Disruption of the Microglial ADP Receptor P2Y Enhances Adult Hippocampal Neurogenesis.

Front Cell Neurosci

Institute of Cell Biology and Neuroscience and Buchmann Institute for Molecular Life Sciences, Goethe-University, Frankfurt am Main, Germany.

Published: May 2018

In mammalian species, including humans, the hippocampal dentate gyrus (DG) is a primary region of adult neurogenesis. Aberrant adult hippocampal neurogenesis is associated with neurological pathologies. Understanding the cellular mechanisms controlling adult hippocampal neurogenesis is expected to open new therapeutic strategies for mental disorders. Microglia is intimately associated with neural progenitor cells in the hippocampal DG and has been implicated, under varying experimental conditions, in the control of the proliferation, differentiation and survival of neural precursor cells. But the underlying mechanisms remain poorly defined. Using fluorescent hybridization we show that microglia in brain express the ADP-activated P2Y receptor under basal conditions and that mRNA is absent from neurons, astrocytes, and neural progenitor cells. Disrupting decreases structural complexity of microglia in the hippocampal subgranular zone (SGZ). But it increases progenitor cell proliferation and new neuron formation. Our data suggest that P2Y receptor-activated microglia constitutively attenuate hippocampal neurogenesis. This identifies a signaling pathway whereby microglia, via a nucleotide-mediated mechanism, contribute to the homeostatic control of adult hippocampal neurogenesis. Selective P2YR antagonists could boost neurogenesis in pathological conditions associated with impaired hippocampal neurogenesis.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5966569PMC
http://dx.doi.org/10.3389/fncel.2018.00134DOI Listing

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