AUTHOR=Telianidis Jonathon , Hung Ya Hui , Materia Stephanie , La Fontaine Sharon TITLE=Role of the P-Type ATPases, ATP7A and ATP7B in brain copper homeostasis JOURNAL=Frontiers in Aging Neuroscience VOLUME=5 YEAR=2013 URL=https://www.frontiersin.org/journals/aging-neuroscience/articles/10.3389/fnagi.2013.00044 DOI=10.3389/fnagi.2013.00044 ISSN=1663-4365 ABSTRACT=
Over the past two decades there have been significant advances in our understanding of copper homeostasis and the pathological consequences of copper dysregulation. Cumulative evidence is revealing a complex regulatory network of proteins and pathways that maintain copper homeostasis. The recognition of copper dysregulation as a key pathological feature in prominent neurodegenerative disorders such as Alzheimer’s, Parkinson’s, and prion diseases has led to increased research focus on the mechanisms controlling copper homeostasis in the brain. The copper-transporting P-type ATPases (copper-ATPases), ATP7A and ATP7B, are critical components of the copper regulatory network. Our understanding of the biochemistry and cell biology of these complex proteins has grown significantly since their discovery in 1993. They are large polytopic transmembrane proteins with six copper-binding motifs within the cytoplasmic N-terminal domain, eight transmembrane domains, and highly conserved catalytic domains. These proteins catalyze ATP-dependent copper transport across cell membranes for the metallation of many essential cuproenzymes, as well as for the removal of excess cellular copper to prevent copper toxicity. A key functional aspect of these copper transporters is their copper-responsive trafficking between the