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光合电子流与代谢物运输网络以维持光合系统中的新陈代谢

Photosynthetic Electron Flows and Networks of Metabolite Trafficking to Sustain Metabolism in Photosynthetic Systems.

作者信息

Fakhimi Neda, Grossman Arthur R

机构信息

Department of Biosphere Sciences and Engineering, The Carnegie Institution for Science, 260 Panama Street, Stanford, CA 94305, USA.

Courtesy Appointment, Department of Biology, Stanford University, Stanford, CA 94305, USA.

出版信息

Plants (Basel). 2024 Oct 28;13(21):3015. doi: 10.3390/plants13213015.

Abstract

Photosynthetic eukaryotes have metabolic pathways that occur in distinct subcellular compartments. However, because metabolites synthesized in one compartment, including fixed carbon compounds and reductant generated by photosynthetic electron flows, may be integral to processes in other compartments, the cells must efficiently move metabolites among the different compartments. This review examines the various photosynthetic electron flows used to generate ATP and fixed carbon and the trafficking of metabolites in the green alga ; information on other algae and plants is provided to add depth and nuance to the discussion. We emphasized the trafficking of metabolites across the envelope membranes of the two energy powerhouse organelles of the cell, the chloroplast and mitochondrion, the nature and roles of the major mobile metabolites that move among these compartments, and the specific or presumed transporters involved in that trafficking. These transporters include sugar-phosphate (sugar-P)/inorganic phosphate (Pi) transporters and dicarboxylate transporters, although, in many cases, we know little about the substrate specificities of these transporters, how their activities are regulated/coordinated, compensatory responses among transporters when specific transporters are compromised, associations between transporters and other cellular proteins, and the possibilities for forming specific 'megacomplexes' involving interactions between enzymes of central metabolism with specific transport proteins. Finally, we discuss metabolite trafficking associated with specific biological processes that occur under various environmental conditions to help to maintain the cell's fitness. These processes include C4 metabolism in plants and the carbon concentrating mechanism, photorespiration, and fermentation metabolism in algae.

摘要

光合真核生物具有发生在不同亚细胞区室中的代谢途径。然而,由于在一个区室中合成的代谢物,包括光合电子流产生的固定碳化合物和还原剂,可能是其他区室中过程所必需的,细胞必须有效地在不同区室之间转运代谢物。本综述研究了用于产生ATP和固定碳的各种光合电子流以及绿藻中代谢物的运输;还提供了关于其他藻类和植物的信息,以使讨论更深入和细致入微。我们着重讨论了代谢物在细胞的两个能量动力细胞器(叶绿体和线粒体)的包膜膜之间的运输、在这些区室之间移动的主要可移动代谢物的性质和作用,以及参与该运输的特定或推测的转运蛋白。这些转运蛋白包括糖磷酸/无机磷酸转运蛋白和二羧酸转运蛋白,不过在许多情况下,我们对这些转运蛋白的底物特异性、它们的活性如何调节/协调、当特定转运蛋白受损时转运蛋白之间的补偿反应、转运蛋白与其他细胞蛋白之间的关联,以及形成涉及中心代谢酶与特定转运蛋白相互作用的特定“超级复合物”的可能性了解甚少。最后,我们讨论了与在各种环境条件下发生的特定生物学过程相关的代谢物运输,以帮助维持细胞的适应性。这些过程包括植物中的C4代谢和碳浓缩机制、光呼吸以及藻类中的发酵代谢。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c646/11548211/d51511f3ecd2/plants-13-03015-g003a.jpg

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