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Thiol Modulation of the Chloroplast ATP Synthase is Dependent on the Energization of Thylakoid Membranes

机译:叶绿体ATP合酶的硫醇调节取决于类囊体膜的能量。

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Thiol modulation of the chloroplast ATP synthase γ subunit has been recognized as an important regulatory system for the activation of ATP hydrolysis activity, although the physiological significance of this regulation system remains poorly characterized. Since the membrane potential required by this enzyme to initiate ATP synthesis for the reduced enzyme is lower than that needed for the oxidized form, reduction of this enzyme was interpreted as effective regulation for efficient photophosphorylation. However, no concrete evidence has been obtained to date relating to the timing and mode of chloroplast ATP synthase reduction and oxidation in green plants. In this study, thorough analysis of the redox state of regulatory cysteines of the chloroplast ATP synthase γ subunit in intact chloroplasts and leaves shows that thiol modulation of this enzyme is pivotal in prohibiting futile ATP hydrolysis activity in the dark. However, the physiological importance of efficient ATP synthesis driven by the reduced enzyme in the light could not be demonstrated. In addition, we investigated the significance of the electrochemical proton gradient in reducing the γ subunit by the reduced form of thioredoxin in chloroplasts, providing strong insights into the molecular mechanisms underlying the formation and reduction of the disulfide bond on the γ subunit in vivo.
机译:尽管该调节系统的生理学意义仍然很差,但叶绿体ATP合酶γ亚基的硫醇调节已被认为是激活ATP水解活性的重要调节系统。由于该酶为还原的酶引发ATP合成所需的膜电势低于氧化态所需的膜电势,因此该酶的还原被认为是有效的光磷酸化的有效调节。但是,迄今为止,尚未获得有关绿色植物中叶绿体ATP合酶还原和氧化的时间和方式的具体证据。在这项研究中,完整叶绿体和叶片中叶绿体ATP合酶γ亚基的调节半胱氨酸的氧化还原状态的彻底分析表明,该酶的硫醇调节在阻止黑暗中无用的ATP水解活性方面至关重要。然而,无法证明光还原酶驱动的高效ATP合成的生理重要性。此外,我们研究了通过在叶绿体中还原形式的硫氧还蛋白来还原γ亚基的电化学质子梯度的重要性,为深入了解体内γ亚基上二硫键的形成和还原的分子机理提供了深刻的见识。

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