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Interactions of vanadium(V)–citrate complexes with the sarcoplasmic reticulum calcium pump

机译:柠檬酸钒(V)与肌浆网钙泵的相互作用

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摘要

Among the biotargets interacting with vanadium is the calcium pump from the sarcoplasmic reticulum (SR). To this end, initial research efforts were launched with two vanadium(V)–citrate complexes, namely (NH4)6[V2O4(C6H4O7)2] Æ 6H2O and(NH4)6[V2O2(O2)2(C6H4O7)2] Æ 4H2O, potentially capable of interacting with the SR calcium pump by combining kinetic studies with 51V NMR spectroscopy. Upon dissolution in the reaction medium (concentration range: 4–0.5 mM), both vanadium(V):citrate (VC)and peroxovanadium(V):citrate (PVC) complexes are partially converted into vanadate oligomers. A 1 mM solution of the PVC complex, containing 184 lM of the PVC complex, 94 lM oxoperoxovanadium(V) (PV) species, 222 lM monomeric (V1), 43 lM dimeric(V2) and 53 lM tetrameric (V4) species, inhibits Ca2+ accumulation by 75 %, whereas a solution of the VC complex of the same vanadium concentration, containing 98 lM of the VC complex, 263 lM monomeric (V1), 64 lM dimeric (V2) and 92 lM tetrameric (V4)species inhibits the calcium pump activity by 33 %. In contrast, a 1 mM metavanadate solution, containing 460 lM monomeric (V1),90.2 lM dimeric (V2) and 80 lM tetrameric (V4) species, has no effect on Ca2+ accumulation. The NMR signals from the VC complex ( 548.0 ppm), PVC complex ( 551.5 ppm) and PV ( 611.1 ppm) are broadened upon SR vesicle addition (2.5 mg/ml total protein). The relative order for the half width line broadening of the NMR signals, which reflect the interaction with the protein, was found to be V4 > PVC > VC > PV > V2 = V1 = 1, with no effect observed for the V1 and V2 signals. Putting it all together the effects of two vanadium(V)–citrate complexes on the modulation of calcium accumulation and ATP hydrolysis by the SR calcium pump reflected theobserved variable reactivity into the nature of key species forming upon dissolution of the title complexes in the reaction media.
机译:与钒相互作用的生物靶标中有来自肌质网(SR)的钙泵。为此,开始了两种柠檬酸钒(V)配合物的初步研究工作,即(NH4)6 [V2O4(C6H4O7)2]Æ6H2O和(NH4)6 [V2O2(O2)2(C6H4O7)2]Æ 4H2O,通过将动力学研究与51V NMR光谱相结合,有可能与SR钙泵相互作用。在溶解于反应介质(浓度范围:4-0.5 mM)中时,钒(V):柠檬酸盐(VC)和过氧钒(V):柠檬酸盐(PVC)复合物都部分转化为钒酸盐低聚物。 1 mM的PVC复合物溶液,其中包含184 lM PVC复合物,94 lM氧过氧钒(V)(PV)物种,222 lM单体(V1),43 lM二聚体(V2)和53 lM四聚体(V4)物种,抑制Ca2 +积累的75%,而相同的钒浓度的VC复合物的溶液抑制了98 lM VC复合物,263 lM单体(V1),64 lM二聚体(V2)和92 lM四聚体(V4)物种。钙泵的活性降低了33%。相反,含有460 lM单体(V1),90.2 lM二聚体(V2)和80 lM四聚体(V4)的1 mM偏钒酸盐溶液对Ca2 +的积累没有影响。加入SR囊泡(2.5 mg / ml总蛋白质)后,来自VC复合物(548.0 ppm),PVC复合物(551.5 ppm)和PV(611.1 ppm)的NMR信号变宽。发现NMR信号的半角线展宽的相对顺序反映了与蛋白质的相互作用,依次为V4> PVC> VC> PV> V2 = V1 = 1,但对V1和V2信号没有影响。综上所述,两种柠檬酸钒(V)配合物对SR钙泵调节钙积累和ATP水解的影响反映出观察到的可变反应性是标题化合物在反应介质中溶解后形成的关键物种的本质。 。

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