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通过腺苷酸激酶平衡优化线粒体和叶绿体中ATP合酶的功能。

Optimization of ATP synthase function in mitochondria and chloroplasts via the adenylate kinase equilibrium.

作者信息

Igamberdiev Abir U, Kleczkowski Leszek A

机构信息

Department of Biology, Memorial University of Newfoundland, St. John's , NL, Canada.

Department of Plant Physiology, Umeå Plant Science Centre, University of Umeå , Umeå, Sweden.

出版信息

Front Plant Sci. 2015 Jan 28;6:10. doi: 10.3389/fpls.2015.00010. eCollection 2015.

Abstract

The bulk of ATP synthesis in plants is performed by ATP synthase, the main bioenergetics engine of cells, operating both in mitochondria and in chloroplasts. The reaction mechanism of ATP synthase has been studied in detail for over half a century; however, its optimal performance depends also on the steady delivery of ATP synthase substrates and the removal of its products. For mitochondrial ATP synthase, we analyze here the provision of stable conditions for (i) the supply of ADP and Mg(2+), supported by adenylate kinase (AK) equilibrium in the intermembrane space, (ii) the supply of phosphate via membrane transporter in symport with H(+), and (iii) the conditions of outflow of ATP by adenylate transporter carrying out the exchange of free adenylates. We also show that, in chloroplasts, AK equilibrates adenylates and governs Mg(2+) contents in the stroma, optimizing ATP synthase and Calvin cycle operation, and affecting the import of inorganic phosphate in exchange with triose phosphates. It is argued that chemiosmosis is not the sole component of ATP synthase performance, which also depends on AK-mediated equilibrium of adenylates and Mg(2+), adenylate transport, and phosphate release and supply.

摘要

植物中大部分ATP的合成是由ATP合酶完成的,ATP合酶是细胞的主要生物能量引擎,在线粒体和叶绿体中都发挥作用。半个多世纪以来,人们对ATP合酶的反应机制进行了详细研究;然而,其最佳性能还取决于ATP合酶底物的稳定供应及其产物的清除。对于线粒体ATP合酶,我们在此分析为以下方面提供稳定条件:(i)由线粒体外膜间隙中的腺苷酸激酶(AK)平衡支持的ADP和Mg(2+)的供应;(ii)通过与H(+)同向转运的膜转运蛋白供应磷酸盐;(iii)通过进行游离腺苷酸交换的腺苷酸转运蛋白使ATP流出的条件。我们还表明,在叶绿体中,AK使腺苷酸达到平衡并控制基质中的Mg(2+)含量,优化ATP合酶和卡尔文循环的运行,并影响与磷酸丙糖交换的无机磷酸盐的导入。有人认为,化学渗透不是ATP合酶性能的唯一组成部分,它还取决于AK介导的腺苷酸和Mg(2+)平衡、腺苷酸转运以及磷酸盐的释放和供应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cdd5/4309032/af410f603abc/fpls-06-00010-g0001.jpg

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