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Mitochondrial complex I subunit deficiency promotes pancreatic α-cell proliferation

OBJECTIVE: There is strong evidence that mitochondrial DNA mutations and mitochondrial dysfunction play a role in diabetes pathogenesis. The homozygous knock-in mtDNA mutator mouse is a model of premature aging due to the accumulation of mitochondrial DNA mutations. We used this mouse model to inves...

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Autores principales: Yu, Xuefei, Arden, Catherine, Berlinguer-Palmini, Rolando, Chen, Chun, Bradshaw, Carla, Smith, Anna LM, Whitehall, Julia, White, Michael, Anderson, Scott, Kattner, Nicole, Shaw, James, Turnbull, Doug, Greaves, Laura C, Walker, Mark
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9046450/
https://www.ncbi.nlm.nih.gov/pubmed/35390502
http://dx.doi.org/10.1016/j.molmet.2022.101489
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author Yu, Xuefei
Arden, Catherine
Berlinguer-Palmini, Rolando
Chen, Chun
Bradshaw, Carla
Smith, Anna LM
Whitehall, Julia
White, Michael
Anderson, Scott
Kattner, Nicole
Shaw, James
Turnbull, Doug
Greaves, Laura C
Walker, Mark
author_facet Yu, Xuefei
Arden, Catherine
Berlinguer-Palmini, Rolando
Chen, Chun
Bradshaw, Carla
Smith, Anna LM
Whitehall, Julia
White, Michael
Anderson, Scott
Kattner, Nicole
Shaw, James
Turnbull, Doug
Greaves, Laura C
Walker, Mark
author_sort Yu, Xuefei
collection PubMed
description OBJECTIVE: There is strong evidence that mitochondrial DNA mutations and mitochondrial dysfunction play a role in diabetes pathogenesis. The homozygous knock-in mtDNA mutator mouse is a model of premature aging due to the accumulation of mitochondrial DNA mutations. We used this mouse model to investigate the relationship between mitochondrial subunit expression and pancreatic islet cell composition. METHODS: Quadruple immunofluorescence was used to quantify mitochondrial subunit expression (complex I and IV) and cell composition in pancreatic islets from mitochondrial DNA mutator mice (PolgA(mut/mut)) and control C57BL/6 mice at 12 and 44 weeks of age. RESULTS: Mitochondrial complex I subunit expression was decreased in islets from 12 week PolgA(mut/mut) mice. This complex I deficiency persisted with age and was associated with decreased insulin staining intensity at 44 weeks. Complex I deficiency was greater in α-cells compared with β-cells in islets from 44 week PolgA(mut/mut) mice. Islet cell composition was normal in 12 week PolgA(mut/mut) mice, but the β: α cell ratio was decreased in islets from 44 week PolgA(mut/mut) mice. This was due to an increase in α-cell number linked to an increase in α-cell proliferation. CONCLUSION: Complex I deficiency promotes α-cell proliferation and alters islet cell composition.
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spelling pubmed-90464502022-04-29 Mitochondrial complex I subunit deficiency promotes pancreatic α-cell proliferation Yu, Xuefei Arden, Catherine Berlinguer-Palmini, Rolando Chen, Chun Bradshaw, Carla Smith, Anna LM Whitehall, Julia White, Michael Anderson, Scott Kattner, Nicole Shaw, James Turnbull, Doug Greaves, Laura C Walker, Mark Mol Metab Original Article OBJECTIVE: There is strong evidence that mitochondrial DNA mutations and mitochondrial dysfunction play a role in diabetes pathogenesis. The homozygous knock-in mtDNA mutator mouse is a model of premature aging due to the accumulation of mitochondrial DNA mutations. We used this mouse model to investigate the relationship between mitochondrial subunit expression and pancreatic islet cell composition. METHODS: Quadruple immunofluorescence was used to quantify mitochondrial subunit expression (complex I and IV) and cell composition in pancreatic islets from mitochondrial DNA mutator mice (PolgA(mut/mut)) and control C57BL/6 mice at 12 and 44 weeks of age. RESULTS: Mitochondrial complex I subunit expression was decreased in islets from 12 week PolgA(mut/mut) mice. This complex I deficiency persisted with age and was associated with decreased insulin staining intensity at 44 weeks. Complex I deficiency was greater in α-cells compared with β-cells in islets from 44 week PolgA(mut/mut) mice. Islet cell composition was normal in 12 week PolgA(mut/mut) mice, but the β: α cell ratio was decreased in islets from 44 week PolgA(mut/mut) mice. This was due to an increase in α-cell number linked to an increase in α-cell proliferation. CONCLUSION: Complex I deficiency promotes α-cell proliferation and alters islet cell composition. Elsevier 2022-04-04 /pmc/articles/PMC9046450/ /pubmed/35390502 http://dx.doi.org/10.1016/j.molmet.2022.101489 Text en © 2022 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Original Article
Yu, Xuefei
Arden, Catherine
Berlinguer-Palmini, Rolando
Chen, Chun
Bradshaw, Carla
Smith, Anna LM
Whitehall, Julia
White, Michael
Anderson, Scott
Kattner, Nicole
Shaw, James
Turnbull, Doug
Greaves, Laura C
Walker, Mark
Mitochondrial complex I subunit deficiency promotes pancreatic α-cell proliferation
title Mitochondrial complex I subunit deficiency promotes pancreatic α-cell proliferation
title_full Mitochondrial complex I subunit deficiency promotes pancreatic α-cell proliferation
title_fullStr Mitochondrial complex I subunit deficiency promotes pancreatic α-cell proliferation
title_full_unstemmed Mitochondrial complex I subunit deficiency promotes pancreatic α-cell proliferation
title_short Mitochondrial complex I subunit deficiency promotes pancreatic α-cell proliferation
title_sort mitochondrial complex i subunit deficiency promotes pancreatic α-cell proliferation
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9046450/
https://www.ncbi.nlm.nih.gov/pubmed/35390502
http://dx.doi.org/10.1016/j.molmet.2022.101489
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