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大肠杆菌F0F1型ATP合酶在膜囊泡中进行ATP合成的周转数。

Turnover number of Escherichia coli F0F1 ATP synthase for ATP synthesis in membrane vesicles.

作者信息

Etzold C, Deckers-Hebestreit G, Altendorf K

机构信息

Fachbereich Biologie/Chemie, Arbeitsgruppe Mikrobiologie, Universitat Osnabruck, Germany.

出版信息

Eur J Biochem. 1997 Jan 15;243(1-2):336-43. doi: 10.1111/j.1432-1033.1997.0336a.x.

Abstract

The rate of ATP synthesized by the ATP synthase (F0F1-ATPase) is limited by the rate of energy production via the respiratory chain, when measured in everted membrane vesicles of an Escherichia coli atp wild-type strain. After energization of the membranes with NADH, fractional inactivation of F0F1 by the covalent inhibitor N,N'-dicyclohexylcarbodiimide allowed the rate of ATP synthesis/mol remaining active ATP synthase complexes to increase; the active ATP synthase complexes were calculated using ATP hydrolysis rates as the defining parameter. In addition, variation of the assay temperature revealed an increase of the ATP synthesis rate up to a temperature of 37 degrees C, the optimal growth temperature of E. coli. In parallel, the amount of F0F1 complexes present in membrane vesicles was determined by immunoquantitation to be 3.3 +/- 0.3% of the membrane protein for cells grown in rich medium and 6.6 +/- 0.3% for cells grown in minimal medium with glycerol as sole carbon and energy source. Based on these data, a turnover number for ATP synthesis of 270 +/- 40 s(-1) could be determined in the presence of 5% active F0F1 complexes. Therefore, these studies demonstrate that the ATP synthase complex of E. coli has, with respect to maximum rates, the same capacity as the corresponding enzymes of eukaryotic organells.

摘要

在大肠杆菌atp野生型菌株的外翻膜囊泡中进行测量时,ATP合酶(F0F1 - ATP酶)合成ATP的速率受呼吸链能量产生速率的限制。在用NADH使膜通电后,共价抑制剂N,N'-二环己基碳二亚胺使F0F1部分失活,使得每摩尔剩余活性ATP合酶复合物的ATP合成速率增加;活性ATP合酶复合物是使用ATP水解速率作为定义参数来计算的。此外,测定温度的变化显示,在高达37℃(大肠杆菌的最佳生长温度)的温度下,ATP合成速率增加。同时,通过免疫定量法测定膜囊泡中存在的F0F1复合物的量,对于在丰富培养基中生长的细胞,其占膜蛋白的3.3±0.3%,对于以甘油作为唯一碳源和能源在基本培养基中生长的细胞,其占6.6±0.3%。基于这些数据,在存在5%活性F0F1复合物的情况下,可以确定ATP合成的周转数为270±40 s(-1)。因此,这些研究表明,就最大速率而言,大肠杆菌的ATP合酶复合物与真核细胞器的相应酶具有相同的能力。

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