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艾氏腹水癌细胞的31P核磁共振研究。

31P nuclear magnetic resonance studies of Ehrlich ascites tumor cells.

作者信息

Navon G, Ogawa S, Shulman R G, Yamane T

出版信息

Proc Natl Acad Sci U S A. 1977 Jan;74(1):87-91. doi: 10.1073/pnas.74.1.87.

Abstract

High-resolution 31P nuclear magnetic resonance spectra at 145.7 MHz are reported for intact Ehrlich ascites tumor cells and their perchloric acid extracts. In the extracts it was possible to assign resonances to fructose 1,6-bisphosphates, dihydroxyacetone phosphate, ATP, ADP, AMP, Pi, NAD+, phosphorylcholine, glycero-3-phosphorylcholine, glycero-3-phosphorylethanolamine, and glyceraldehyde 3-phosphate from their chemical shifts, pH behavior, and spin couplings. All but glyceraldehyde 3-phosphate were observed and assigned in the intact cells. It was possible to show that the hydrolysis of fructose 1,6-bisphosphate to dihydroxyacetone phosphate and glyceraldehyde 3-phosphate is in equilibrium, that the dihydroxyacetone phosphate leads to glyceraldehyde 3-phosphate reaction is not, and that in the intact cell without added oxygen or glucose the reaction 2ADP in equilibrium ATP + AMP is in equilibrium. From the known pH dependence of the Pi resonance it was possible to show that during aerobic or anerobic glycolysis the difference between intracellular and extracellular pH values was less than 0.2 pH units. Upon oxygenation the ATP concentration increased while the ADP concentration fell. Introducing deoxyglucose depleted the ATP and resulted in an AMP signal and one from deoxyglucose 6-phosphate, which is transported and phosphorylated but not catabolized.

摘要

报道了完整的艾氏腹水瘤细胞及其高氯酸提取物在145.7兆赫下的高分辨率31P核磁共振谱。在提取物中,根据果糖1,6 -二磷酸、磷酸二羟丙酮、ATP、ADP、AMP、Pi、NAD +、磷酸胆碱、甘油 - 3 -磷酸胆碱、甘油 - 3 -磷酸乙醇胺和3 -磷酸甘油醛的化学位移、pH行为和自旋耦合,能够确定其共振峰。除了3 -磷酸甘油醛外,其他物质在完整细胞中均被观察到并确定了共振峰。可以表明,果糖1,6 -二磷酸水解为磷酸二羟丙酮和3 -磷酸甘油醛处于平衡状态,磷酸二羟丙酮生成3 -磷酸甘油醛的反应不平衡,并且在未添加氧气或葡萄糖的完整细胞中,反应2ADP⇌ATP + AMP处于平衡状态。根据已知的Pi共振峰对pH的依赖性,可以表明在有氧或无氧糖酵解过程中,细胞内和细胞外pH值的差异小于0.2个pH单位。充氧后,ATP浓度增加而ADP浓度下降。引入脱氧葡萄糖会消耗ATP,并产生一个AMP信号和一个来自6 -磷酸脱氧葡萄糖的信号,6 -磷酸脱氧葡萄糖被转运并磷酸化但不被分解代谢。

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