首页> 美国卫生研究院文献>The Journal of Biological Chemistry >The Involvement of Hydrogen-producing and ATP-dependent NADPH-consuming Pathways in Setting the Redox Poise in the Chloroplast of Chlamydomonas reinhardtii in Anoxia
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The Involvement of Hydrogen-producing and ATP-dependent NADPH-consuming Pathways in Setting the Redox Poise in the Chloroplast of Chlamydomonas reinhardtii in Anoxia

机译:产氢和ATP依赖的NADPH消耗途径参与缺氧衣藻衣藻叶绿体中氧化还原平衡的设定

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摘要

Photosynthetic microalgae are exposed to changing environmental conditions. In particular, microbes found in ponds or soils often face hypoxia or even anoxia, and this severely impacts their physiology. Chlamydomonas reinhardtii is one among such photosynthetic microorganisms recognized for its unusual wealth of fermentative pathways and the extensive remodeling of its metabolism upon the switch to anaerobic conditions. As regards the photosynthetic electron transfer, this remodeling encompasses a strong limitation of the electron flow downstream of photosystem I. Here, we further characterize the origin of this limitation. We show that it stems from the strong reducing pressure that builds up upon the onset of anoxia, and this pressure can be relieved either by the light-induced synthesis of ATP, which promotes the consumption of reducing equivalents, or by the progressive activation of the hydrogenase pathway, which provides an electron transfer pathway alternative to the CO2 fixation cycle.
机译:光合微藻暴露于变化的环境条件。特别是,在池塘或土壤中发现的微生物经常面临缺氧甚至缺氧,这严重影响了它们的生理。莱茵衣藻(Chlamydomonas reinhardtii)是这种光合微生物之一,以其异常丰富的发酵途径和在转换至厌氧条件下其代谢的广泛重塑而得到认可。关于光合电子转移,这种重塑包括对光系统I下游电子流的强烈限制。在此,我们进一步描述了这种限制的起源。我们表明,这是由于在缺氧症发作时建立的强大的还原压力而产生的,该压力可以通过光诱导的ATP合成(其促进还原当量的消耗)或通过逐步激活ATP来缓解。氢化酶途径,它提供了一个替代CO2固定循环的电子转移途径。

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