Regulation of neuronal ferritin heavy chain, a new player in opiate-induced chemokine dysfunction

AC Abt, O Meucci - Journal of Neuroimmune Pharmacology, 2011 - Springer
AC Abt, O Meucci
Journal of Neuroimmune Pharmacology, 2011Springer
The heavy chain subunit of ferritin (FHC), a ubiquitous protein best known for its iron-
sequestering activity as part of the ferritin complex, has recently been described as a novel
inhibitor of signaling through the chemokine receptor CXCR4. Levels of FHC as well as its
effects on CXCR4 activation increase in cortical neurons exposed to mu-opioid receptor
agonists such as morphine, an effect likely specific to neurons. Major actions of CXCR4
signaling in the mature brain include a promotion of neurogenesis, activation of pro-survival …
Abstract
The heavy chain subunit of ferritin (FHC), a ubiquitous protein best known for its iron-sequestering activity as part of the ferritin complex, has recently been described as a novel inhibitor of signaling through the chemokine receptor CXCR4. Levels of FHC as well as its effects on CXCR4 activation increase in cortical neurons exposed to mu-opioid receptor agonists such as morphine, an effect likely specific to neurons. Major actions of CXCR4 signaling in the mature brain include a promotion of neurogenesis, activation of pro-survival signals, and modulation of excitotoxic pathways; thus, FHC up-regulation may contribute to the neuronal dysfunction often associated with opiate drug abuse. This review summarizes our knowledge of neuronal CXCR4 function, its regulation by opiates and the role of FHC in this process, and known mechanisms controlling FHC production. We speculate on the mechanism involved in FHC regulation by opiates and offer FHC as a new target in opioid-induced neuropathology.
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