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The chloroplast ATP synthase features the characteristic redox regulation machinery

机译:叶绿体ATP合酶具有特征性的氧化还原调节机制

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Significance: Regulation of the activity of the chloroplast ATP synthase is largely accomplished by the chloroplast thioredoxin system, the main redox regulation system in chloroplasts, which is directly coupled to the photosynthetic reaction. We review the current understanding of the redox regulation system of the chloroplast ATP synthase. Recent Advances: The thioredoxin-targeted portion of the ATP synthase consists of two cysteines located on the central axis subunit γ. The redox state of these two cysteines is under the influence of chloroplast thioredoxin, which directly controls rotation during catalysis by inducing a conformational change in this subunit. The molecular mechanism of redox regulation of the chloroplast ATP synthase has recently been determined. Critical Issues: Regulation of the activity of the chloroplast ATP synthase is critical in driving efficiency into the ATP synthesis reaction in chloroplasts. Future Directions: The molecular architecture of the chloroplast ATP synthase, which confers redox regulatory properties requires further investigation, in light of the molecular structure of the enzyme complex as well as the physiological significance of the regulation system.
机译:意义:对叶绿体ATP合酶活性的调节主要由叶绿体硫氧还蛋白系统(叶绿体中主要的氧化还原调节系统)完成,该系统直接与光合作用反应耦合。我们审查了目前对叶绿体ATP合酶的氧化还原调节系统的了解。最新进展:ATP合酶的硫氧还蛋白靶向部分由位于中心轴亚基γ上的两个半胱氨酸组成。这两个半胱氨酸的氧化还原状态受叶绿体硫氧还蛋白的影响,叶绿体硫氧还蛋白通过诱导亚基的构象变化直接控制催化过程中的旋转。最近已经确定了叶绿体ATP合酶的氧化还原调节的分子机制。关键问题:叶绿体ATP合酶活性的调节对于提高叶绿体中ATP合成反应的效率至关重要。未来方向:鉴于酶复合物的分子结构以及调节系统的生理学意义,需要进一步研究赋予氧化还原调节特性的叶绿体ATP合酶的分子结构。

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