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NAADP+对Ca2+释放的激活与失活作用。

Activation and inactivation of Ca2+ release by NAADP+.

作者信息

Aarhus R, Dickey D M, Graeff R M, Gee K R, Walseth T F, Lee H C

机构信息

Department of Physiology, University of Minnesota, Minneapolis, Minnesota 55455, USA.

出版信息

J Biol Chem. 1996 Apr 12;271(15):8513-6. doi: 10.1074/jbc.271.15.8513.

Abstract

Nicotinic acid adenine dinucleotide phosphate (NAADP+) is a recently identified metabolite of NADP+ that is as potent as inositol trisphosphate (IP3) and cyclic ADP-ribose (cADPR) in mobilizing intracellular Ca2+ in sea urchin eggs and microsomes (Clapper, D. L., Walseth, T. F., Dargie, P. J., and Lee, H. C. (1987) J. Biol. Chem. 262, 9561-9568; Lee, H. C., and Aarhus, R. (1995) J. Biol. Chem. 270, 2152-2157). The mechanism of Ca2+ release activated by NAADP+ and the Ca2+ stores it acts on are different from those of IP3 and cADPR. In this study we show that photolyzing caged NAADP+ in intact sea urchin eggs elicits long term Ca2+ oscillations. On the other hand, uncaging threshold amounts of NAADP+ produces desensitization. In microsomes, this self-inactivation mechanism exhibits concentration and time dependence. Binding studies show that the NAADP+ receptor is distinct from that of cADPR, and at subthreshold concentrations, NAADP+ can fully inactivate subsequent binding to the receptor in a time-dependent manner. Thus, the NAADP+-sensitive Ca2+ release process has novel regulatory characteristics, which are distinguishable from Ca2+ release mediated by either IP3 or cADPR. This battery of release mechanisms may provide the necessary versatility for cells to respond to diverse signals that lead to Ca2+ mobilization.

摘要

烟酰胺腺嘌呤二核苷酸磷酸(NAADP+)是最近发现的NADP+的一种代谢产物,在海胆卵和微粒体中,它在动员细胞内Ca2+方面与肌醇三磷酸(IP3)和环ADP核糖(cADPR)一样有效(克拉珀,D.L.,瓦尔塞思,T.F.,达吉,P.J.,和李,H.C.(1987年)《生物化学杂志》262卷,9561 - 9568页;李,H.C.,和奥尔胡斯,R.(1995年)《生物化学杂志》270卷,2152 - 2157页)。由NAADP+激活的Ca2+释放机制及其作用的Ca2+储存库与IP3和cADPR的不同。在本研究中,我们表明在完整的海胆卵中光解笼装NAADP+会引发长期的Ca2+振荡。另一方面,释放阈值量的NAADP+会产生脱敏作用。在微粒体中,这种自我失活机制表现出浓度和时间依赖性。结合研究表明,NAADP+受体与cADPR的不同,在亚阈值浓度下,NAADP+能以时间依赖性方式完全使后续与受体的结合失活。因此,对NAADP+敏感的Ca2+释放过程具有新的调节特性,这与由IP3或cADPR介导的Ca2+释放不同。这一系列释放机制可能为细胞响应导致Ca2+动员的各种信号提供必要的多功能性。

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