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Ubiquitin Proteasome System Role in Diabetes-Induced Cardiomyopathy

This study investigated modifications to the ubiquitin proteasome system (UPS) in a mouse model of type 2 diabetes mellitus (T2DM) and their relationship to heart complications. db/db mice heart tissues were compared with WT mice tissues using RNA sequencing, qRT-PCR, and protein analysis to identif...

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Autores principales: Nahum-Ankonina, Ortal, Kurtzwald-Josefson, Efrat, Ciechanover, Aaron, Waldman, Maayan, Shwartz-Rohaker, Orna, Hochhauser, Edith, Meyer, Sam J., Aravot, Dan, Phillip, Moshe, Barac, Yaron D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10607702/
https://www.ncbi.nlm.nih.gov/pubmed/37895057
http://dx.doi.org/10.3390/ijms242015376
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author Nahum-Ankonina, Ortal
Kurtzwald-Josefson, Efrat
Ciechanover, Aaron
Waldman, Maayan
Shwartz-Rohaker, Orna
Hochhauser, Edith
Meyer, Sam J.
Aravot, Dan
Phillip, Moshe
Barac, Yaron D.
author_facet Nahum-Ankonina, Ortal
Kurtzwald-Josefson, Efrat
Ciechanover, Aaron
Waldman, Maayan
Shwartz-Rohaker, Orna
Hochhauser, Edith
Meyer, Sam J.
Aravot, Dan
Phillip, Moshe
Barac, Yaron D.
author_sort Nahum-Ankonina, Ortal
collection PubMed
description This study investigated modifications to the ubiquitin proteasome system (UPS) in a mouse model of type 2 diabetes mellitus (T2DM) and their relationship to heart complications. db/db mice heart tissues were compared with WT mice tissues using RNA sequencing, qRT-PCR, and protein analysis to identify cardiac UPS modifications associated with diabetes. The findings unveiled a distinctive gene profile in the hearts of db/db mice with decreased levels of nppb mRNA and increased levels of Myh7, indicating potential cardiac dysfunction. The mRNA levels of USP18 (deubiquitinating enzyme), PSMB8, and PSMB9 (proteasome β-subunits) were down-regulated in db/db mice, while the mRNA levels of RNF167 (E3 ligase) were increased. Corresponding LMP2 and LMP7 proteins were down-regulated in db/db mice, and RNF167 was elevated in Adult diabetic mice. The reduced expression of LMP2 and LMP7, along with increased RNF167 expression, may contribute to the future cardiac deterioration commonly observed in diabetes. This study enhances our understanding of UPS imbalances in the hearts of diabetic mice and raises questions about the interplay between the UPS and other cellular processes, such as autophagy. Further exploration in this area could provide valuable insights into the mechanisms underlying diabetic heart complications and potential therapeutic targets.
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spelling pubmed-106077022023-10-28 Ubiquitin Proteasome System Role in Diabetes-Induced Cardiomyopathy Nahum-Ankonina, Ortal Kurtzwald-Josefson, Efrat Ciechanover, Aaron Waldman, Maayan Shwartz-Rohaker, Orna Hochhauser, Edith Meyer, Sam J. Aravot, Dan Phillip, Moshe Barac, Yaron D. Int J Mol Sci Article This study investigated modifications to the ubiquitin proteasome system (UPS) in a mouse model of type 2 diabetes mellitus (T2DM) and their relationship to heart complications. db/db mice heart tissues were compared with WT mice tissues using RNA sequencing, qRT-PCR, and protein analysis to identify cardiac UPS modifications associated with diabetes. The findings unveiled a distinctive gene profile in the hearts of db/db mice with decreased levels of nppb mRNA and increased levels of Myh7, indicating potential cardiac dysfunction. The mRNA levels of USP18 (deubiquitinating enzyme), PSMB8, and PSMB9 (proteasome β-subunits) were down-regulated in db/db mice, while the mRNA levels of RNF167 (E3 ligase) were increased. Corresponding LMP2 and LMP7 proteins were down-regulated in db/db mice, and RNF167 was elevated in Adult diabetic mice. The reduced expression of LMP2 and LMP7, along with increased RNF167 expression, may contribute to the future cardiac deterioration commonly observed in diabetes. This study enhances our understanding of UPS imbalances in the hearts of diabetic mice and raises questions about the interplay between the UPS and other cellular processes, such as autophagy. Further exploration in this area could provide valuable insights into the mechanisms underlying diabetic heart complications and potential therapeutic targets. MDPI 2023-10-19 /pmc/articles/PMC10607702/ /pubmed/37895057 http://dx.doi.org/10.3390/ijms242015376 Text en © 2023 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
Nahum-Ankonina, Ortal
Kurtzwald-Josefson, Efrat
Ciechanover, Aaron
Waldman, Maayan
Shwartz-Rohaker, Orna
Hochhauser, Edith
Meyer, Sam J.
Aravot, Dan
Phillip, Moshe
Barac, Yaron D.
Ubiquitin Proteasome System Role in Diabetes-Induced Cardiomyopathy
title Ubiquitin Proteasome System Role in Diabetes-Induced Cardiomyopathy
title_full Ubiquitin Proteasome System Role in Diabetes-Induced Cardiomyopathy
title_fullStr Ubiquitin Proteasome System Role in Diabetes-Induced Cardiomyopathy
title_full_unstemmed Ubiquitin Proteasome System Role in Diabetes-Induced Cardiomyopathy
title_short Ubiquitin Proteasome System Role in Diabetes-Induced Cardiomyopathy
title_sort ubiquitin proteasome system role in diabetes-induced cardiomyopathy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10607702/
https://www.ncbi.nlm.nih.gov/pubmed/37895057
http://dx.doi.org/10.3390/ijms242015376
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