首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Role of Glutaredoxin1 and Glutathione in Regulating the Activity of the Copper-transporting P-type ATPases ATP7A and ATP7B
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Role of Glutaredoxin1 and Glutathione in Regulating the Activity of the Copper-transporting P-type ATPases ATP7A and ATP7B

机译:Glutaredoxin1和谷胱甘肽在调节铜转运P型ATPaseATP7A和ATP7B活性中的作用

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摘要

The copper-transporting P-type ATPases (Cu-ATPases), ATP7A and ATP7B, are essential for the regulation of intracellular copper homeostasis. In this report we describe new roles for glutathione (GSH) and glutaredoxin1 (GRX1) in Cu homeostasis through their regulation of Cu-ATPase activity. GRX1 is a thiol oxidoreductase that catalyzes the reversible reduction of GSH-mixed disulfides to their respective sulfhydryls (deglutathionylation). Here, we demonstrated that glutathionylation of the Cu-ATPases and their interaction with GRX1 were affected by alterations in Cu levels. The data support our hypothesis that the Cu-ATPases serve as substrates for Cu-dependent GRX1-mediated deglutathionylation. This in turn liberates the Cu-ATPase cysteinyl thiol groups for Cu binding and transport. GSH depletion experiments led to reversible inhibition of the Cu-ATPases that correlated with effects on intracellular Cu levels and GRX1 activity. Finally, knockdown of GRX1 expression resulted in an increase in intracellular Cu accumulation. Together, these data directly implicate GSH and GRX1 with important new roles in redox regulation of the Cu-ATPases, through modulation of Cu binding by the Cu-ATPase cysteine motifs.
机译:铜转运P型ATP酶(Cu-ATPase),ATP7A和ATP7B对于调节细胞内铜稳态是必不可少的。在本报告中,我们通过调节Cu-ATPase活性描述了谷胱甘肽(GSH)和glutaredoxin1(GRX1)在铜稳态中的新作用。 GRX1是一种巯基氧化还原酶,可催化将GSH混合的二硫化物可逆还原为各自的巯基(去谷胱甘肽化)。在这里,我们证明了Cu-ATPase的谷胱甘肽酰化及其与GRX1的相互作用受Cu水平变化的影响。数据支持了我们的假设,即Cu-ATPase充当Cu依赖性GRX1介导的脱谷胱甘肽化的底物。这继而释放出Cu-ATPase半胱氨酰硫醇基团,用于Cu的结合和转运。 GSH耗竭实验导致可逆抑制Cu-ATPase,这与对细胞内Cu水平和GRX1活性的影响有关。最后,敲低GRX1表达导致细胞内Cu积累增加。总之,这些数据通过调节Cu-ATPase半胱氨酸基序对Cu的结合,直接暗示GSH和GRX1在Cu-ATPase的氧化还原调节中具有重要的新作用。

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