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The human batokine EPDR1 regulates β-cell metabolism and function

OBJECTIVE: Ependymin-Related Protein 1 (EPDR1) was recently identified as a secreted human batokine regulating mitochondrial respiration linked to thermogenesis in brown fat. Despite that EPDR1 is expressed in human pancreatic β-cells and that glucose-stimulated mitochondrial metabolism is critical...

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Autores principales: Cataldo, Luis Rodrigo, Gao, Qian, Argemi-Muntadas, Lidia, Hodek, Ondrej, Cowan, Elaine, Hladkou, Sergey, Gheibi, Sevda, Spégel, Peter, Prasad, Rashmi B., Eliasson, Lena, Scheele, Camilla, Fex, Malin, Mulder, Hindrik, Moritz, Thomas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9663883/
https://www.ncbi.nlm.nih.gov/pubmed/36343918
http://dx.doi.org/10.1016/j.molmet.2022.101629
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author Cataldo, Luis Rodrigo
Gao, Qian
Argemi-Muntadas, Lidia
Hodek, Ondrej
Cowan, Elaine
Hladkou, Sergey
Gheibi, Sevda
Spégel, Peter
Prasad, Rashmi B.
Eliasson, Lena
Scheele, Camilla
Fex, Malin
Mulder, Hindrik
Moritz, Thomas
author_facet Cataldo, Luis Rodrigo
Gao, Qian
Argemi-Muntadas, Lidia
Hodek, Ondrej
Cowan, Elaine
Hladkou, Sergey
Gheibi, Sevda
Spégel, Peter
Prasad, Rashmi B.
Eliasson, Lena
Scheele, Camilla
Fex, Malin
Mulder, Hindrik
Moritz, Thomas
author_sort Cataldo, Luis Rodrigo
collection PubMed
description OBJECTIVE: Ependymin-Related Protein 1 (EPDR1) was recently identified as a secreted human batokine regulating mitochondrial respiration linked to thermogenesis in brown fat. Despite that EPDR1 is expressed in human pancreatic β-cells and that glucose-stimulated mitochondrial metabolism is critical for stimulus-secretion coupling in β-cells, the role of EPDR1 in β-cell metabolism and function has not been investigated. METHODS: EPDR1 mRNA levels in human pancreatic islets from non-diabetic (ND) and type 2 diabetes (T2D) subjects were assessed. Human islets, EndoC-βH1 and INS1 832/13 cells were transfected with scramble (control) and EPDR1 siRNAs (EPDR1-KD) or treated with human EPDR1 protein, and glucose-stimulated insulin secretion (GSIS) assessed by ELISA. Mitochondrial metabolism was investigated by extracellular flux analyzer, confocal microscopy and mass spectrometry-based metabolomics analysis. RESULTS: EPDR1 mRNA expression was upregulated in human islets from T2D and obese donors and positively correlated to BMI of donors. In T2D donors, EPDR1 mRNA levels negatively correlated with HbA1c and positively correlated with GSIS. EPDR1 silencing in human islets and β-cell lines reduced GSIS whereas treatment with human EPDR1 protein increased GSIS. Epdr1 silencing in INS1 832/13 cells reduced glucose- and pyruvate- but not K(+)-stimulated insulin secretion. Metabolomics analysis in Epdr1-KD INS1 832/13 cells suggests diversion of glucose-derived pyruvate to lactate production and decreased malate-aspartate shuttle and the tricarboxylic acid (TCA) cycle activity. The glucose-stimulated rise in mitochondrial respiration and ATP/ADP-ratio was impaired in Epdr1-deficient cells. CONCLUSION: These results suggests that to maintain glucose homeostasis in obese people, upregulation of EPDR1 may improve β-cell function via channelling glycolysis-derived pyruvate to the mitochondrial TCA cycle.
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spelling pubmed-96638832022-11-15 The human batokine EPDR1 regulates β-cell metabolism and function Cataldo, Luis Rodrigo Gao, Qian Argemi-Muntadas, Lidia Hodek, Ondrej Cowan, Elaine Hladkou, Sergey Gheibi, Sevda Spégel, Peter Prasad, Rashmi B. Eliasson, Lena Scheele, Camilla Fex, Malin Mulder, Hindrik Moritz, Thomas Mol Metab Original Article OBJECTIVE: Ependymin-Related Protein 1 (EPDR1) was recently identified as a secreted human batokine regulating mitochondrial respiration linked to thermogenesis in brown fat. Despite that EPDR1 is expressed in human pancreatic β-cells and that glucose-stimulated mitochondrial metabolism is critical for stimulus-secretion coupling in β-cells, the role of EPDR1 in β-cell metabolism and function has not been investigated. METHODS: EPDR1 mRNA levels in human pancreatic islets from non-diabetic (ND) and type 2 diabetes (T2D) subjects were assessed. Human islets, EndoC-βH1 and INS1 832/13 cells were transfected with scramble (control) and EPDR1 siRNAs (EPDR1-KD) or treated with human EPDR1 protein, and glucose-stimulated insulin secretion (GSIS) assessed by ELISA. Mitochondrial metabolism was investigated by extracellular flux analyzer, confocal microscopy and mass spectrometry-based metabolomics analysis. RESULTS: EPDR1 mRNA expression was upregulated in human islets from T2D and obese donors and positively correlated to BMI of donors. In T2D donors, EPDR1 mRNA levels negatively correlated with HbA1c and positively correlated with GSIS. EPDR1 silencing in human islets and β-cell lines reduced GSIS whereas treatment with human EPDR1 protein increased GSIS. Epdr1 silencing in INS1 832/13 cells reduced glucose- and pyruvate- but not K(+)-stimulated insulin secretion. Metabolomics analysis in Epdr1-KD INS1 832/13 cells suggests diversion of glucose-derived pyruvate to lactate production and decreased malate-aspartate shuttle and the tricarboxylic acid (TCA) cycle activity. The glucose-stimulated rise in mitochondrial respiration and ATP/ADP-ratio was impaired in Epdr1-deficient cells. CONCLUSION: These results suggests that to maintain glucose homeostasis in obese people, upregulation of EPDR1 may improve β-cell function via channelling glycolysis-derived pyruvate to the mitochondrial TCA cycle. Elsevier 2022-11-05 /pmc/articles/PMC9663883/ /pubmed/36343918 http://dx.doi.org/10.1016/j.molmet.2022.101629 Text en © 2022 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Cataldo, Luis Rodrigo
Gao, Qian
Argemi-Muntadas, Lidia
Hodek, Ondrej
Cowan, Elaine
Hladkou, Sergey
Gheibi, Sevda
Spégel, Peter
Prasad, Rashmi B.
Eliasson, Lena
Scheele, Camilla
Fex, Malin
Mulder, Hindrik
Moritz, Thomas
The human batokine EPDR1 regulates β-cell metabolism and function
title The human batokine EPDR1 regulates β-cell metabolism and function
title_full The human batokine EPDR1 regulates β-cell metabolism and function
title_fullStr The human batokine EPDR1 regulates β-cell metabolism and function
title_full_unstemmed The human batokine EPDR1 regulates β-cell metabolism and function
title_short The human batokine EPDR1 regulates β-cell metabolism and function
title_sort human batokine epdr1 regulates β-cell metabolism and function
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9663883/
https://www.ncbi.nlm.nih.gov/pubmed/36343918
http://dx.doi.org/10.1016/j.molmet.2022.101629
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