Cargando…

Prokineticin 2 (PK2) Rescues Cardiomyocytes from High Glucose/High Palmitic Acid-Induced Damage by Regulating the AKT/GSK3β Pathway In Vitro

Prokineticin 2 (PK2) is a small 8 kDa protein that participates in many physiological processes, such as angiogenesis, inflammation, and neurogenesis. This experiment investigated the effect of PK2 on high glucose/high palmitic acid-induced oxidative stress, apoptosis, and autophagy in cardiomyocyte...

Descripción completa

Detalles Bibliográficos
Autores principales: Yang, Zhen, Wu, Yin, Wang, Linge, Qiu, Peng, Zha, Wenliang, Yu, Wei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7251470/
https://www.ncbi.nlm.nih.gov/pubmed/32509142
http://dx.doi.org/10.1155/2020/3163629
_version_ 1783538973626335232
author Yang, Zhen
Wu, Yin
Wang, Linge
Qiu, Peng
Zha, Wenliang
Yu, Wei
author_facet Yang, Zhen
Wu, Yin
Wang, Linge
Qiu, Peng
Zha, Wenliang
Yu, Wei
author_sort Yang, Zhen
collection PubMed
description Prokineticin 2 (PK2) is a small 8 kDa protein that participates in many physiological processes, such as angiogenesis, inflammation, and neurogenesis. This experiment investigated the effect of PK2 on high glucose/high palmitic acid-induced oxidative stress, apoptosis, and autophagy in cardiomyocytes and the AKT/GSK3β signalling pathway. H9c2 cells were exposed to normal and high concentrations (33 mM) of glucose and palmitic acid (150 μM) with or without PK2 (10 nM) for 48 h. Reactive oxygen species were detected using the fluorescent probes DCFH-DA and DHE. Changes in apoptosis were assessed using flow cytometry, and autophagosomes were detected using Ad-GFP-LC3. Apoptotic proteins, such as Cleaved Caspase3, Bax, and Bcl-2; autophagy proteins, including Beclin-1 and LC3B; and PK2/PKR/AKT/GSK3β signals were evaluated using western blotting. Cardiomyocytes exposed to high glucose/high palmitic acid exhibited increases in intracellular ROS, apoptosis, and autophagosomes, and these increases were robustly prevented by PK2. In addition, high glucose/high palmitic acid remarkably suppressed PK2, PKR1, and PKR2 expression and p-AKT/AKT and p-GSK3β/GSK3β ratios, and these effects were significantly prevented by PK2. Moreover, an AKT1/2 kinase inhibitor (AKT inhibitor, 10 μM) blocked the effects of PK2 on the changes in cardiomyocyte exposure to high glucose/high palmitic acid. These results suggest that PK2 attenuates high glucose/high palmitic acid-induced cardiomyocyte apoptosis by inhibiting oxidative stress and autophagosome accumulation and that this protective effect is most likely mediated by the AKT-related signalling pathway.
format Online
Article
Text
id pubmed-7251470
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Hindawi
record_format MEDLINE/PubMed
spelling pubmed-72514702020-06-06 Prokineticin 2 (PK2) Rescues Cardiomyocytes from High Glucose/High Palmitic Acid-Induced Damage by Regulating the AKT/GSK3β Pathway In Vitro Yang, Zhen Wu, Yin Wang, Linge Qiu, Peng Zha, Wenliang Yu, Wei Oxid Med Cell Longev Research Article Prokineticin 2 (PK2) is a small 8 kDa protein that participates in many physiological processes, such as angiogenesis, inflammation, and neurogenesis. This experiment investigated the effect of PK2 on high glucose/high palmitic acid-induced oxidative stress, apoptosis, and autophagy in cardiomyocytes and the AKT/GSK3β signalling pathway. H9c2 cells were exposed to normal and high concentrations (33 mM) of glucose and palmitic acid (150 μM) with or without PK2 (10 nM) for 48 h. Reactive oxygen species were detected using the fluorescent probes DCFH-DA and DHE. Changes in apoptosis were assessed using flow cytometry, and autophagosomes were detected using Ad-GFP-LC3. Apoptotic proteins, such as Cleaved Caspase3, Bax, and Bcl-2; autophagy proteins, including Beclin-1 and LC3B; and PK2/PKR/AKT/GSK3β signals were evaluated using western blotting. Cardiomyocytes exposed to high glucose/high palmitic acid exhibited increases in intracellular ROS, apoptosis, and autophagosomes, and these increases were robustly prevented by PK2. In addition, high glucose/high palmitic acid remarkably suppressed PK2, PKR1, and PKR2 expression and p-AKT/AKT and p-GSK3β/GSK3β ratios, and these effects were significantly prevented by PK2. Moreover, an AKT1/2 kinase inhibitor (AKT inhibitor, 10 μM) blocked the effects of PK2 on the changes in cardiomyocyte exposure to high glucose/high palmitic acid. These results suggest that PK2 attenuates high glucose/high palmitic acid-induced cardiomyocyte apoptosis by inhibiting oxidative stress and autophagosome accumulation and that this protective effect is most likely mediated by the AKT-related signalling pathway. Hindawi 2020-05-18 /pmc/articles/PMC7251470/ /pubmed/32509142 http://dx.doi.org/10.1155/2020/3163629 Text en Copyright © 2020 Zhen Yang et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Yang, Zhen
Wu, Yin
Wang, Linge
Qiu, Peng
Zha, Wenliang
Yu, Wei
Prokineticin 2 (PK2) Rescues Cardiomyocytes from High Glucose/High Palmitic Acid-Induced Damage by Regulating the AKT/GSK3β Pathway In Vitro
title Prokineticin 2 (PK2) Rescues Cardiomyocytes from High Glucose/High Palmitic Acid-Induced Damage by Regulating the AKT/GSK3β Pathway In Vitro
title_full Prokineticin 2 (PK2) Rescues Cardiomyocytes from High Glucose/High Palmitic Acid-Induced Damage by Regulating the AKT/GSK3β Pathway In Vitro
title_fullStr Prokineticin 2 (PK2) Rescues Cardiomyocytes from High Glucose/High Palmitic Acid-Induced Damage by Regulating the AKT/GSK3β Pathway In Vitro
title_full_unstemmed Prokineticin 2 (PK2) Rescues Cardiomyocytes from High Glucose/High Palmitic Acid-Induced Damage by Regulating the AKT/GSK3β Pathway In Vitro
title_short Prokineticin 2 (PK2) Rescues Cardiomyocytes from High Glucose/High Palmitic Acid-Induced Damage by Regulating the AKT/GSK3β Pathway In Vitro
title_sort prokineticin 2 (pk2) rescues cardiomyocytes from high glucose/high palmitic acid-induced damage by regulating the akt/gsk3β pathway in vitro
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7251470/
https://www.ncbi.nlm.nih.gov/pubmed/32509142
http://dx.doi.org/10.1155/2020/3163629
work_keys_str_mv AT yangzhen prokineticin2pk2rescuescardiomyocytesfromhighglucosehighpalmiticacidinduceddamagebyregulatingtheaktgsk3bpathwayinvitro
AT wuyin prokineticin2pk2rescuescardiomyocytesfromhighglucosehighpalmiticacidinduceddamagebyregulatingtheaktgsk3bpathwayinvitro
AT wanglinge prokineticin2pk2rescuescardiomyocytesfromhighglucosehighpalmiticacidinduceddamagebyregulatingtheaktgsk3bpathwayinvitro
AT qiupeng prokineticin2pk2rescuescardiomyocytesfromhighglucosehighpalmiticacidinduceddamagebyregulatingtheaktgsk3bpathwayinvitro
AT zhawenliang prokineticin2pk2rescuescardiomyocytesfromhighglucosehighpalmiticacidinduceddamagebyregulatingtheaktgsk3bpathwayinvitro
AT yuwei prokineticin2pk2rescuescardiomyocytesfromhighglucosehighpalmiticacidinduceddamagebyregulatingtheaktgsk3bpathwayinvitro