Keech Olivier, Gardeström Per, Kleczkowski Leszek A, Rouhier Nicolas
Department of Plant Physiology, UPSC, Umeå University, S-90187, Umeå, Sweden.
INRA, UMR 1136 Interactions Arbres/Microorganismes, Centre INRA Nancy Lorraine, 54280, Champenoux, France.
Plant Cell Environ. 2017 Apr;40(4):553-569. doi: 10.1111/pce.12713. Epub 2016 Apr 21.
Photorespiration is a complex and tightly regulated process occurring in photosynthetic organisms. This process can alter the cellular redox balance, notably via the production and consumption of both reducing and oxidizing equivalents. Under certain circumstances, these equivalents, as well as reactive oxygen or nitrogen species, can become prominent in subcellular compartments involved in the photorespiratory process, eventually promoting oxidative post-translational modifications of proteins. Keeping these changes under tight control should therefore be of primary importance. In order to review the current state of knowledge about the redox control of photorespiration, we primarily performed a careful description of the known and potential redox-regulated or oxidation sensitive photorespiratory proteins, and examined in more details two interesting cases: the glycerate kinase and the glycine cleavage system. When possible, the potential impact and subsequent physiological regulations associated with these changes have been discussed. In the second part, we reviewed the extent to which photorespiration contributes to cellular redox homeostasis considering, in particular, the set of peripheral enzymes associated with the canonical photorespiratory pathway. Finally, some recent biotechnological strategies to circumvent photorespiration for future growth improvements are discussed in the light of these redox regulations.
光呼吸是光合生物中发生的一个复杂且受到严格调控的过程。该过程可改变细胞的氧化还原平衡,特别是通过还原和氧化当量的产生与消耗来实现。在某些情况下,这些当量以及活性氧或氮物种会在参与光呼吸过程的亚细胞区室中变得显著,最终促进蛋白质的氧化翻译后修饰。因此,严格控制这些变化应是首要任务。为了综述关于光呼吸氧化还原调控的当前知识状态,我们主要对已知的和潜在的氧化还原调控或氧化敏感的光呼吸蛋白进行了详细描述,并更深入地研究了两个有趣的案例:甘油酸激酶和甘氨酸裂解系统。在可能的情况下,还讨论了与这些变化相关的潜在影响和后续生理调控。在第二部分中,我们考虑了与经典光呼吸途径相关的一组外周酶,综述了光呼吸对细胞氧化还原稳态的贡献程度。最后,根据这些氧化还原调控,讨论了一些用于规避光呼吸以促进未来生长的最新生物技术策略。