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首页> 外文期刊>Trends in Plant Science >The Plant Mitochondrial Transportome: Balancing Metabolic Demands with Energetic Constraints
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The Plant Mitochondrial Transportome: Balancing Metabolic Demands with Energetic Constraints

机译:植物线粒体转运蛋白组:平衡代谢需求与精力旺盛的约束。

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摘要

In plants, mitochondrial function is associated with hundreds of metabolic reactions. To facilitate these reactions, charged substrates and cofactors move across the charge-impermeable inner mitochondrial membrane via specialized transporters and must work cooperatively with the electrochemical gradient which is essential for mitochondrial function. The regulatory framework for mitochondrial metabolite transport is expected to be more complex in plants than in mammals owing to the close metabolic association between mitochondrial, plastids, and peroxisome metabolism, as well as to the major diurnal fluctuations in plant metabolic function. We propose here how recent advances can be integrated towards defining the mitochondrial transportome in plants. We also discuss what this reveals about sustaining cooperativity between bioenergetics, metabolism, and transport in typical and challenging environments.
机译:在植物中,线粒体功能与数百种代谢反应有关。为了促进这些反应,带电的底物和辅因子通过专门的转运蛋白穿过不透过电荷的内部线粒体膜移动,并且必须与对线粒体功能至关重要的电化学梯度协同作用。由于线粒体,质体和过氧化物酶体代谢之间的紧密代谢联系,以及植物代谢功能的主要昼夜波动,植物体内线粒体代谢产物运输的调控框架预计比哺乳动物更为复杂。我们在这里提出如何整合最近的进展以定义植物中的线粒体转运体。我们还将讨论这揭示了在典型且具有挑战性的环境中维持生物能,新陈代谢和运输之间的协同作用的结果。

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