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Estimating the rotation rate in the vacuolar proton-ATPase in native yeast vacuolar membranes.

机译:估计天然酵母液泡膜中液泡质子-aTp酶的旋转速率。

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摘要

The rate of rotation of the rotor in the yeast vacuolar proton-ATPase (V-ATPase), relative to the stator or steady parts of the enzyme, is estimated in native vacuolar membrane vesicles from Saccharomyces cerevisiae under standardised conditions. Membrane vesicles are formed spontaneously after exposing purified yeast vacuoles to osmotic shock. The fraction of total ATPase activity originating from the V-ATPase is determined by using the potent and specific inhibitor of the enzyme, concanamycin A. Inorganic phosphate liberated from ATP in the vacuolar membrane vesicle system, during ten min of ATPase activity at 20 °C, is assayed spectrophotometrically for different concanamycin A concentrations. A fit of the quadratic binding equation, assuming a single concanamycin A binding site on a monomeric V-ATPase (our data are incompatible with models assuming multiple binding sites), to the inhibitor titration curve determines the concentration of the enzyme. Combining this with the known ATP/rotation stoichiometry of the V-ATPase and the assayed concentration of inorganic phosphate liberated by the V-ATPase, leads to an average rate of ~10 Hz for full 360° rotation (and a range of 6–32 Hz, considering the ± standard deviation of the enzyme concentration), which, from the time-dependence of the activity, extrapolates to ~14 Hz (8–48 Hz) at the beginning of the reaction. These are lower-limit estimates. To our knowledge, this is the first report of the rotation rate in a V-ATPase that is not subjected to genetic or chemical modification and is not fixed to a solid support; instead it is functioning in its native membrane environment.
机译:相对于该酶的定子或稳定部分,酵母液泡质子-ATPase(V-ATPase)中转子的旋转速率是在标准条件下,从酿酒酵母的天然液泡膜囊泡中估计的。将纯化的酵母液泡暴露于渗透性休克后,自然会形成膜囊泡。通过使用该酶的强力和特异性抑制剂伴刀豆球蛋白A确定源自V-ATPase的总ATPase活性分数。在20°C的ATPase活性十分钟内,从液泡膜囊泡系统中的ATP释放出的无机磷酸盐分光光度法测定不同的伴刀豆球蛋白A浓度。假设单体V-ATPase上有单个伴刀豆球蛋白A结合位点(我们的数据与假设有多个结合位点的模型不兼容),二次结合方程与抑制剂滴定曲线的拟合确定了酶的浓度。将其与已知的V-ATPase的ATP /旋转化学计量比和经检测的V-ATPase释放出的无机磷酸盐的浓度相结合,可导致360°旋转的平均速率约为10 Hz(范围为6–32 Hz,考虑到酶浓度的±标准偏差),从反应的时间依赖性出发,在反应开始时外推至〜14 Hz(8–48 Hz)。这些是下限估计。据我们所知,这是关于V-ATPase旋转速率的第一份报告,该旋转速率未经过遗传或化学修饰,也未固定在固体支持物上。相反,它在其天然膜环境中起作用。

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