Cargando…

Localized increases in CEPT1 and ATGL elevate plasmalogen phosphatidylcholines in HDLs contributing to atheroprotective lipid profiles in hyperglycemic GCK-MODY

Glucokinase-maturity onset diabetes of the young (GCK-MODY) represents a rare genetic disorder due to mutation in the glucokinase (GCK) gene. The low incidence of vascular complications in GCK-MODY makes it a natural paradigm for interrogating molecular mechanisms promoting vascular health under pro...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Xiaojing, Lam, Sin Man, Cao, Mingjun, Wang, Tong, Wang, Zhixin, Yu, Miao, Li, Bowen, Zhang, Huabing, Ping, Fan, Song, Guangyao, Feng, Kai, Zhang, Qian, Xu, Jianping, Zhou, Liyuan, Deng, Mingqun, Zhai, Xiao, Xiao, Xinhua, Shui, Guanghou
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7810764/
https://www.ncbi.nlm.nih.gov/pubmed/33450726
http://dx.doi.org/10.1016/j.redox.2021.101855
_version_ 1783637368953110528
author Wang, Xiaojing
Lam, Sin Man
Cao, Mingjun
Wang, Tong
Wang, Zhixin
Yu, Miao
Li, Bowen
Zhang, Huabing
Ping, Fan
Song, Guangyao
Feng, Kai
Zhang, Qian
Xu, Jianping
Zhou, Liyuan
Deng, Mingqun
Zhai, Xiao
Xiao, Xinhua
Shui, Guanghou
author_facet Wang, Xiaojing
Lam, Sin Man
Cao, Mingjun
Wang, Tong
Wang, Zhixin
Yu, Miao
Li, Bowen
Zhang, Huabing
Ping, Fan
Song, Guangyao
Feng, Kai
Zhang, Qian
Xu, Jianping
Zhou, Liyuan
Deng, Mingqun
Zhai, Xiao
Xiao, Xinhua
Shui, Guanghou
author_sort Wang, Xiaojing
collection PubMed
description Glucokinase-maturity onset diabetes of the young (GCK-MODY) represents a rare genetic disorder due to mutation in the glucokinase (GCK) gene. The low incidence of vascular complications in GCK-MODY makes it a natural paradigm for interrogating molecular mechanisms promoting vascular health under prolonged hyperglycemia. Clinical rate of misdiagnosis has remained high, and a reliable serum lipid biomarker that precedes genetic screening can facilitate correct diagnosis and treatment. Herein, we comprehensively quantitated 565 serum lipids from 25 classes in 105 subjects (42 nondiabetic controls, 30 GC K-MODY patients, 33 drug-naïve, and newly-onset T2D patients). At false-discovery rate (FDR) < 0.05, several phosphatidylcholines (PCs) and plasmalogen PCs were specifically increased in GCK-MODY, while triacylglycerols (TAGs) and diacylglycerols (DAGs) were reduced. Correlation matrices between lipids uncovered coregulation between plasmalogen PCs (PCps) and glycerolipid precursors was distinctly enhanced in GCK-MODY compared to T2D. Strengthened positive correlations between serum PCps and circulating HDLs was specifically observed in hyperglycemic subjects (i.e. T2D and GCK-MODY) compared to normglycemic controls, suggesting that HDL-PCps may elicit distinct physiological effects under hyperglycemia. Amongst GCK-MODY patients, individuals harboring variants of GCK mutations with elevated PCps also exhibited higher HDLs. Isolated HDLs displayed localized increases (p < 0.05) in very-long-chain PUFA-PCs and PCps in GCK-MODY. Protein analyses revealed elevated levels of HDL-resident ATGL (P = 0.003) and CEPT1 (P < 0.0001), which mediate critical steps of PCps production along the TAG-DAG-PC axis, in GCK-MODY relative to T2D. A panel of four lipids differentiated GCK-MODY from T2D with AUC of 0.950 (95% CI 0.903–9.997). This study provides the first evidence that enhanced recruitment of CEPT1 and ATGL onto HDLs essentially underlie the atheroprotective profiles associated with GCK-MODY. Resultant increases in the production of HDL-PCps and PUFA-PCs provides an active, circulating form of protection towards the vasculature of GCK-MODY, thereby lowering the incidence of vascular complications despite chronic exposure to hyperglycemia since birth.
format Online
Article
Text
id pubmed-7810764
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-78107642021-01-22 Localized increases in CEPT1 and ATGL elevate plasmalogen phosphatidylcholines in HDLs contributing to atheroprotective lipid profiles in hyperglycemic GCK-MODY Wang, Xiaojing Lam, Sin Man Cao, Mingjun Wang, Tong Wang, Zhixin Yu, Miao Li, Bowen Zhang, Huabing Ping, Fan Song, Guangyao Feng, Kai Zhang, Qian Xu, Jianping Zhou, Liyuan Deng, Mingqun Zhai, Xiao Xiao, Xinhua Shui, Guanghou Redox Biol Research Paper Glucokinase-maturity onset diabetes of the young (GCK-MODY) represents a rare genetic disorder due to mutation in the glucokinase (GCK) gene. The low incidence of vascular complications in GCK-MODY makes it a natural paradigm for interrogating molecular mechanisms promoting vascular health under prolonged hyperglycemia. Clinical rate of misdiagnosis has remained high, and a reliable serum lipid biomarker that precedes genetic screening can facilitate correct diagnosis and treatment. Herein, we comprehensively quantitated 565 serum lipids from 25 classes in 105 subjects (42 nondiabetic controls, 30 GC K-MODY patients, 33 drug-naïve, and newly-onset T2D patients). At false-discovery rate (FDR) < 0.05, several phosphatidylcholines (PCs) and plasmalogen PCs were specifically increased in GCK-MODY, while triacylglycerols (TAGs) and diacylglycerols (DAGs) were reduced. Correlation matrices between lipids uncovered coregulation between plasmalogen PCs (PCps) and glycerolipid precursors was distinctly enhanced in GCK-MODY compared to T2D. Strengthened positive correlations between serum PCps and circulating HDLs was specifically observed in hyperglycemic subjects (i.e. T2D and GCK-MODY) compared to normglycemic controls, suggesting that HDL-PCps may elicit distinct physiological effects under hyperglycemia. Amongst GCK-MODY patients, individuals harboring variants of GCK mutations with elevated PCps also exhibited higher HDLs. Isolated HDLs displayed localized increases (p < 0.05) in very-long-chain PUFA-PCs and PCps in GCK-MODY. Protein analyses revealed elevated levels of HDL-resident ATGL (P = 0.003) and CEPT1 (P < 0.0001), which mediate critical steps of PCps production along the TAG-DAG-PC axis, in GCK-MODY relative to T2D. A panel of four lipids differentiated GCK-MODY from T2D with AUC of 0.950 (95% CI 0.903–9.997). This study provides the first evidence that enhanced recruitment of CEPT1 and ATGL onto HDLs essentially underlie the atheroprotective profiles associated with GCK-MODY. Resultant increases in the production of HDL-PCps and PUFA-PCs provides an active, circulating form of protection towards the vasculature of GCK-MODY, thereby lowering the incidence of vascular complications despite chronic exposure to hyperglycemia since birth. Elsevier 2021-01-06 /pmc/articles/PMC7810764/ /pubmed/33450726 http://dx.doi.org/10.1016/j.redox.2021.101855 Text en © 2021 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Wang, Xiaojing
Lam, Sin Man
Cao, Mingjun
Wang, Tong
Wang, Zhixin
Yu, Miao
Li, Bowen
Zhang, Huabing
Ping, Fan
Song, Guangyao
Feng, Kai
Zhang, Qian
Xu, Jianping
Zhou, Liyuan
Deng, Mingqun
Zhai, Xiao
Xiao, Xinhua
Shui, Guanghou
Localized increases in CEPT1 and ATGL elevate plasmalogen phosphatidylcholines in HDLs contributing to atheroprotective lipid profiles in hyperglycemic GCK-MODY
title Localized increases in CEPT1 and ATGL elevate plasmalogen phosphatidylcholines in HDLs contributing to atheroprotective lipid profiles in hyperglycemic GCK-MODY
title_full Localized increases in CEPT1 and ATGL elevate plasmalogen phosphatidylcholines in HDLs contributing to atheroprotective lipid profiles in hyperglycemic GCK-MODY
title_fullStr Localized increases in CEPT1 and ATGL elevate plasmalogen phosphatidylcholines in HDLs contributing to atheroprotective lipid profiles in hyperglycemic GCK-MODY
title_full_unstemmed Localized increases in CEPT1 and ATGL elevate plasmalogen phosphatidylcholines in HDLs contributing to atheroprotective lipid profiles in hyperglycemic GCK-MODY
title_short Localized increases in CEPT1 and ATGL elevate plasmalogen phosphatidylcholines in HDLs contributing to atheroprotective lipid profiles in hyperglycemic GCK-MODY
title_sort localized increases in cept1 and atgl elevate plasmalogen phosphatidylcholines in hdls contributing to atheroprotective lipid profiles in hyperglycemic gck-mody
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7810764/
https://www.ncbi.nlm.nih.gov/pubmed/33450726
http://dx.doi.org/10.1016/j.redox.2021.101855
work_keys_str_mv AT wangxiaojing localizedincreasesincept1andatglelevateplasmalogenphosphatidylcholinesinhdlscontributingtoatheroprotectivelipidprofilesinhyperglycemicgckmody
AT lamsinman localizedincreasesincept1andatglelevateplasmalogenphosphatidylcholinesinhdlscontributingtoatheroprotectivelipidprofilesinhyperglycemicgckmody
AT caomingjun localizedincreasesincept1andatglelevateplasmalogenphosphatidylcholinesinhdlscontributingtoatheroprotectivelipidprofilesinhyperglycemicgckmody
AT wangtong localizedincreasesincept1andatglelevateplasmalogenphosphatidylcholinesinhdlscontributingtoatheroprotectivelipidprofilesinhyperglycemicgckmody
AT wangzhixin localizedincreasesincept1andatglelevateplasmalogenphosphatidylcholinesinhdlscontributingtoatheroprotectivelipidprofilesinhyperglycemicgckmody
AT yumiao localizedincreasesincept1andatglelevateplasmalogenphosphatidylcholinesinhdlscontributingtoatheroprotectivelipidprofilesinhyperglycemicgckmody
AT libowen localizedincreasesincept1andatglelevateplasmalogenphosphatidylcholinesinhdlscontributingtoatheroprotectivelipidprofilesinhyperglycemicgckmody
AT zhanghuabing localizedincreasesincept1andatglelevateplasmalogenphosphatidylcholinesinhdlscontributingtoatheroprotectivelipidprofilesinhyperglycemicgckmody
AT pingfan localizedincreasesincept1andatglelevateplasmalogenphosphatidylcholinesinhdlscontributingtoatheroprotectivelipidprofilesinhyperglycemicgckmody
AT songguangyao localizedincreasesincept1andatglelevateplasmalogenphosphatidylcholinesinhdlscontributingtoatheroprotectivelipidprofilesinhyperglycemicgckmody
AT fengkai localizedincreasesincept1andatglelevateplasmalogenphosphatidylcholinesinhdlscontributingtoatheroprotectivelipidprofilesinhyperglycemicgckmody
AT zhangqian localizedincreasesincept1andatglelevateplasmalogenphosphatidylcholinesinhdlscontributingtoatheroprotectivelipidprofilesinhyperglycemicgckmody
AT xujianping localizedincreasesincept1andatglelevateplasmalogenphosphatidylcholinesinhdlscontributingtoatheroprotectivelipidprofilesinhyperglycemicgckmody
AT zhouliyuan localizedincreasesincept1andatglelevateplasmalogenphosphatidylcholinesinhdlscontributingtoatheroprotectivelipidprofilesinhyperglycemicgckmody
AT dengmingqun localizedincreasesincept1andatglelevateplasmalogenphosphatidylcholinesinhdlscontributingtoatheroprotectivelipidprofilesinhyperglycemicgckmody
AT zhaixiao localizedincreasesincept1andatglelevateplasmalogenphosphatidylcholinesinhdlscontributingtoatheroprotectivelipidprofilesinhyperglycemicgckmody
AT xiaoxinhua localizedincreasesincept1andatglelevateplasmalogenphosphatidylcholinesinhdlscontributingtoatheroprotectivelipidprofilesinhyperglycemicgckmody
AT shuiguanghou localizedincreasesincept1andatglelevateplasmalogenphosphatidylcholinesinhdlscontributingtoatheroprotectivelipidprofilesinhyperglycemicgckmody