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Morphine increases brain levels of ferritin heavy chain leading to inhibition of CXCR4-mediated survival signaling in neurons.

J. Neurosci.. 2009; 
SenguptaRajarshi,BurbassiSilvia,ShimizuSaori,CappelloSilvia,ValleeRichard B,RubinJoshua B,MeucciOli
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Custom Vector Construction Two different vectors, both expressing GFP, were used to downregulate FHC expression: either a construct from GenScript targeting the sequence CTTCACAAACTGGCTACTG (sense) of rat FHC mRNA (FHCshRNA/pRNAT-U6.1; 1 μg/μl) or a GIPZ lentiviral shRNAmir from Open Biosystems Get A Quote

摘要

This study focuses on the effect of mu-opioid receptor agonists on CXCR4 signaling in neurons and the mechanisms involved in regulation of neuronal CXCR4 by opiates. The data show that CXCR4 is negatively modulated by long-term morphine treatments both in vitro and in vivo; CXCR4 inhibition is caused by direct stimulation of mu-opioid receptors in neurons, leading to alterations of ligand-induced CXCR4 phosphorylation and upregulation of protein ferritin heavy chain (FHC), a negative intracellular regulator of CXCR4. Reduced coupling of CXCR4 to G-proteins was found in the brain of morphine-treated rats, primarily cortex and hippocampus. CXCR4-induced G alpha(i)/G betagamma activities were suppressed afte... More

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