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Plasma heat shock protein response to euglycemia in type 2 diabetes

INTRODUCTION: Glucose variability is associated with mortality and macrovascular diabetes complications. The mechanisms through which glucose variability mediates tissue damage are not well understood, although cellular oxidative stress is likely involved. As heat shock proteins (HSPs) play a role i...

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Autores principales: Atkin, Alexander S, Moin, Abu Saleh Md, Al-Qaissi, Ahmed, Sathyapalan, Thozhukat, Atkin, Stephen L, Butler, Alexandra E
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BMJ Publishing Group 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8061861/
https://www.ncbi.nlm.nih.gov/pubmed/33879515
http://dx.doi.org/10.1136/bmjdrc-2020-002057
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author Atkin, Alexander S
Moin, Abu Saleh Md
Al-Qaissi, Ahmed
Sathyapalan, Thozhukat
Atkin, Stephen L
Butler, Alexandra E
author_facet Atkin, Alexander S
Moin, Abu Saleh Md
Al-Qaissi, Ahmed
Sathyapalan, Thozhukat
Atkin, Stephen L
Butler, Alexandra E
author_sort Atkin, Alexander S
collection PubMed
description INTRODUCTION: Glucose variability is associated with mortality and macrovascular diabetes complications. The mechanisms through which glucose variability mediates tissue damage are not well understood, although cellular oxidative stress is likely involved. As heat shock proteins (HSPs) play a role in the pathogenesis of type 2 diabetes (T2D) complications and are rapidly responsive, we hypothesized that HSP-related proteins (HSPRPs) would differ in diabetes and may respond to glucose normalization. RESEARCH DESIGN AND METHODS: A prospective, parallel study in T2D (n=23) and controls (n=23) was undertaken. T2D subjects underwent insulin-induced blood glucose normalization from baseline 7.6±0.4 mmol/L (136.8±7.2 mg/dL) to 4.5±0.07 mmol/L (81±1.2 mg/dL) for 1 hour. Control subjects were maintained at 4.9±0.1 mmol/L (88.2±1.8 mg/dL). Slow Off-rate Modified Aptamer-scan plasma protein measurement determined a panel of HSPRPs. RESULTS: At baseline, E3-ubiquitin-protein ligase (carboxyl-terminus of Hsc70 interacting protein (CHIP) or HSPABP2) was lower (p=0.03) and ubiquitin-conjugating enzyme E2G2 higher (p=0.003) in T2D versus controls. Following glucose normalization, DnaJ homolog subfamily B member 1 (DNAJB1 or HSP40) was reduced (p=0.02) in T2D, with HSP beta-1 (HSPB1) and HSP-70-1A (HSP70-1A) (p=0.07 and p=0.09, respectively) also approaching significance relative to T2D baseline levels. CONCLUSIONS: Key HSPRPs involved in critical protein interactions, CHIP and UBE2G2, were altered in diabetes at baseline. DNAJB1 fell in response to euglycemia, suggesting that HSPs are reacting to basal stress that could be mitigated by tight glucose control with reduction of glucose variability.
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spelling pubmed-80618612021-05-11 Plasma heat shock protein response to euglycemia in type 2 diabetes Atkin, Alexander S Moin, Abu Saleh Md Al-Qaissi, Ahmed Sathyapalan, Thozhukat Atkin, Stephen L Butler, Alexandra E BMJ Open Diabetes Res Care Pathophysiology/Complications INTRODUCTION: Glucose variability is associated with mortality and macrovascular diabetes complications. The mechanisms through which glucose variability mediates tissue damage are not well understood, although cellular oxidative stress is likely involved. As heat shock proteins (HSPs) play a role in the pathogenesis of type 2 diabetes (T2D) complications and are rapidly responsive, we hypothesized that HSP-related proteins (HSPRPs) would differ in diabetes and may respond to glucose normalization. RESEARCH DESIGN AND METHODS: A prospective, parallel study in T2D (n=23) and controls (n=23) was undertaken. T2D subjects underwent insulin-induced blood glucose normalization from baseline 7.6±0.4 mmol/L (136.8±7.2 mg/dL) to 4.5±0.07 mmol/L (81±1.2 mg/dL) for 1 hour. Control subjects were maintained at 4.9±0.1 mmol/L (88.2±1.8 mg/dL). Slow Off-rate Modified Aptamer-scan plasma protein measurement determined a panel of HSPRPs. RESULTS: At baseline, E3-ubiquitin-protein ligase (carboxyl-terminus of Hsc70 interacting protein (CHIP) or HSPABP2) was lower (p=0.03) and ubiquitin-conjugating enzyme E2G2 higher (p=0.003) in T2D versus controls. Following glucose normalization, DnaJ homolog subfamily B member 1 (DNAJB1 or HSP40) was reduced (p=0.02) in T2D, with HSP beta-1 (HSPB1) and HSP-70-1A (HSP70-1A) (p=0.07 and p=0.09, respectively) also approaching significance relative to T2D baseline levels. CONCLUSIONS: Key HSPRPs involved in critical protein interactions, CHIP and UBE2G2, were altered in diabetes at baseline. DNAJB1 fell in response to euglycemia, suggesting that HSPs are reacting to basal stress that could be mitigated by tight glucose control with reduction of glucose variability. BMJ Publishing Group 2021-04-20 /pmc/articles/PMC8061861/ /pubmed/33879515 http://dx.doi.org/10.1136/bmjdrc-2020-002057 Text en © Author(s) (or their employer(s)) 2021. Re-use permitted under CC BY-NC. No commercial re-use. See rights and permissions. Published by BMJ. https://creativecommons.org/licenses/by-nc/4.0/This is an open access article distributed in accordance with the Creative Commons Attribution Non Commercial (CC BY-NC 4.0) license, which permits others to distribute, remix, adapt, build upon this work non-commercially, and license their derivative works on different terms, provided the original work is properly cited, appropriate credit is given, any changes made indicated, and the use is non-commercial. See: http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) .
spellingShingle Pathophysiology/Complications
Atkin, Alexander S
Moin, Abu Saleh Md
Al-Qaissi, Ahmed
Sathyapalan, Thozhukat
Atkin, Stephen L
Butler, Alexandra E
Plasma heat shock protein response to euglycemia in type 2 diabetes
title Plasma heat shock protein response to euglycemia in type 2 diabetes
title_full Plasma heat shock protein response to euglycemia in type 2 diabetes
title_fullStr Plasma heat shock protein response to euglycemia in type 2 diabetes
title_full_unstemmed Plasma heat shock protein response to euglycemia in type 2 diabetes
title_short Plasma heat shock protein response to euglycemia in type 2 diabetes
title_sort plasma heat shock protein response to euglycemia in type 2 diabetes
topic Pathophysiology/Complications
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8061861/
https://www.ncbi.nlm.nih.gov/pubmed/33879515
http://dx.doi.org/10.1136/bmjdrc-2020-002057
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