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利用31P核磁共振技术估算大肠杆菌ATP合酶的H+与三磷酸腺苷化学计量比

Estimation of H+ to adenosine 5'-triphosphate stoichiometry of Escherichia coli ATP synthase using 31P NMR.

作者信息

Vink R, Bendall M R, Simpson S J, Rogers P J

出版信息

Biochemistry. 1984 Jul 31;23(16):3667-75. doi: 10.1021/bi00311a015.

Abstract

High-field 31P NMR techniques have been used to measure transmembrane delta pH in wild-type, unc A, and hem A mutants of Escherichia coli. delta psi was measured by distribution methods with radioactive tetraphenylphosphonium bromide and 86Rb+ ions as the probes, while intracellular ATP, ADP, and inorganic phosphate concentrations were determined from the 31P NMR spectra. delta G'p and the stoichiometry for ATP synthesis [delta G'p/(F delta p)] were then calculated. The stoichiometry of the ATP synthase was found to vary as a function of the cellular metabolic state. In nongrowing, wild-type cells delta p was 192 +/- 16 mV with succinate as the substrate and saturating oxygen tension. With limiting oxygen (congruent to microM oxygen), delta p was 125 +/- 14 mV. Nucleoside triphosphate synthesis was observed in both cases. The H+/ATP stoichiometry varied from 2.15 +/- 0.35 under aerobic conditions to 3.6 +/- 0.8 at low oxygen tension. delta p for unc A cells was 140 +/- 14 mV with glucose as the substrate (greater than 2.5 microM oxygen) and for hem A mutants was 115 +/- 10 mV. The bulk phase potentials in oxygen-limited, wild-type cells and in respiratory deficient (hem A) cells are comparable, but in the former the ATPase is poised for synthesis while in the latter it generates delta p. The data support a role for localized interactions between the redox and the ATPase sites.

摘要

高场31P核磁共振技术已被用于测量大肠杆菌野生型、unc A和hem A突变体中的跨膜ΔpH。通过使用放射性溴化四苯基鏻和86Rb+离子作为探针的分布方法测量Δψ,同时从31P核磁共振光谱中确定细胞内ATP、ADP和无机磷酸盐的浓度。然后计算ΔG'p和ATP合成的化学计量比[ΔG'p/(FΔp)]。发现ATP合酶的化学计量比随细胞代谢状态而变化。在非生长的野生型细胞中,以琥珀酸为底物且氧张力饱和时,Δp为192±16 mV。在氧限制(约微摩尔氧)条件下,Δp为125±14 mV。在这两种情况下均观察到核苷三磷酸的合成。H+/ATP化学计量比在有氧条件下为2.15±0.35,在低氧张力下为3.6±0.8。以葡萄糖为底物(大于2.5微摩尔氧)时,unc A细胞的Δp为140±14 mV,hem A突变体的Δp为115±10 mV。在氧限制的野生型细胞和呼吸缺陷(hem A)细胞中,体相电位相当,但在前者中ATP酶倾向于合成,而在后者中它产生Δp。这些数据支持氧化还原位点和ATP酶位点之间存在局部相互作用的作用。

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