Mándi Miklós, Tóth Balázs, Timár György, Bak Judit
Department of Medical Biochemistry, Semmelweis University, Puskin Street 9, P.O. Box 262, Budapest, H-1444, Hungary.
Biochem J. 2006 Apr 15;395(2):233-8. doi: 10.1042/BJ20051002.
NAADP (nicotinic acid-adenine dinucleotide phosphate) is fast emerging as a new intracellular Ca2+-mobilizing messenger. NAADP induces Ca2+ release by a mechanism that is distinct from IP3 (inositol 1,4,5-trisphosphate)- and cADPR (cADP-ribose)-induced Ca2+ release. In the present study, we demonstrated that micromolar concentrations of NAADP trigger Ca2+ release from rat hepatocyte microsomes. Cross-desensitization to IP3 and cADPR by NAADP did not occur in liver microsomes. We report that non-activating concentrations of NAADP can fully inactivate the NAADP-sensitive Ca2+-release mechanism in hepatocyte microsomes. The ability of thapsigargin to block the NAADP-sensitive Ca2+ release is not observed in sea-urchin eggs or in intact mammalian cells. In contrast with the Ca2+ release induced by IP3 and cADPR, the Ca2+ release induced by NAADP was completely independent of the free extravesicular Ca2+ concentration and pH (in the range 6.4-7.8). The NAADP-elicited Ca2+ release cannot be blocked by the inhibitors of the IP3 receptors and the ryanodine receptor. On the other hand, verapamil and diltiazem do inhibit the NAADP- (but not IP3- or cADPR-) induced Ca2+ release.
烟酰胺腺嘌呤二核苷酸磷酸(NAADP)正迅速成为一种新的细胞内钙动员信使。NAADP通过一种不同于肌醇1,4,5-三磷酸(IP3)和环ADP核糖(cADPR)诱导的钙释放机制来诱导钙释放。在本研究中,我们证明微摩尔浓度的NAADP能触发大鼠肝细胞微粒体释放钙。在肝微粒体中,NAADP不会引起对IP3和cADPR的交叉脱敏。我们报告,非激活浓度的NAADP能完全使肝细胞微粒体中对NAADP敏感的钙释放机制失活。在海胆卵或完整的哺乳动物细胞中未观察到毒胡萝卜素阻断对NAADP敏感的钙释放的能力。与IP3和cADPR诱导的钙释放相反,NAADP诱导的钙释放完全独立于细胞外游离钙浓度和pH值(在6.4 - 7.8范围内)。IP3受体和兰尼碱受体的抑制剂不能阻断NAADP引发的钙释放。另一方面,维拉帕米和地尔硫䓬确实能抑制NAADP(但不能抑制IP3或cADPR)诱导的钙释放。