Tran-Dinh S, Roux M
Eur J Biochem. 1977 Jun 1;76(1):245-9. doi: 10.1111/j.1432-1033.1977.tb11589.x.
The interaction of Mg2+ ions with adenyl-5'-yl imidodiphosphate, AMP-P(NH)P, has been studied at basic and acidic pH values by phosphorus magnetic resonance spectroscopy in aqueous solution. The results suggest that Mg2+ binds simultaneously to one (or both) of the two free oxygen atoms of the beta-phosphate moiety and to the nitrogen atom of the phosphate chain (P alpha-O-P beta-N-P gamma). The interaction arises from 1: 1 complexing of Mg2+ to AMP-P(NH)P. The mode of the Mg2+ binding on the phosphate chain remains the same at both basic and acidic pH values. As in the case of ATP and ADP, the association of Mg2+ reduces the pK by about 1.5 units. On the other hand phosphorus titration curves showed that when the phosphate chain does not possess the regular periodicity (O-P alpha-O-P beta-X-P gamma-O,X not equal to O) as in the case of ATP, protonation of the terminal phosphate group may induce a 31P chemical shift variation less important for this group than for the preceding one.
通过水溶液中的磷磁共振光谱,研究了Mg2+离子与腺苷-5'-亚氨基二磷酸(AMP-P(NH)P)在碱性和酸性pH值下的相互作用。结果表明,Mg2+同时与β-磷酸基团的两个游离氧原子中的一个(或两个)以及磷酸链的氮原子(Pα-O-Pβ-N-Pγ)结合。这种相互作用源于Mg2+与AMP-P(NH)P的1:1络合。在碱性和酸性pH值下,Mg2+在磷酸链上的结合模式保持不变。与ATP和ADP的情况一样,Mg2+的缔合使pK降低约1.5个单位。另一方面,磷滴定曲线表明,当磷酸链不像ATP那样具有规则的周期性(O-Pα-O-Pβ-X-Pγ-O,X不等于O)时,末端磷酸基团的质子化可能导致31P化学位移变化,该变化对该基团的影响比对前一个基团的影响小。