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Trafficking mechanisms of P-type ATPase copper transporters

机译:P型ATP酶铜运输司机的贩运机制

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Copper is an essential micronutrient required for oxygen-dependent enzymes, yet excess of the metal is a toxicant. The tug-of-war between these copper activities is balanced by chaperones and membrane transporters, which control copper distribution and availability. The P-type ATPase transporters, ATP7A and ATP7B, regulate cytoplasmic copper by pumping copper out of cells or into the endomembrane system. Mutations in ATP7A and ATP7B cause diseases that share neuropsychiatric phenotypes, which are similar to phenotypes observed in mutations affecting cytoplasmic trafficking complexes required for ATP7A/B dynamics. Here, we discuss evidence indicating that phenotypes associated to genetic defects in trafficking complexes, such as retromer and the adaptor complex AP-1, result in part from copper dyshomeostasis due to mislocalized ATP7A and ATP7B.
机译:铜是氧依赖性酶所需的必需微量营养素,但过量的金属是毒物。 这些铜活动之间的脱巨次战争由伴侣和膜运输扣进行平衡,控制铜分配和可用性。 P型ATP酶转运蛋白,ATP7a和ATP7b,通过将铜泵出细胞或进入端膜系统来调节细胞质铜。 ATP7A和ATP7B中的突变导致患有神经精神表型的疾病,其与影响ATP7A / B动力学所需的细胞质贩运复合物中观察到的表型类似。 在这里,我们讨论证据表明与贩运复合物中的遗传缺陷相关的表型,例如回转器和适配器复合物AP-1,导致由于错误的ATP7A和ATP7B的铜脱果抑制而导致铜Dyshomeostasis。

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