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快速标记的ATP紧密结合于叶绿体ATP合酶非催化位点的来源。

Source of rapidly labeled ATP tightly to non-catalytic sites on the chloroplast ATP synthetase.

作者信息

Aflalo C, Shavit N

出版信息

Eur J Biochem. 1982 Aug;126(1):61-8. doi: 10.1111/j.1432-1033.1982.tb06746.x.

Abstract

Bound [32P]ATP is found on deenergized, washed chloroplast thylakoids which were illuminated in the presence of ADP and [32P]Pi. Tight binding of [32P]ATP occurred both during and after energization. Different classes of bound [32P]ATP were distinguished on the basis of their rates of formation, susceptibility to hexokinase and displacement by unlabeled ATP. 1. The rates of formation and discharge of the rapidly labeled tightly bound ATP class were much lower than that of ATP formation. The level of this bound ATP saturates at lower concentrations of substrates than does the rate of phosphorylation. Unlabeled ATP, present in the reaction medium, displaces the rapidly labeled tightly bound ATP without affecting the rate of phosphorylation. 2. We therefore conclude that the rapidly labeled bound ATP class does not fulfill the requirements expected for a catalytic intermediate and that the nucleotide tight binding site(s) on the ATP synthetase differ from the catalytic site(s) for ATP formation. 3. Since the rapidly labeled tightly bound [32P]ATP is not abolished by high concentrations of hexokinase, but is nevertheless displaced by exogenous ATP, we propose that tight binding of ATP to non-catalytic sites occurs via a free species of newly synthesized ATP which diffuses slowly to the medium from a space accessible to ATP but not to hexokinase.

摘要

在含有ADP和[32P]Pi的条件下光照后的去能、洗涤过的叶绿体类囊体上发现了结合态的[32P]ATP。在能化过程中和能化之后均发生了[32P]ATP的紧密结合。根据[32P]ATP的形成速率、对己糖激酶的敏感性以及被未标记ATP取代的情况,区分出了不同类型的结合态[32P]ATP。1. 快速标记的紧密结合ATP类的形成和释放速率远低于ATP的形成速率。这种结合态ATP的水平在底物浓度较低时就达到饱和,而磷酸化速率则不然。反应介质中存在的未标记ATP会取代快速标记的紧密结合ATP,而不影响磷酸化速率。2. 因此,我们得出结论,快速标记的结合态ATP类不符合催化中间体的预期要求,并且ATP合酶上的核苷酸紧密结合位点与ATP形成的催化位点不同。3. 由于高浓度的己糖激酶不会消除快速标记的紧密结合[32P]ATP,但外源ATP仍能将其取代,我们提出ATP与非催化位点的紧密结合是通过新合成的ATP的游离形式发生的,这种游离形式从ATP可及但己糖激酶不可及的空间缓慢扩散到介质中。

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