Lee H C, Aarhus R, Graeff R, Gurnack M E, Walseth T F
Department of Physiology, University of Minnesota, Minneapolis 55455.
Nature. 1994 Jul 28;370(6487):307-9. doi: 10.1038/370307a0.
Cyclic ADP-ribose (cADPR) is a newly identified nucleotide which can release calcium from a variety of cells, suggesting it is a messenger for mobilizing internal Ca2+ stores. Its cyclic structure has now been confirmed by X-ray crystallography. Available results are consistent with it being a modulator of Ca(2+)-induced Ca2+ release. Here we report that sea urchin egg microsomes purified by Percoll gradients lose sensitivity to cADPR, but the response can be restored by a soluble protein in the supernatant. Purification and characterization of the protein indicate that it is calmodulin. It appears to be sensitizing the Ca2+ release mechanism because caffeine and strontium, agonists of Ca(2+)-induced Ca2+ release, can also mimic calmodulin in conferring cADPR-sensitivity. Although evidence indicates that cADPR may be an activator of the ryanodine receptor, present results point to the importance of accessory proteins such as calmodulin in modulating its activity.
环磷酸腺苷核糖(cADPR)是一种新发现的核苷酸,它能从多种细胞中释放钙,这表明它是动员细胞内钙库的信使。其环状结构现已通过X射线晶体学得到证实。现有结果表明它是钙诱导钙释放的调节剂。我们在此报告,通过Percoll梯度纯化的海胆卵微粒体对cADPR失去敏感性,但上清液中的一种可溶性蛋白可恢复其反应。该蛋白的纯化和特性表明它是钙调蛋白。它似乎是在使钙释放机制敏感化,因为咖啡因和锶,这两种钙诱导钙释放的激动剂,也能模拟钙调蛋白赋予cADPR敏感性。虽然有证据表明cADPR可能是兰尼碱受体的激活剂,但目前的结果表明诸如钙调蛋白等辅助蛋白在调节其活性方面的重要性。