Lee H C, Aarhus R, Gee K R, Kestner T
Department of Physiology, University of Minnesota, Minneapolis, Minnesota 55455, USA.
J Biol Chem. 1997 Feb 14;272(7):4172-8. doi: 10.1074/jbc.272.7.4172.
Nicotinic acid adenine dinucleotide phosphate (NAADP) is a metabolite of NADP with Ca2+ mobilizing activity. The Ca2+ release mechanism activated by NAADP as well as the Ca2+ stores that it acts on are different from those activated by either cyclic ADP-ribose or inositol 1,4,5-trisphosphate (IP3) (Lee, H. C., and Aarhus, R. (1995) J. Biol. Chem. 270, 2152-2157). In order to demonstrate unambiguously that NAADP can mobilize Ca2+ stores in live cells, a caged analog was synthesized by reacting NAADP with 1-(2-nitrophenyl)diazoethane. Anion exchange high pressure liquid chromatography (HPLC) was used to purify one particular caged form from the mixture of products. Phosphate analyses following specific enzymatic cleavage indicate that the caging group is on the 2'-phosphate. This is confirmed by 31P NMR spectroscopy, showing that the 2'-phosphate of the caged compound exhibits an altered chemical shift of -2.6 ppm as compared with 2.3 ppm determined for the 2'-phosphate of NAADP. Caged NAADP had no Ca2+ releasing activity at a concentration as high as 1 micro;M when tested on sea urchin egg microsomes. After photolysis, it released Ca2+, was effective in nanomolar range, and was indistinguishable from authentic NAADP. The regeneration of NAADP after photolysis was also confirmed by HPLC analyses. The analog is particularly susceptible to UV and can be efficiently photolyzed using a spectrofluorimeter. To demonstrate its utility in live cells, caged NAADP was microinjected into sea urchin eggs. Photolysis effectively regenerated NAADP and activated Ca2+ oscillations in the eggs. Removal of external Ca2+ did not prevent the Ca2+ oscillations but only delayed the second Ca2+ peak by about 45 s, indicating that the oscillations are due to release from internal stores and not caused by Ca2+ influx. A mechanism based on sensitization of the Ca2+ release by Ca2+ loading is proposed to account for the Ca2+ oscillation observed.
烟酰胺腺嘌呤二核苷酸磷酸(NAADP)是一种具有钙离子动员活性的NADP代谢产物。由NAADP激活的钙离子释放机制以及它作用的钙离子储存库与由环ADP - 核糖或肌醇1,4,5 - 三磷酸(IP3)激活的机制不同(Lee,H. C.,和Aarhus,R.(1995年)《生物化学杂志》270,2152 - 2157)。为了明确证明NAADP能在活细胞中动员钙离子储存库,通过使NAADP与1 - (2 - 硝基苯基)重氮乙烷反应合成了一种笼形类似物。使用阴离子交换高压液相色谱(HPLC)从产物混合物中纯化出一种特定的笼形形式。特定酶切后的磷酸盐分析表明笼形基团位于2'-磷酸上。31P NMR光谱证实了这一点,表明与NAADP的2'-磷酸确定的化学位移2.3 ppm相比,笼形化合物的2'-磷酸表现出 - 2.6 ppm的化学位移变化。当在海胆卵微粒体上测试时,高达1微摩尔浓度的笼形NAADP没有钙离子释放活性。光解后,它释放钙离子,在纳摩尔范围内有效,并且与天然NAADP没有区别。光解后NAADP的再生也通过HPLC分析得到证实。该类似物对紫外线特别敏感,并且可以使用荧光分光光度计有效地光解。为了证明其在活细胞中的效用,将笼形NAADP显微注射到海胆卵中。光解有效地再生了NAADP并激活了卵中的钙离子振荡。去除外部钙离子并没有阻止钙离子振荡,只是将第二个钙离子峰延迟了约45秒,表明振荡是由于内部储存库的释放而不是由钙离子内流引起的。提出了一种基于钙离子负载对钙离子释放的敏化作用的机制来解释观察到的钙离子振荡。