Copper-transporting ATPases ATP7A and ATP7B: cousins, not twins

ATP7A型 门克斯病 ATP酶 生物 生物化学 共域化 型三磷酸腺脢 细胞生物学 化学 铜代谢 有机化学
作者
Rachel Linz,Svetlana Lutsenko
出处
期刊:Journal of Bioenergetics and Biomembranes [Springer Nature]
卷期号:39 (5-6): 403-407 被引量:112
标识
DOI:10.1007/s10863-007-9101-2
摘要

Copper plays an essential role in human physiology and is indispensable for normal growth and development. Enzymes that are involved in connective tissue formation, neurotransmitter biosynthesis, iron transport, and others essential physiological processes require copper as a cofactor to mediate their reactions. The biosynthetic incorporation of copper into these enzymes takes places within the secretory pathway and is critically dependent on the activity of copper-transporting ATPases ATP7A or ATP7B. In addition, ATP7A and ATP7B regulate intracellular copper concentration by removing excess copper from the cell. These two transporters belong to the family of P1-type ATPases, share significant sequence similarity, utilize the same general mechanism for their function, and show partial colocalization in some cells. However, the distinct biochemical characteristics and dissimilar trafficking properties of ATP7A and ATP7B in cells, in which they are co-expressed, indicate that specific functions of these two copper-transporting ATPases are not identical. Immuno-detection studies in cells and tissues have begun to suggest specific roles for ATP7A and ATP7B. These experiments also revealed technical challenges associated with quantitative detection of copper-transporting ATPases in tissues, as illustrated here by comparing the results of ATP7A and ATP7B immunodetection in mouse cerebellum.
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