Suppr超能文献

可溶性叶绿体偶联因子1催化酶结合ATP的合成。

The synthesis of enzyme-bound ATP by soluble chloroplast coupling factor 1.

作者信息

Feldman R I, Sigman D S

出版信息

J Biol Chem. 1982 Feb 25;257(4):1676-83.

PMID:6460028
Abstract

Purified CF1 (chloroplast coupling factor 1) synthesizes enzyme-bound ATP (CF1 less than ATP) from medium Pi. The reaction does not depend on medium ADP, indicating that the ADP substrate is tightly bound to CF1 (CF1 less than ADP). At saturating [Pi] and at the pH optimum of 6.0, a yield of 0.25 mol of ATP/mol of CF1 was obtained. The addition of hexokinase and glucose does not reduce the yield of CF1 less than ATP, showing that the ATP is never released from the enzyme. The addition of medium ATP, but not ADP, promotes the hydrolysis of CF1 less than ATP. The formation of CF1 less than ATP was analyzed in terms of a two-step reaction sequence in which Pi first binds to CF1 less than ADP which is then converted to CF1 less than ATP. Acid pH values were shown to increase the yield of CF1 less than ATP most significantly by promoting Pi binding. The equilibrium constant for the conversion of CF1 less than ADP . Pi to CF1 less than ATP was the same (0.4 at pH 6.0 and 7.0. The data suggest that acid pH values stimulate Pi binding by increasing the concentration of the H2PO4- species, which has been previously shown to be the form of phosphate that binds to beef heart F1 (33). These studies provide another example of an enzyme that dramatically lowers the free energy difference between enzyme-bound reactants and products compared to that of the same reaction occurring free in solution. The formation of CF1 less than ATP, if at the active site of photophosphorylation, means that protonmotive force does not directly promote the synthesis of the beta-gamma phosphoryl bond of ATP during energy-driven ATP synthesis.

摘要

纯化的CF1(叶绿体偶联因子1)可利用培养基中的无机磷酸(Pi)合成与酶结合的ATP(CF1<ATP)。该反应不依赖于培养基中的ADP,这表明ADP底物紧密结合于CF1(CF1<ADP)。在饱和[Pi]浓度及最适pH 6.0条件下,每摩尔CF1可产生0.25摩尔ATP。添加己糖激酶和葡萄糖并不会降低CF1<ATP的产量,这表明ATP从未从该酶上释放。添加培养基ATP而非ADP会促进CF1<ATP的水解。CF1<ATP的形成被分析为一个两步反应序列,其中Pi首先结合到CF1<ADP上,然后转化为CF1<ATP。酸性pH值通过促进Pi的结合,最显著地提高了CF1<ATP的产量。CF1<ADP·Pi转化为CF1<ATP的平衡常数是相同的(在pH 6.0和7.0时均为0.4)。数据表明,酸性pH值通过增加H2PO4-的浓度来刺激Pi的结合,此前已表明H2PO4-是与牛心F1结合的磷酸盐形式(33)。这些研究提供了另一个例子,即与溶液中自由发生的相同反应相比,一种酶能显著降低酶结合的反应物和产物之间的自由能差。如果CF1<ATP的形成发生在光合磷酸化的活性位点,这意味着在能量驱动的ATP合成过程中,质子动力势不会直接促进ATP的β-γ磷酸键的合成。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验