Bhattacharjee Ashima, Chakraborty Kaustav, Shukla Aditya
S. N. Pradhan Centre for Neurosciences, University of Calcutta, Kolkata, India.
Metallomics. 2017 Oct 18;9(10):1376-1388. doi: 10.1039/c7mt00066a.
Copper is a trace element essential for almost all living organisms. But the level of intracellular copper needs to be tightly regulated. Dysregulation of cellular copper homeostasis leading to various diseases demonstrates the importance of this tight regulation. Copper homeostasis is regulated not only within the cell but also within individual intracellular compartments. Inactivation of export machinery results in excess copper being redistributed into various intracellular organelles. Recent evidence suggests the involvement of glutathione in playing an important role in regulating copper entry and intracellular copper homeostasis. Therefore interplay of both homeostases might play an important role within the cell. Similar to copper, glutathione balance is tightly regulated within individual cellular compartments. This review explores the existing literature on the role of glutathione in regulating cellular copper homeostasis. On the one hand, interplay of glutathione and copper homeostasis performs an important role in normal physiological processes, for example neuronal differentiation. On the other hand, perturbation of the interplay might play a key role in the pathogenesis of copper homeostasis disorders.
铜是几乎所有生物必需的微量元素。但细胞内铜的水平需要严格调控。细胞铜稳态失调会导致各种疾病,这表明了这种严格调控的重要性。铜稳态不仅在细胞内受到调控,而且在细胞内的各个区室中也受到调控。输出机制的失活会导致过量的铜重新分布到各种细胞内细胞器中。最近的证据表明,谷胱甘肽在调节铜进入和细胞内铜稳态中发挥着重要作用。因此,这两种稳态之间的相互作用可能在细胞内发挥重要作用。与铜类似,谷胱甘肽平衡在各个细胞区室中也受到严格调控。本综述探讨了关于谷胱甘肽在调节细胞铜稳态中作用的现有文献。一方面,谷胱甘肽与铜稳态之间的相互作用在正常生理过程中发挥着重要作用,例如神经元分化。另一方面,这种相互作用的紊乱可能在铜稳态失调的发病机制中起关键作用。