Yu X, Hao L, Inesi G
Department of Biological Chemistry, University of Maryland School of Medicine, Baltimore 21201.
J Biol Chem. 1994 Jun 17;269(24):16656-61.
Proteoliposomal vesicles reconstituted with sarcoplasmic reticulum ATPase and exogenous lipids sustain ATP-dependent Ca2+ uptake and H+ ejection, as well as net charge displacement by Ca2+. We have studied the effect of lumenal (inner) and medium (extravesicular) pH variations on the countertransport ratios of H+ and Ca2+. We find that the Ca2+/H+ molar ratio is approximately 1 when the lumenal and medium pH is near neutrality, but changes with a specific pattern when the medium pH is varied in the presence of a constant lumenal pH and when the lumenal pH is varied in the presence of a constant medium pH. Empirical analysis of the experimental data shows that the apparent pK of the residue(s) releasing H+ into the medium is approximately 6.1, whereas the apparent pK of the residue(s) binding lumenal H+ is approximately 7.7. Assuming that the same acidic residues are involved in H+ and Ca2+ countertransport, our findings suggest a lower affinity for H+ in their outward orientation (prevalent in the ground state of the enzyme) and a higher affinity for H+ in lumenal orientation (prevalent in the phosphorylated state of the enzyme). Cyclic pK changes, coupled to ATP utilization, promote cation exchange, Ca2+ uptake, and H+ ejection by the vesicles. The stoichiometry of countertransport and net charge displacement is matched by a corresponding electrogenic behavior. A calculation of voltage development related to initial rates of charge transfer (dV/dt = (dQ/dt)/Cm) is given as a corrective replacement of a previous steady state calculation.
用肌浆网ATP酶和外源性脂质重构的蛋白脂质体囊泡维持ATP依赖的Ca2+摄取和H+排出,以及Ca2+引起的净电荷位移。我们研究了内腔(内部)和介质(囊泡外)pH变化对H+和Ca2+反向转运比率的影响。我们发现,当内腔和介质pH接近中性时,Ca2+/H+摩尔比约为1,但当在恒定内腔pH存在下改变介质pH以及在恒定介质pH存在下改变内腔pH时,其会以特定模式变化。对实验数据的实证分析表明,向介质中释放H+的残基的表观pK约为6.1,而结合内腔H+的残基的表观pK约为7.7。假设相同的酸性残基参与H+和Ca2+的反向转运,我们的研究结果表明,它们向外取向(在酶的基态中普遍存在)时对H+的亲和力较低,而在内腔取向(在酶的磷酸化状态中普遍存在)时对H+的亲和力较高。与ATP利用相关的循环pK变化促进囊泡的阳离子交换、Ca2+摄取和H+排出。反向转运和净电荷位移的化学计量与相应的电致行为相匹配。给出了与电荷转移初始速率相关的电压发展计算(dV/dt = (dQ/dt)/Cm),作为对先前稳态计算的校正替代。