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Redox properties of Cys2His2 and Cys4 zinc fingers determined by electrospray ionization mass spectrometry

机译:通过电喷雾电离质谱法测定Cys2His2和Cys4锌指的氧化还原特性

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Zinc finger (ZF) protein motifs, stabilized by binding of Zn(II), typically function as interaction modules that bind nucleic acids, proteins and other molecules. The elucidation of the redox states of ZF proteins in cellular conditions, which depend on their midpoint redox potentials, is important for understanding of ZF functioning. In the present study we determined the midpoint redox potentials for representatives of Cys2His2 and Cys4 types of ZF proteins in apo and Zn(II)‐bound forms using electrospray ionization mass spectrometry. The midpoint redox potentials of the apo forms of Cys2His2 and Cys4ZF proteins were ?326 and ?365 mV (pH 7.5), respectively. These values are close to the cytosolic redox potential of approx. ?350 mV (pH 7.5) and thus we can conclude that the apo form of Cys2His2‐type ZF proteins is predominantly reduced but apo forms of Cys4‐type ZF proteins should be substantially oxidized in the cytoplasm. As expected, Zn(II) binding stabilized the reduced forms of both ZF proteins: the corresponding redox potential values were ?284 and ?301 mV, respectively. Consequently, binding of Zn(II) ions to ZF motifs can act as a sensitive switch that activates the functioning of the ZF motifs within the cell, and also protects them from oxidation and can function as part of a redox‐sensitive regulation mechanism of cellular functions.
机译:通过结合Zn(II)稳定的锌指(ZF)蛋白基序通常充当结合核酸,蛋白质和其他分子的相互作用模块。阐明ZF蛋白在细胞条件下的氧化还原状态取决于它们的中点氧化还原电位,对于理解ZF的功能很重要。在本研究中,我们确定了apo和Zn中ZF蛋白的Cys 2 His 2 和Cys 4 类型代表的中点氧化还原电位II)使用电喷雾电离质谱的结合形式。 Cys 2 His 2 和Cys 4 ZF蛋白的载脂蛋白中点氧化还原电位分别为326和365 mV(pH 7.5) , 分别。这些值接近胞质氧化还原电位。 350 mV(pH 7.5),因此我们可以得出结论,Cys 2 His 2 型ZF蛋白的载脂蛋白形式明显减少,但Cys 的载脂蛋白形式4 型ZF蛋白应在细胞质中被充分氧化。如预期的那样,Zn(II)结合稳定了两种ZF蛋白的还原形式:相应的氧化还原电势分别为284和301 mV。因此,Zn(II)离子与ZF图案的结合可以充当敏感开关,激活细胞内ZF图案的功能,并保护其免受氧化,并可以作为细胞对氧化还原敏感的调节机制的一部分职能。

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