabolizing machinery from that which releases Ca2+, we have shown that nicotinamide inhibits cADPR-mediated Ca2+ signalling at the level of cADPR generation. Importantly, nicotinamide had no effect upon the hydrolysis of cADPR, and its selective action on cyclase activity was supported by its inhibition of purified Aplysia ADP-ribosyl cyclase, which does not exhibit detectable hydrolytic activity. The action of nicotinamide in blocking Ca2+ release by beta-NAD+, cGMP and NO strongly suggests that these agents act as modulators of cADPR synthesis rather than to sensitize calcium release channels to cADPR.
环磷酸腺苷核糖(cADPR)是一种有效的钙离子释放剂,也是一种假定的第二信使,其内源水平受到合成酶(ADP核糖基环化酶)和降解酶(cADPR水解酶)的严格调控。这些酶已在多种哺乳动物和无脊椎动物组织中得到表征,其活性通常存在于单一多肽上。据报道,β-NAD⁺、cGMP和一氧化氮(NO)可通过cADPR介导的途径在海胆卵中动员钙离子。我们现在报告,在海胆卵匀浆中,烟酰胺抑制β-NAD⁺、cGMP和NO的钙离子动员作用,但对cADPR诱导的钙离子释放没有影响。此外,烟酰胺抑制完整海胆卵中cGMP诱导的再生性钙离子波。通过成功地将cADPR代谢机制与钙离子释放机制分离,我们表明烟酰胺在cADPR生成水平上抑制cADPR介导的钙离子信号传导。重要的是,烟酰胺对cADPR的水解没有影响,其对环化酶活性的选择性作用得到了其对纯化的海兔ADP核糖基环化酶抑制作用的支持,该酶不表现出可检测的水解活性。烟酰胺阻断β-NAD⁺、cGMP和NO引起的钙离子释放的作用强烈表明,这些物质作为cADPR合成的调节剂,而不是使钙释放通道对cADPR敏感。