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Glutathione redox potential in the mitochondrial intermembrane space is linked to the cytosol and impacts the Mia40 redox state

机译:线粒体膜间空间中的谷胱甘肽氧化还原电位与细胞质有关并影响Mia40氧化还原状态

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摘要

Glutathione is an important mediator and regulator of cellular redox processes. Detailed knowledge of local glutathione redox potential (EGSH) dynamics is critical to understand the network of redox processes and their influence on cellular function. Using dynamic oxidant recovery assays together with EGSH-specific fluorescent reporters, we investigate the glutathione pools of the cytosol, mitochondrial matrix and intermembrane space (IMS). We demonstrate that the glutathione pools of IMS and cytosol are dynamically interconnected via porins. In contrast, no appreciable communication was observed between the glutathione pools of the IMS and matrix. By modulating redox pathways in the cytosol and IMS, we find that the cytosolic glutathione reductase system is the major determinant of EGSH in the IMS, thus explaining a steady-state EGSH in the IMS which is similar to the cytosol. Moreover, we show that the local EGSH contributes to the partially reduced redox state of the IMS oxidoreductase Mia40 in vivo. Taken together, we provide a comprehensive mechanistic picture of the IMS redox milieu and define the redox influences on Mia40 in living cells.
机译:谷胱甘肽是细胞氧化还原过程的重要介质和调节剂。了解局部谷胱甘肽氧化还原电位(EGSH)动力学的详细知识对于了解氧化还原过程的网络及其对细胞功能的影响至关重要。使用动态氧化剂回收测定法和EGSH特异性荧光报告分子,我们研究了细胞溶质,线粒体基质和膜间空间(IMS)的谷胱甘肽池。我们证明IMS和细胞质的谷胱甘肽池通过孔蛋白动态互连。相反,在IMS的谷胱甘肽池和基质之间没有观察到明显的交流。通过调节细胞质和IMS中的氧化还原途径,我们发现细胞质谷胱甘肽还原酶系统是IMS中EGSH的主要决定因素,从而解释了IMS中与细胞质相似的稳态EGSH。此外,我们表明,本地EGSH有助于体内IMS氧化还原酶Mia40的部分还原氧化还原状态。综上,我们提供了IMS氧化还原环境的全面机理图,并定义了氧化还原对活细胞中Mia40的影响。

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