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5',5'''-多磷酸二腺苷的质子磁共振波谱分析

Proton magnetic resonance spectroscopic analysis of diadenosine 5',5"'-polyphosphates.

作者信息

Mayo K H, Mvele O M, Puri R N

机构信息

Department of Chemistry, Temple University, Philadelphia, PA 19122.

出版信息

FEBS Lett. 1990 Jun 4;265(1-2):97-100. doi: 10.1016/0014-5793(90)80892-m.

Abstract

Certain diadenosine 5',5"'-polyphosphates are potent inhibitors of ADP stimulated platelet aggregation, acting possibly via competitive ADP-receptor binding. 1H NMR studies of a series of such compounds where the number of phosphate groups between adenosine groups was varied from 2 to 6 were performed to analyze possible preferred solution conformations and to define structure-activity relations. Relative to mononucleotides ADP and ATP, chemical shifts of adenosine proton resonances in diadenosine polyphosphate analogs are upfield shifted suggesting base stacking. This effect is greatest for AP2A and AP3A. Coupling constants of ribose ring proton resonances support the idea of an anti-base-ribose ring conformation, and 3JH5'-P values suggest a preferred gauche H-C-O-P structure. In all cases, NMR parameters for AP2A are near-limiting values for a static base stacked conformation. Increasing the number of phosphate groups between adenosine moieties tends to weaken this interaction.

摘要

某些5',5''-二腺苷多磷酸是ADP刺激的血小板聚集的有效抑制剂,可能通过竞争性ADP受体结合起作用。对一系列此类化合物进行了1H NMR研究,其中腺苷基团之间的磷酸基团数量从2变化到6,以分析可能的优选溶液构象并确定构效关系。相对于单核苷酸ADP和ATP,二腺苷多磷酸类似物中腺苷质子共振的化学位移发生了高场位移,表明存在碱基堆积。这种效应在AP2A和AP3A中最为明显。核糖环质子共振的耦合常数支持反式碱基-核糖环构象的观点,3JH5'-P值表明优选的gauche H-C-O-P结构。在所有情况下,AP2A的NMR参数接近静态碱基堆积构象的极限值。增加腺苷部分之间的磷酸基团数量往往会削弱这种相互作用。

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