Dousa T P, Chini E N, Beers K W
Department of Physiology and Biophysics, Mayo Clinic and Foundation, Rochester, Minnesota 55905, USA.
Am J Physiol. 1996 Oct;271(4 Pt 1):C1007-24. doi: 10.1152/ajpcell.1996.271.4.C1007.
Release of Ca2+ from intracellular stores is a widespread mechanism in regulation of cell function. Two hitherto unknown adenine diphosphonucleotides were recently identified, which trigger Ca2+ release from intracellular stores via channels that are distinct from the well-known receptor/channel controlled by inositol 1,4,5,-trisphosphate (IP3): cyclic ADP-ribose (cADPR) and nicotinic acid adenine dinucleotide phosphate (NAADP). Here we review synthesis of cADPR from beta-NAD, its hydrolysis to adenosine diphosphoribose (noncyclic) by cADPR glycohydrolase, as well as our knowledge about the metabolism of NAADP. The Ca2+ release triggered by cADPR, NAADP, or IP3 can be distinguished by the action of inhibitors and by desensitization studies. Evidence now emerges that cADPR synthesis from beta-NAD can be stimulated, at least in some cell types by all-trans-retinoic acid as a first messenger. We then review the properties of cADPR and NAADP as potential second messengers in the intracrine regulation of cell functions. Although their exact role in signaling sequences is not yet known, cADPR and NAADP are likely to play important intracellular regulatory functions, as extensively documented for the process of egg fertilization.
细胞内钙库释放钙离子是调节细胞功能的一种广泛机制。最近发现了两种迄今未知的二磷酸腺苷,它们通过与由肌醇1,4,5-三磷酸(IP3)控制的著名受体/通道不同的通道触发细胞内钙库释放钙离子:环ADP-核糖(cADPR)和烟酰胺腺嘌呤二核苷酸磷酸(NAADP)。在此,我们综述了由β-NAD合成cADPR、cADPR糖水解酶将其水解为二磷酸腺苷核糖(非环状),以及我们对NAADP代谢的了解。由cADPR、NAADP或IP3触发的钙离子释放可通过抑制剂的作用和脱敏研究来区分。现在有证据表明,至少在某些细胞类型中,全反式视黄酸作为第一信使可以刺激由β-NAD合成cADPR。然后,我们综述了cADPR和NAADP作为细胞功能内分泌调节中潜在第二信使的特性。尽管它们在信号序列中的确切作用尚不清楚,但cADPR和NAADP可能发挥重要的细胞内调节功能,这在卵子受精过程中有广泛记载。