Joshi N B, Shamoo A E
Biophys J. 1987 Feb;51(2):185-91. doi: 10.1016/S0006-3495(87)83324-6.
The binding of Eu3+ with Ca2+-stimulated, Mg2+-dependent adenosine triphosphatase ([Ca2+ + Mg2+]-ATPase) of cardiac sarcoplasmic reticulum (SR) has been investigated using direct laser excited Eu3+ luminescence. Eu3+ is found to inhibit both Ca2+-dependent ATPase activity and Ca2+-uptake in a parallel manner. This is attributed to the binding of Eu3+ to the high affinity Ca2+-binding sites. The Ki for Ca2+-dependent ATPase is approximately 50 nM. The 7F0----5D0 excitation spectrum of Eu3+ in cardiac SR shows a peak at 579.3 nm, as compared to 578.8 nm in potassium-morpholino propane sulfonic acid (K-MOPS) pH 6.8. Upon binding with cardiac SR, Eu3+ shows an increase in fluorescence intensity as well as in lifetime values. The fluorescence decay of bound Eu3+ exhibits a double-exponential curve. The apparent number of water molecules in the first coordination sphere of Eu3+ in SR is 2.8 for the short component and 1.0 for the long component. In the presence of ATP, a further increase in fluorescence lifetimes is observed, and the number of water molecules in the first coordination sphere of Eu3+ is reduced further to 1.3 and 0.5. The double exponential nature of the decay curve and the different number of water molecules coordinated to Eu3+ for both decay components suggest that Eu3+ binds to two sites and that these are heterogeneous. The reduction in the number of H2O ligands in the presence of ATP shows a change in the molecular environment of the Eu3+-binding sites upon phosphoenzyme formation, with a movement of Eu3+ to an occluded site on the enzyme.
利用直接激光激发铕离子(Eu3+)发光,研究了Eu3+与心肌肌浆网(SR)中钙离子(Ca2+)刺激、镁离子(Mg2+)依赖的三磷酸腺苷酶([Ca2+ + Mg2+]-ATPase)的结合情况。发现Eu3+以平行方式抑制Ca2+依赖的ATP酶活性和Ca2+摄取。这归因于Eu3+与高亲和力Ca2+结合位点的结合。Ca2+依赖的ATP酶的抑制常数(Ki)约为50 nM。与pH 6.8的钾-吗啉丙烷磺酸(K-MOPS)中578.8 nm相比,心肌SR中Eu3+的7F0----5D0激发光谱在579.3 nm处有一个峰值。与心肌SR结合后,Eu3+的荧光强度和寿命值均增加。结合的Eu3+的荧光衰减呈现双指数曲线。SR中Eu3+第一配位球中短成分的表观水分子数为2.8,长成分为1.0。在ATP存在下,观察到荧光寿命进一步增加,Eu3+第一配位球中的水分子数进一步减少至1.3和0.5。衰减曲线的双指数性质以及两个衰减成分中与Eu3+配位的水分子数不同表明,Eu3+与两个位点结合,且这些位点是异质的。ATP存在下H2O配体数量的减少表明,磷酸化酶形成时Eu3+结合位点的分子环境发生了变化,Eu3+向酶上一个封闭位点移动。