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LRRC8A is dispensable for a variety of microglial functions and response to acute stroke

Microglia, resident brain immune cells, are critical in orchestrating responses to central nervous system (CNS) injury. Many microglial functions, such as phagocytosis, motility and chemotaxis, are suggested to rely on chloride channels, including the volume‐regulated anion channel (VRAC), but studi...

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Autores principales: Cook, James R., Gray, Anna L., Lemarchand, Eloise, Schiessl, Ingo, Green, Jack P., Newland, Mary C., Dyer, Douglas P., Brough, David, Lawrence, Catherine B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9304177/
https://www.ncbi.nlm.nih.gov/pubmed/35150591
http://dx.doi.org/10.1002/glia.24156
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author Cook, James R.
Gray, Anna L.
Lemarchand, Eloise
Schiessl, Ingo
Green, Jack P.
Newland, Mary C.
Dyer, Douglas P.
Brough, David
Lawrence, Catherine B.
author_facet Cook, James R.
Gray, Anna L.
Lemarchand, Eloise
Schiessl, Ingo
Green, Jack P.
Newland, Mary C.
Dyer, Douglas P.
Brough, David
Lawrence, Catherine B.
author_sort Cook, James R.
collection PubMed
description Microglia, resident brain immune cells, are critical in orchestrating responses to central nervous system (CNS) injury. Many microglial functions, such as phagocytosis, motility and chemotaxis, are suggested to rely on chloride channels, including the volume‐regulated anion channel (VRAC), but studies to date have relied on the use of pharmacological tools with limited specificity. VRAC has also been proposed as a drug target for acute CNS injury, and its role in microglial function is of considerable interest for developing CNS therapeutics. This study aimed to definitively confirm the contribution of VRAC in microglia function by using conditional LRRC8A‐knockout mice, which lacked the essential VRAC subunit LRRC8A in microglia. We demonstrated that while VRAC contributed to cell volume regulation, it had no effect on phagocytic activity, cell migration or P2YR12‐dependent chemotaxis. Moreover, loss of microglial VRAC did not affect microglial morphology or the extent of ischemic damage following stroke. We conclude that VRAC does not critically regulate microglial responses to brain injury and could be targetable in other CNS cell types (e.g., astrocytes) without impeding microglial function. Our results also demonstrate a role for VRAC in cell volume regulation but show that VRAC is not involved in several major cellular functions that it was previously thought to regulate, and point to other, alternative mechanisms of chloride transport in innate immunity.
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spelling pubmed-93041772022-07-28 LRRC8A is dispensable for a variety of microglial functions and response to acute stroke Cook, James R. Gray, Anna L. Lemarchand, Eloise Schiessl, Ingo Green, Jack P. Newland, Mary C. Dyer, Douglas P. Brough, David Lawrence, Catherine B. Glia Research Articles Microglia, resident brain immune cells, are critical in orchestrating responses to central nervous system (CNS) injury. Many microglial functions, such as phagocytosis, motility and chemotaxis, are suggested to rely on chloride channels, including the volume‐regulated anion channel (VRAC), but studies to date have relied on the use of pharmacological tools with limited specificity. VRAC has also been proposed as a drug target for acute CNS injury, and its role in microglial function is of considerable interest for developing CNS therapeutics. This study aimed to definitively confirm the contribution of VRAC in microglia function by using conditional LRRC8A‐knockout mice, which lacked the essential VRAC subunit LRRC8A in microglia. We demonstrated that while VRAC contributed to cell volume regulation, it had no effect on phagocytic activity, cell migration or P2YR12‐dependent chemotaxis. Moreover, loss of microglial VRAC did not affect microglial morphology or the extent of ischemic damage following stroke. We conclude that VRAC does not critically regulate microglial responses to brain injury and could be targetable in other CNS cell types (e.g., astrocytes) without impeding microglial function. Our results also demonstrate a role for VRAC in cell volume regulation but show that VRAC is not involved in several major cellular functions that it was previously thought to regulate, and point to other, alternative mechanisms of chloride transport in innate immunity. John Wiley & Sons, Inc. 2022-02-12 2022-06 /pmc/articles/PMC9304177/ /pubmed/35150591 http://dx.doi.org/10.1002/glia.24156 Text en © 2022 The Authors. GLIA published by Wiley Periodicals LLC. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Cook, James R.
Gray, Anna L.
Lemarchand, Eloise
Schiessl, Ingo
Green, Jack P.
Newland, Mary C.
Dyer, Douglas P.
Brough, David
Lawrence, Catherine B.
LRRC8A is dispensable for a variety of microglial functions and response to acute stroke
title LRRC8A is dispensable for a variety of microglial functions and response to acute stroke
title_full LRRC8A is dispensable for a variety of microglial functions and response to acute stroke
title_fullStr LRRC8A is dispensable for a variety of microglial functions and response to acute stroke
title_full_unstemmed LRRC8A is dispensable for a variety of microglial functions and response to acute stroke
title_short LRRC8A is dispensable for a variety of microglial functions and response to acute stroke
title_sort lrrc8a is dispensable for a variety of microglial functions and response to acute stroke
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9304177/
https://www.ncbi.nlm.nih.gov/pubmed/35150591
http://dx.doi.org/10.1002/glia.24156
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