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The Activation of GPR27 Increases Cytosolic L-Lactate in 3T3 Embryonic Cells and Astrocytes

G-protein-coupled receptors (GPCRs) represent a family with over 800 members in humans, and one-third of these are targets for approved drugs. A large number of GPCRs have unknown physiologic roles. Here, we investigated GPR27, an orphan GPCR belonging to the family of super conserved receptor expre...

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Autores principales: Dolanc, Dorian, Zorec, Tomaž M., Smole, Zala, Maver, Anja, Horvat, Anemari, Pillaiyar, Thanigaimalai, Trkov Bobnar, Saša, Vardjan, Nina, Kreft, Marko, Chowdhury, Helena Haque, Zorec, Robert
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8947442/
https://www.ncbi.nlm.nih.gov/pubmed/35326460
http://dx.doi.org/10.3390/cells11061009
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author Dolanc, Dorian
Zorec, Tomaž M.
Smole, Zala
Maver, Anja
Horvat, Anemari
Pillaiyar, Thanigaimalai
Trkov Bobnar, Saša
Vardjan, Nina
Kreft, Marko
Chowdhury, Helena Haque
Zorec, Robert
author_facet Dolanc, Dorian
Zorec, Tomaž M.
Smole, Zala
Maver, Anja
Horvat, Anemari
Pillaiyar, Thanigaimalai
Trkov Bobnar, Saša
Vardjan, Nina
Kreft, Marko
Chowdhury, Helena Haque
Zorec, Robert
author_sort Dolanc, Dorian
collection PubMed
description G-protein-coupled receptors (GPCRs) represent a family with over 800 members in humans, and one-third of these are targets for approved drugs. A large number of GPCRs have unknown physiologic roles. Here, we investigated GPR27, an orphan GPCR belonging to the family of super conserved receptor expressed in the brain, with unknown functions. Cytosolic levels of L-lactate ([lactate](i)), the end product of aerobic glycolysis, were measured with the Laconic fluorescence resonance energy transfer nanosensor. In single 3T3 wild-type (WT) embryonic cells, the application of 8535 (1 µM), a surrogate agonist known to activate GPR27, resulted in an increase in [lactate](i). Similarly, an increase was recorded in primary rat astrocytes, a type of neuroglial cell abundant in the brain, which contain glycogen and express enzymes of aerobic glycolysis. In CRISPR-Cas9 GPR27 knocked out 3T3 cells, the 8535-induced increase in [lactate](i) was reduced compared with WT controls. Transfection of the GPR27-carrying plasmid into the 3T3KOGPR27 cells rescued the 8535-induced increase in [lactate](i). These results indicate that stimulation of GPR27 enhances aerobic glycolysis and L-lactate production in 3T3 cells and astrocytes. Interestingly, in the absence of GPR27 in 3T3 cells, resting [lactate](i) was increased in comparison with controls, further supporting the view that GPR27 regulates L-lactate homeostasis.
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spelling pubmed-89474422022-03-25 The Activation of GPR27 Increases Cytosolic L-Lactate in 3T3 Embryonic Cells and Astrocytes Dolanc, Dorian Zorec, Tomaž M. Smole, Zala Maver, Anja Horvat, Anemari Pillaiyar, Thanigaimalai Trkov Bobnar, Saša Vardjan, Nina Kreft, Marko Chowdhury, Helena Haque Zorec, Robert Cells Article G-protein-coupled receptors (GPCRs) represent a family with over 800 members in humans, and one-third of these are targets for approved drugs. A large number of GPCRs have unknown physiologic roles. Here, we investigated GPR27, an orphan GPCR belonging to the family of super conserved receptor expressed in the brain, with unknown functions. Cytosolic levels of L-lactate ([lactate](i)), the end product of aerobic glycolysis, were measured with the Laconic fluorescence resonance energy transfer nanosensor. In single 3T3 wild-type (WT) embryonic cells, the application of 8535 (1 µM), a surrogate agonist known to activate GPR27, resulted in an increase in [lactate](i). Similarly, an increase was recorded in primary rat astrocytes, a type of neuroglial cell abundant in the brain, which contain glycogen and express enzymes of aerobic glycolysis. In CRISPR-Cas9 GPR27 knocked out 3T3 cells, the 8535-induced increase in [lactate](i) was reduced compared with WT controls. Transfection of the GPR27-carrying plasmid into the 3T3KOGPR27 cells rescued the 8535-induced increase in [lactate](i). These results indicate that stimulation of GPR27 enhances aerobic glycolysis and L-lactate production in 3T3 cells and astrocytes. Interestingly, in the absence of GPR27 in 3T3 cells, resting [lactate](i) was increased in comparison with controls, further supporting the view that GPR27 regulates L-lactate homeostasis. MDPI 2022-03-16 /pmc/articles/PMC8947442/ /pubmed/35326460 http://dx.doi.org/10.3390/cells11061009 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Dolanc, Dorian
Zorec, Tomaž M.
Smole, Zala
Maver, Anja
Horvat, Anemari
Pillaiyar, Thanigaimalai
Trkov Bobnar, Saša
Vardjan, Nina
Kreft, Marko
Chowdhury, Helena Haque
Zorec, Robert
The Activation of GPR27 Increases Cytosolic L-Lactate in 3T3 Embryonic Cells and Astrocytes
title The Activation of GPR27 Increases Cytosolic L-Lactate in 3T3 Embryonic Cells and Astrocytes
title_full The Activation of GPR27 Increases Cytosolic L-Lactate in 3T3 Embryonic Cells and Astrocytes
title_fullStr The Activation of GPR27 Increases Cytosolic L-Lactate in 3T3 Embryonic Cells and Astrocytes
title_full_unstemmed The Activation of GPR27 Increases Cytosolic L-Lactate in 3T3 Embryonic Cells and Astrocytes
title_short The Activation of GPR27 Increases Cytosolic L-Lactate in 3T3 Embryonic Cells and Astrocytes
title_sort activation of gpr27 increases cytosolic l-lactate in 3t3 embryonic cells and astrocytes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8947442/
https://www.ncbi.nlm.nih.gov/pubmed/35326460
http://dx.doi.org/10.3390/cells11061009
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