Lee H C, Walseth T F, Bratt G T, Hayes R N, Clapper D L
Department of Physiology, University of Minnesota, Minneapolis 55455.
J Biol Chem. 1989 Jan 25;264(3):1608-15.
Incubation of NAD+ with extracts from sea urchin eggs resulted in production of a metabolite which could mobilize intracellular Ca2+ stores of the eggs. In this study we present structural evidence indicating that the metabolite is a cyclized ADP-ribose having an N-glycosyl linkage between the anomeric carbon of the terminal ribose unit and the N6-amino group of the adenine moiety. In view of this structure we propose cyclic ADP-ribose as the common name for the metabolite. The purification procedure for the metabolite consisted of deproteinizing the incubated egg extracts and sequentially chromatographing the extracts through three different high pressure liquid chromatography (HPLC) columns. The homogeneity of the purified metabolite was further verified by HPLC on a Partisil 5 SAX column. Using radioactive precursor NAD+ with label at various positions it was demonstrated that the metabolite was indeed derived from NAD+ and that the adenine ring as well as the adenylate alpha-phosphate were retained in the metabolite whereas the nicotinamide group was removed. This was confirmed by 1H NMR and two-dimensional COSY experiments, which also allowed the identification of all 12 protons on the two ribosyl units as well as the two protons on the adenine ring. From the chemical shifts of the two anomeric protons it was concluded that the C-1 carbons of both ribosyl units were still bonded to nitrogen. The positive and negative ion fast atom bombardment mass spectra showed (M + Na)+, (M - H + 2Na)+, (M - H)-, and (M - 2H + Na)- peaks at m/z 564, 586, 540, and 562, respectively. Exact mass measurements indicated a molecular weight of 540.0526 for (M - H)-. This together with the constraints imposed by the results from NMR, radioactive labeling, and total phosphate determination uniquely specified a molecular composition of C15H21N5O13P2. Analysis by 1H NMR and mass spectroscopy of the only major breakdown product of the metabolite after prolonged incubation at room temperature established that it was ADP-ribose, thus providing strong support for the cyclic structure.
将烟酰胺腺嘌呤二核苷酸(NAD⁺)与海胆卵提取物一起温育,产生了一种能动员卵内细胞内钙储存的代谢物。在本研究中,我们提供了结构证据,表明该代谢物是一种环化的ADP - 核糖,在末端核糖单元的异头碳与腺嘌呤部分的N⁶ - 氨基之间存在N - 糖苷键。鉴于此结构,我们提议将环化ADP - 核糖作为该代谢物的通用名称。该代谢物的纯化过程包括对温育后的卵提取物进行脱蛋白处理,并依次通过三根不同的高压液相色谱(HPLC)柱对提取物进行层析。通过在Partisil 5 SAX柱上进行HPLC进一步验证了纯化后代谢物的均一性。使用在不同位置带有标记的放射性前体NAD⁺,证明该代谢物确实源自NAD⁺,并且腺嘌呤环以及腺苷酸α - 磷酸保留在代谢物中,而烟酰胺基团被去除。这通过¹H NMR和二维COSY实验得到证实,这些实验还确定了两个核糖基单元上的所有十二个质子以及腺嘌呤环上的两个质子。根据两个异头质子的化学位移得出结论,两个核糖基单元的C - 1碳仍与氮相连。正离子和负离子快原子轰击质谱分别在m/z 564、586、540和562处显示出(M + Na)⁺、(M - H + 2Na)⁺、(M - H)⁻和(M - 2H + Na)⁻峰。精确质量测量表明(M - H)⁻的分子量为540.0526。这与NMR、放射性标记和总磷酸盐测定结果所施加的限制一起,唯一地确定了分子组成为C₁₅H₂₁N₅O₁₃P₂。通过¹H NMR和质谱对该代谢物在室温下长时间温育后的唯一主要分解产物进行分析,确定其为ADP - 核糖,从而为环状结构提供了有力支持。