The recently identified P2Y-like receptor GPR17 is a sensor of brain damage and a new target for brain repair.

Deciphering the mechanisms regulating the generation of new neurons and new oligodendrocytes, the myelinating cells of the central nervous system, is of paramount importance to address new strategies to replace endogenous damaged cells in the adult brain and foster repair in neurodegenerative diseas...

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Main Authors: Davide Lecca, Maria Letizia Trincavelli, Paolo Gelosa, Luigi Sironi, Paolo Ciana, Marta Fumagalli, Giovanni Villa, Claudia Verderio, Carlotta Grumelli, Uliano Guerrini, Elena Tremoli, Patrizia Rosa, Serena Cuboni, Claudia Martini, Annalisa Buffo, Mauro Cimino, Maria P Abbracchio
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2008-01-01
Series:PLoS ONE
Online Access:https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/18974869/pdf/?tool=EBI
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spelling doaj-1163d58748934d4a8a272206d828180c2021-03-03T22:44:37ZengPublic Library of Science (PLoS)PLoS ONE1932-62032008-01-01310e357910.1371/journal.pone.0003579The recently identified P2Y-like receptor GPR17 is a sensor of brain damage and a new target for brain repair.Davide LeccaMaria Letizia TrincavelliPaolo GelosaLuigi SironiPaolo CianaMarta FumagalliGiovanni VillaClaudia VerderioCarlotta GrumelliUliano GuerriniElena TremoliPatrizia RosaSerena CuboniClaudia MartiniAnnalisa BuffoMauro CiminoMaria P AbbracchioDeciphering the mechanisms regulating the generation of new neurons and new oligodendrocytes, the myelinating cells of the central nervous system, is of paramount importance to address new strategies to replace endogenous damaged cells in the adult brain and foster repair in neurodegenerative diseases. Upon brain injury, the extracellular concentrations of nucleotides and cysteinyl-leukotrienes (cysLTs), two families of endogenous signaling molecules, are markedly increased at the site of damage, suggesting that they may act as "danger signals" to alert responses to tissue damage and start repair. Here we show that, in brain telencephalon, GPR17, a recently deorphanized receptor for both uracil nucleotides and cysLTs (e.g., UDP-glucose and LTD(4)), is normally present on neurons and on a subset of parenchymal quiescent oligodendrocyte precursor cells. We also show that induction of brain injury using an established focal ischemia model in the rodent induces profound spatiotemporal-dependent changes of GPR17. In the lesioned area, we observed an early and transient up-regulation of GPR17 in neurons expressing the cellular stress marker heat shock protein 70. Magnetic Resonance Imaging in living mice showed that the in vivo pharmacological or biotechnological knock down of GPR17 markedly prevents brain infarct evolution, suggesting GPR17 as a mediator of neuronal death at this early ischemic stage. At later times after ischemia, GPR17 immuno-labeling appeared on microglia/macrophages infiltrating the lesioned area to indicate that GPR17 may also acts as a player in the remodeling of brain circuitries by microglia. At this later stage, parenchymal GPR17+ oligodendrocyte progenitors started proliferating in the peri-injured area, suggesting initiation of remyelination. To confirm a specific role for GPR17 in oligodendrocyte differentiation, the in vitro exposure of cortical pre-oligodendrocytes to the GPR17 endogenous ligands UDP-glucose and LTD(4) promoted the expression of myelin basic protein, confirming progression toward mature oligodendrocytes. Thus, GPR17 may act as a "sensor" that is activated upon brain injury on several embryonically distinct cell types, and may play a key role in both inducing neuronal death inside the ischemic core and in orchestrating the local remodeling/repair response. Specifically, we suggest GPR17 as a novel target for therapeutic manipulation to foster repair of demyelinating wounds, the types of lesions that also occur in patients with multiple sclerosis.https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/18974869/pdf/?tool=EBI
collection DOAJ
language English
format Article
sources DOAJ
author Davide Lecca
Maria Letizia Trincavelli
Paolo Gelosa
Luigi Sironi
Paolo Ciana
Marta Fumagalli
Giovanni Villa
Claudia Verderio
Carlotta Grumelli
Uliano Guerrini
Elena Tremoli
Patrizia Rosa
Serena Cuboni
Claudia Martini
Annalisa Buffo
Mauro Cimino
Maria P Abbracchio
spellingShingle Davide Lecca
Maria Letizia Trincavelli
Paolo Gelosa
Luigi Sironi
Paolo Ciana
Marta Fumagalli
Giovanni Villa
Claudia Verderio
Carlotta Grumelli
Uliano Guerrini
Elena Tremoli
Patrizia Rosa
Serena Cuboni
Claudia Martini
Annalisa Buffo
Mauro Cimino
Maria P Abbracchio
The recently identified P2Y-like receptor GPR17 is a sensor of brain damage and a new target for brain repair.
PLoS ONE
author_facet Davide Lecca
Maria Letizia Trincavelli
Paolo Gelosa
Luigi Sironi
Paolo Ciana
Marta Fumagalli
Giovanni Villa
Claudia Verderio
Carlotta Grumelli
Uliano Guerrini
Elena Tremoli
Patrizia Rosa
Serena Cuboni
Claudia Martini
Annalisa Buffo
Mauro Cimino
Maria P Abbracchio
author_sort Davide Lecca
title The recently identified P2Y-like receptor GPR17 is a sensor of brain damage and a new target for brain repair.
title_short The recently identified P2Y-like receptor GPR17 is a sensor of brain damage and a new target for brain repair.
title_full The recently identified P2Y-like receptor GPR17 is a sensor of brain damage and a new target for brain repair.
title_fullStr The recently identified P2Y-like receptor GPR17 is a sensor of brain damage and a new target for brain repair.
title_full_unstemmed The recently identified P2Y-like receptor GPR17 is a sensor of brain damage and a new target for brain repair.
title_sort recently identified p2y-like receptor gpr17 is a sensor of brain damage and a new target for brain repair.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2008-01-01
description Deciphering the mechanisms regulating the generation of new neurons and new oligodendrocytes, the myelinating cells of the central nervous system, is of paramount importance to address new strategies to replace endogenous damaged cells in the adult brain and foster repair in neurodegenerative diseases. Upon brain injury, the extracellular concentrations of nucleotides and cysteinyl-leukotrienes (cysLTs), two families of endogenous signaling molecules, are markedly increased at the site of damage, suggesting that they may act as "danger signals" to alert responses to tissue damage and start repair. Here we show that, in brain telencephalon, GPR17, a recently deorphanized receptor for both uracil nucleotides and cysLTs (e.g., UDP-glucose and LTD(4)), is normally present on neurons and on a subset of parenchymal quiescent oligodendrocyte precursor cells. We also show that induction of brain injury using an established focal ischemia model in the rodent induces profound spatiotemporal-dependent changes of GPR17. In the lesioned area, we observed an early and transient up-regulation of GPR17 in neurons expressing the cellular stress marker heat shock protein 70. Magnetic Resonance Imaging in living mice showed that the in vivo pharmacological or biotechnological knock down of GPR17 markedly prevents brain infarct evolution, suggesting GPR17 as a mediator of neuronal death at this early ischemic stage. At later times after ischemia, GPR17 immuno-labeling appeared on microglia/macrophages infiltrating the lesioned area to indicate that GPR17 may also acts as a player in the remodeling of brain circuitries by microglia. At this later stage, parenchymal GPR17+ oligodendrocyte progenitors started proliferating in the peri-injured area, suggesting initiation of remyelination. To confirm a specific role for GPR17 in oligodendrocyte differentiation, the in vitro exposure of cortical pre-oligodendrocytes to the GPR17 endogenous ligands UDP-glucose and LTD(4) promoted the expression of myelin basic protein, confirming progression toward mature oligodendrocytes. Thus, GPR17 may act as a "sensor" that is activated upon brain injury on several embryonically distinct cell types, and may play a key role in both inducing neuronal death inside the ischemic core and in orchestrating the local remodeling/repair response. Specifically, we suggest GPR17 as a novel target for therapeutic manipulation to foster repair of demyelinating wounds, the types of lesions that also occur in patients with multiple sclerosis.
url https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/18974869/pdf/?tool=EBI
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