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重组叶绿体偶联因子催化的腺苷5'-三磷酸合成与水解的pH依赖性

pH dependence of adenosine 5'-triphosphate synthesis and hydrolysis catalyzed by reconstituted chloroplast coupling factor.

作者信息

Takabe T, Hammes G G

出版信息

Biochemistry. 1981 Nov 24;20(24):6859-64. doi: 10.1021/bi00527a018.

Abstract

The purified ATP-synthesizing complex from chloroplasts has been reconstituted into phospholipid vesicles with bacteriorhodopsin by use of octyl glucoside. Phosphorylation rates up to 90 mmol of ATP (mg of protein)-1 min-1 have been achieved. The dependence of the steady-state kinetic parameters on external and internal pH for both synthesis and hydrolysis was determined. The Michaelis constants are independent of the magnitude of the pH gradient at external pH values of 6.6 and 8.0. The dependence of the maximum velocity for ATP synthesis on the external pH is bell shaped at a constant pH gradient with a maximum at about pH 6.7. The variation of the maximum velocity with external pH is not dependent on the magnitude of the pH gradient. At external pH values of 6.6 and 8.0, the maximum velocity for ATP synthesis varies with approximately the 2.3 power of the internal hydrogen ion concentration. The maximum velocity for ATP hydrolysis also is dependent on the external pH, with a maximum at about pH 8.4; however, most of the ATPase activity is not coupled to the proton flux. Both Mg2+ and Mn2+ are good cofactors for ATP synthesis and hydrolysis whereas Ca2+ is completely ineffective for synthesis and only about 10% as effective as Mg2+ and Mn2+ for hydrolysis. The results obtained suggest that ATP synthesis or hydrolysis may be coupled to proton pumping indirectly, as, for example, by conformational changes.

摘要

利用辛基葡糖苷,已将从叶绿体中纯化得到的ATP合成复合物与细菌视紫红质一起重构到磷脂囊泡中。已实现高达90 mmol ATP(mg蛋白质)-1 min-1的磷酸化速率。测定了稳态动力学参数对合成和水解过程中外部和内部pH的依赖性。在外部pH值为6.6和8.0时,米氏常数与pH梯度的大小无关。在恒定pH梯度下,ATP合成的最大速度对外部pH的依赖性呈钟形,在约pH 6.7处达到最大值。最大速度随外部pH的变化不依赖于pH梯度的大小。在外部pH值为6.6和8.0时,ATP合成的最大速度随内部氢离子浓度的约2.3次方而变化。ATP水解的最大速度也取决于外部pH,在约pH 8.4处达到最大值;然而,大多数ATP酶活性与质子通量不偶联。Mg2+和Mn2+都是ATP合成和水解的良好辅因子,而Ca2+对合成完全无效,对水解的有效性仅为Mg2+和Mn2+的约10%。所得结果表明,ATP合成或水解可能间接与质子泵浦偶联,例如通过构象变化。

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