Cargando…

Melatonin ameliorates hypoglycemic stress‐induced brain endothelial tight junction injury by inhibiting protein nitration of TP53‐induced glycolysis and apoptosis regulator

Severe hypoglycemia has a detrimental impact on the cerebrovasculature, but the molecular events that lead to the disruption of the integrity of the tight junctions remain unclear. Here, we report that the microvessel integrity was dramatically compromised (59.41% of wild‐type mice) in TP53‐induced...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Cheng‐kun, Ahmed, Muhammad Masood, Jiang, Quan, Lu, Nan‐nan, Tan, Chao, Gao, Yin‐ping, Mahmood, Qaisar, Chen, Dan‐yang, Fukunaga, Kohji, Li, Mei, Chen, Zhong, Wilcox, Christopher S., Lu, Ying‐mei, Qin, Zheng‐hong, Han, Feng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5656838/
https://www.ncbi.nlm.nih.gov/pubmed/28776759
http://dx.doi.org/10.1111/jpi.12440
_version_ 1783273776187703296
author Wang, Cheng‐kun
Ahmed, Muhammad Masood
Jiang, Quan
Lu, Nan‐nan
Tan, Chao
Gao, Yin‐ping
Mahmood, Qaisar
Chen, Dan‐yang
Fukunaga, Kohji
Li, Mei
Chen, Zhong
Wilcox, Christopher S.
Lu, Ying‐mei
Qin, Zheng‐hong
Han, Feng
author_facet Wang, Cheng‐kun
Ahmed, Muhammad Masood
Jiang, Quan
Lu, Nan‐nan
Tan, Chao
Gao, Yin‐ping
Mahmood, Qaisar
Chen, Dan‐yang
Fukunaga, Kohji
Li, Mei
Chen, Zhong
Wilcox, Christopher S.
Lu, Ying‐mei
Qin, Zheng‐hong
Han, Feng
author_sort Wang, Cheng‐kun
collection PubMed
description Severe hypoglycemia has a detrimental impact on the cerebrovasculature, but the molecular events that lead to the disruption of the integrity of the tight junctions remain unclear. Here, we report that the microvessel integrity was dramatically compromised (59.41% of wild‐type mice) in TP53‐induced glycolysis and apoptosis regulator (TIGAR) transgenic mice stressed by hypoglycemia. Melatonin, a potent antioxidant, protects against hypoglycemic stress‐induced brain endothelial tight junction injury in the dosage of 400 nmol/L in vitro. FRET (fluorescence resonance energy transfer) imaging data of endothelial cells stressed by low glucose revealed that TIGAR couples with calmodulin to promote TIGAR tyrosine nitration. A tyrosine 92 mutation interferes with the TIGAR‐dependent NADPH generation (55.60% decreased) and abolishes its protective effect on tight junctions in human brain microvascular endothelial cells. We further demonstrate that the low‐glucose‐induced disruption of occludin and Caludin5 as well as activation of autophagy was abrogated by melatonin‐mediated blockade of nitrosative stress in vitro. Collectively, we provide information on the detailed molecular mechanisms for the protective actions of melatonin on brain endothelial tight junctions and suggest that this indole has translational potential for severe hypoglycemia‐induced neurovascular damage.
format Online
Article
Text
id pubmed-5656838
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-56568382017-11-01 Melatonin ameliorates hypoglycemic stress‐induced brain endothelial tight junction injury by inhibiting protein nitration of TP53‐induced glycolysis and apoptosis regulator Wang, Cheng‐kun Ahmed, Muhammad Masood Jiang, Quan Lu, Nan‐nan Tan, Chao Gao, Yin‐ping Mahmood, Qaisar Chen, Dan‐yang Fukunaga, Kohji Li, Mei Chen, Zhong Wilcox, Christopher S. Lu, Ying‐mei Qin, Zheng‐hong Han, Feng J Pineal Res Original Articles Severe hypoglycemia has a detrimental impact on the cerebrovasculature, but the molecular events that lead to the disruption of the integrity of the tight junctions remain unclear. Here, we report that the microvessel integrity was dramatically compromised (59.41% of wild‐type mice) in TP53‐induced glycolysis and apoptosis regulator (TIGAR) transgenic mice stressed by hypoglycemia. Melatonin, a potent antioxidant, protects against hypoglycemic stress‐induced brain endothelial tight junction injury in the dosage of 400 nmol/L in vitro. FRET (fluorescence resonance energy transfer) imaging data of endothelial cells stressed by low glucose revealed that TIGAR couples with calmodulin to promote TIGAR tyrosine nitration. A tyrosine 92 mutation interferes with the TIGAR‐dependent NADPH generation (55.60% decreased) and abolishes its protective effect on tight junctions in human brain microvascular endothelial cells. We further demonstrate that the low‐glucose‐induced disruption of occludin and Caludin5 as well as activation of autophagy was abrogated by melatonin‐mediated blockade of nitrosative stress in vitro. Collectively, we provide information on the detailed molecular mechanisms for the protective actions of melatonin on brain endothelial tight junctions and suggest that this indole has translational potential for severe hypoglycemia‐induced neurovascular damage. John Wiley and Sons Inc. 2017-09-06 2017-11 /pmc/articles/PMC5656838/ /pubmed/28776759 http://dx.doi.org/10.1111/jpi.12440 Text en © 2017 The Authors. Journal of Pineal Research Published by John Wiley & Sons Ltd. This is an open access article under the terms of the Creative Commons Attribution‐NonCommercial (http://creativecommons.org/licenses/by-nc/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Original Articles
Wang, Cheng‐kun
Ahmed, Muhammad Masood
Jiang, Quan
Lu, Nan‐nan
Tan, Chao
Gao, Yin‐ping
Mahmood, Qaisar
Chen, Dan‐yang
Fukunaga, Kohji
Li, Mei
Chen, Zhong
Wilcox, Christopher S.
Lu, Ying‐mei
Qin, Zheng‐hong
Han, Feng
Melatonin ameliorates hypoglycemic stress‐induced brain endothelial tight junction injury by inhibiting protein nitration of TP53‐induced glycolysis and apoptosis regulator
title Melatonin ameliorates hypoglycemic stress‐induced brain endothelial tight junction injury by inhibiting protein nitration of TP53‐induced glycolysis and apoptosis regulator
title_full Melatonin ameliorates hypoglycemic stress‐induced brain endothelial tight junction injury by inhibiting protein nitration of TP53‐induced glycolysis and apoptosis regulator
title_fullStr Melatonin ameliorates hypoglycemic stress‐induced brain endothelial tight junction injury by inhibiting protein nitration of TP53‐induced glycolysis and apoptosis regulator
title_full_unstemmed Melatonin ameliorates hypoglycemic stress‐induced brain endothelial tight junction injury by inhibiting protein nitration of TP53‐induced glycolysis and apoptosis regulator
title_short Melatonin ameliorates hypoglycemic stress‐induced brain endothelial tight junction injury by inhibiting protein nitration of TP53‐induced glycolysis and apoptosis regulator
title_sort melatonin ameliorates hypoglycemic stress‐induced brain endothelial tight junction injury by inhibiting protein nitration of tp53‐induced glycolysis and apoptosis regulator
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5656838/
https://www.ncbi.nlm.nih.gov/pubmed/28776759
http://dx.doi.org/10.1111/jpi.12440
work_keys_str_mv AT wangchengkun melatoninameliorateshypoglycemicstressinducedbrainendothelialtightjunctioninjurybyinhibitingproteinnitrationoftp53inducedglycolysisandapoptosisregulator
AT ahmedmuhammadmasood melatoninameliorateshypoglycemicstressinducedbrainendothelialtightjunctioninjurybyinhibitingproteinnitrationoftp53inducedglycolysisandapoptosisregulator
AT jiangquan melatoninameliorateshypoglycemicstressinducedbrainendothelialtightjunctioninjurybyinhibitingproteinnitrationoftp53inducedglycolysisandapoptosisregulator
AT lunannan melatoninameliorateshypoglycemicstressinducedbrainendothelialtightjunctioninjurybyinhibitingproteinnitrationoftp53inducedglycolysisandapoptosisregulator
AT tanchao melatoninameliorateshypoglycemicstressinducedbrainendothelialtightjunctioninjurybyinhibitingproteinnitrationoftp53inducedglycolysisandapoptosisregulator
AT gaoyinping melatoninameliorateshypoglycemicstressinducedbrainendothelialtightjunctioninjurybyinhibitingproteinnitrationoftp53inducedglycolysisandapoptosisregulator
AT mahmoodqaisar melatoninameliorateshypoglycemicstressinducedbrainendothelialtightjunctioninjurybyinhibitingproteinnitrationoftp53inducedglycolysisandapoptosisregulator
AT chendanyang melatoninameliorateshypoglycemicstressinducedbrainendothelialtightjunctioninjurybyinhibitingproteinnitrationoftp53inducedglycolysisandapoptosisregulator
AT fukunagakohji melatoninameliorateshypoglycemicstressinducedbrainendothelialtightjunctioninjurybyinhibitingproteinnitrationoftp53inducedglycolysisandapoptosisregulator
AT limei melatoninameliorateshypoglycemicstressinducedbrainendothelialtightjunctioninjurybyinhibitingproteinnitrationoftp53inducedglycolysisandapoptosisregulator
AT chenzhong melatoninameliorateshypoglycemicstressinducedbrainendothelialtightjunctioninjurybyinhibitingproteinnitrationoftp53inducedglycolysisandapoptosisregulator
AT wilcoxchristophers melatoninameliorateshypoglycemicstressinducedbrainendothelialtightjunctioninjurybyinhibitingproteinnitrationoftp53inducedglycolysisandapoptosisregulator
AT luyingmei melatoninameliorateshypoglycemicstressinducedbrainendothelialtightjunctioninjurybyinhibitingproteinnitrationoftp53inducedglycolysisandapoptosisregulator
AT qinzhenghong melatoninameliorateshypoglycemicstressinducedbrainendothelialtightjunctioninjurybyinhibitingproteinnitrationoftp53inducedglycolysisandapoptosisregulator
AT hanfeng melatoninameliorateshypoglycemicstressinducedbrainendothelialtightjunctioninjurybyinhibitingproteinnitrationoftp53inducedglycolysisandapoptosisregulator