铜平衡中的蛋白激酶:Cu+-ATPase 调节综述

R. Valverde, Jennifer Lowe
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引用次数: 0

摘要

铜是多种生物功能所必需的重金属,但过量则会中毒。因此,需要一个严格调控的蛋白质系统来确保细胞内有足够的铜含量。近几十年来,一些研究探索了 Cu+-ATP 酶在铜转运和平衡中的作用,发现这些蛋白受激酶介导的磷酸化作用影响很大。磷酸化蛋白组筛选、定点突变和人工神经网络工具等技术证明了磷酸化对这些 ATP 酶的调控作用。不同的蛋白激酶调控 Cu+-ATP 酶,通过影响催化循环的特定步骤、长程分子内串联、蛋白质贩运、基因表达和蛋白质稳定性来调节活性铜转运。因此,激酶对 Cu+-ATP 酶的调节性磷酸化最终会影响细胞内铜的分布。本研究旨在综述有关激酶介导的磷酸化对 Cu+-ATP 酶的调控这一铜平衡关键机制的科学文献。这种调控为开发治疗与铜代谢有关的疾病(如威尔逊病、门克氏症、癌症、糖尿病、帕金森病和阿尔茨海默病)的疗法提供了新的视角。这些发现强调了进一步理解铜调节中涉及蛋白激酶的信号通路的必要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Protein Kinases in Copper Homeostasis: A Review on Cu+-ATPase Modulation
Copper is an essential heavy metal for diverse biological functions but toxic in excess. Consequently, a tightly regulated protein system is required to ensure adequate intracellular levels. In recent decades, several studies have explored the role of Cu+-ATPases in copper transport and homeostasis, revealing that these proteins are subject to kinase-mediated phosphorylation that significantly impacts their function. Techniques such as phosphoproteomic screening, site-directed mutagenesis, and artificial neural network tools demonstrated the regulatory effect of phosphorylation on these ATPases. Different protein kinases regulate Cu+-ATPases, modulating the active copper transport by affecting specific steps of the catalytic cycle, long-range intramolecular crosstalks, protein trafficking, gene expression, and protein stability. Therefore, the regulatory phosphorylation of Cu+-ATPases by kinases ultimately influences the intracellular copper distribution. This study aims to present a review of the scientific literature on the regulation of Cu+-ATPases by kinase-mediated phosphorylation as a crucial mechanism for copper homeostasis. This regulation offers new perspectives for developing therapies for disorders related to copper metabolism, such as Wilson and Menkes diseases, as well as cancer, diabetes mellitus, Parkinson’s, and Alzheimer’s diseases. These findings emphasize the need to further comprehend the signaling pathways involving protein kinases in the context of copper regulation.
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