Amyloid β peptide directly impairs pineal gland melatonin synthesis and melatonin receptor signaling through the ERK pathway

淀粉样β肽通过ERK通路直接损害松果体褪黑激素合成和褪黑激素受体信号传导

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作者:Erika Cecon, Min Chen, Marina Marçola, Pedro A C Fernandes, Ralf Jockers, Regina P Markus

Abstract

Melatonin is the hormone produced by the pineal gland known to regulate physiologic rhythms and to display immunomodulatory and neuroprotective properties. It has been reported that Alzheimer disease patients show impaired melatonin production and altered expression of the 2 G protein-coupled melatonin receptors (MTRs), MT&sub1; and MT&sub2;, but the underlying mechanisms are not known. Here we evaluated whether this dysfunction of the melatonergic system is directly caused by amyloid β peptides (Aβ(1-40) and Aβ(1-42)). Aβ treatment of rat pineal glands elicited an inflammatory response within the gland, evidenced by the up-regulation of 52 inflammatory genes, and decreased the production of melatonin up to 75% compared to vehicle-treated glands. Blocking NF-κB activity prevented this effect. Exposure of HEK293 cells stably expressing recombinant MT&sub1; or MT&sub2; receptors to Aβ lead to a 40% reduction in [(125)I]iodomelatonin binding to MT&sub1;. ERK1/2 activation triggered by MTRs, but not by the β&sub2;-adrenergic receptor, was markedly impaired by Aβ in HEK293 transfected cells, as well as in primary rat endothelial cells expressing endogenous MTRs. Our data reveal the melatonergic system as a new target of Aβ, opening new perspectives to Alzheimer disease diagnosis and therapeutic intervention.

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