Cargando…

ER stress mediates Angiotensin II-augmented innate immunity memory and facilitates distinct susceptibilities of thoracic from abdominal aorta to aneurysm development

To determine the roles of endoplasmic reticulum (ER) stress and trained immunity, we performed transcriptome analyses on the thoracic aorta (TA) and abdominal aorta (AA) from the angiotensin II (Ang II)-HFD-ApoE-KO aneurysm model and made significant findings: 1) Ang II bypassed HFD-induced metaboli...

Descripción completa

Detalles Bibliográficos
Autores principales: Lu, Yifan, Sun, Yu, Saaoud, Fatma, Shao, Ying, Xu, Keman, Jiang, Xiaohua, Wu, Sheng, Yu, Jun, Snyder, Nathaniel W., Yang, Ling, Shi, Xinghua Mindy, Zhao, Huaqing, Wang, Hong, Yang, Xiaofeng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10507336/
https://www.ncbi.nlm.nih.gov/pubmed/37731512
http://dx.doi.org/10.3389/fimmu.2023.1268916
_version_ 1785107294181130240
author Lu, Yifan
Sun, Yu
Saaoud, Fatma
Shao, Ying
Xu, Keman
Jiang, Xiaohua
Wu, Sheng
Yu, Jun
Snyder, Nathaniel W.
Yang, Ling
Shi, Xinghua Mindy
Zhao, Huaqing
Wang, Hong
Yang, Xiaofeng
author_facet Lu, Yifan
Sun, Yu
Saaoud, Fatma
Shao, Ying
Xu, Keman
Jiang, Xiaohua
Wu, Sheng
Yu, Jun
Snyder, Nathaniel W.
Yang, Ling
Shi, Xinghua Mindy
Zhao, Huaqing
Wang, Hong
Yang, Xiaofeng
author_sort Lu, Yifan
collection PubMed
description To determine the roles of endoplasmic reticulum (ER) stress and trained immunity, we performed transcriptome analyses on the thoracic aorta (TA) and abdominal aorta (AA) from the angiotensin II (Ang II)-HFD-ApoE-KO aneurysm model and made significant findings: 1) Ang II bypassed HFD-induced metabolic reprogramming and induced stronger inflammation in AA than in TA; 2) Ang II and HFD upregulated 890 genes in AA versus TA and induced cytokine signaling; 3) Ang II AA and TA upregulated 73 and 68 cytokines, scRNA-Seq identified markers of macrophages and immune cells, cell death regulators, respectively; transdifferentiation markers of neuron, glial, and squamous epithelial cells were upregulated by Ang II-AA and TA; and pyroptosis signaling with IL-1β and caspase-4 were more upregulated in Ang II-AA than in TA; 4) Six upregulated transcriptomes in patients with AAA, Ang II AA, Ang II TA, additional aneurysm models, PPE-AAA and BAPN-Ang II-AAA, were partially overlapped with 10 lists of new ER stress gene sets including 3 interaction protein lists of ER stress regulators ATF6, PERK, and IRE1, HPA ER localization genes, KEGG signal genes, XBP1 transcription targets, ATF4 (PERK) targets, ATF6 targets, thapsigargin ER stress genes, tunicamycin-ER stress genes, respectively; 5) Ang II-AA and TA upregulated ROS regulators, MitoCarta genes, trained immunity genes, and glycolysis genes; and 6) Gene KO transcriptomes indicated that ATF6 and PERK played more significant roles than IRE1 in promoting AAA and trained immunity whereas antioxidant NRF2 inhibited them. Our unprecedented ER-focused transcriptomic analyses have provided novel insights on the roles of ER as an immune organelle in sensing various DAMPs and initiating ER stress that triggers Ang II-accelerated trained immunity and differs susceptibilities of thoracic and abdominal aortas to diseases.
format Online
Article
Text
id pubmed-10507336
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-105073362023-09-20 ER stress mediates Angiotensin II-augmented innate immunity memory and facilitates distinct susceptibilities of thoracic from abdominal aorta to aneurysm development Lu, Yifan Sun, Yu Saaoud, Fatma Shao, Ying Xu, Keman Jiang, Xiaohua Wu, Sheng Yu, Jun Snyder, Nathaniel W. Yang, Ling Shi, Xinghua Mindy Zhao, Huaqing Wang, Hong Yang, Xiaofeng Front Immunol Immunology To determine the roles of endoplasmic reticulum (ER) stress and trained immunity, we performed transcriptome analyses on the thoracic aorta (TA) and abdominal aorta (AA) from the angiotensin II (Ang II)-HFD-ApoE-KO aneurysm model and made significant findings: 1) Ang II bypassed HFD-induced metabolic reprogramming and induced stronger inflammation in AA than in TA; 2) Ang II and HFD upregulated 890 genes in AA versus TA and induced cytokine signaling; 3) Ang II AA and TA upregulated 73 and 68 cytokines, scRNA-Seq identified markers of macrophages and immune cells, cell death regulators, respectively; transdifferentiation markers of neuron, glial, and squamous epithelial cells were upregulated by Ang II-AA and TA; and pyroptosis signaling with IL-1β and caspase-4 were more upregulated in Ang II-AA than in TA; 4) Six upregulated transcriptomes in patients with AAA, Ang II AA, Ang II TA, additional aneurysm models, PPE-AAA and BAPN-Ang II-AAA, were partially overlapped with 10 lists of new ER stress gene sets including 3 interaction protein lists of ER stress regulators ATF6, PERK, and IRE1, HPA ER localization genes, KEGG signal genes, XBP1 transcription targets, ATF4 (PERK) targets, ATF6 targets, thapsigargin ER stress genes, tunicamycin-ER stress genes, respectively; 5) Ang II-AA and TA upregulated ROS regulators, MitoCarta genes, trained immunity genes, and glycolysis genes; and 6) Gene KO transcriptomes indicated that ATF6 and PERK played more significant roles than IRE1 in promoting AAA and trained immunity whereas antioxidant NRF2 inhibited them. Our unprecedented ER-focused transcriptomic analyses have provided novel insights on the roles of ER as an immune organelle in sensing various DAMPs and initiating ER stress that triggers Ang II-accelerated trained immunity and differs susceptibilities of thoracic and abdominal aortas to diseases. Frontiers Media S.A. 2023-09-04 /pmc/articles/PMC10507336/ /pubmed/37731512 http://dx.doi.org/10.3389/fimmu.2023.1268916 Text en Copyright © 2023 Lu, Sun, Saaoud, Shao, Xu, Jiang, Wu, Yu, Snyder, Yang, Shi, Zhao, Wang and Yang https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Lu, Yifan
Sun, Yu
Saaoud, Fatma
Shao, Ying
Xu, Keman
Jiang, Xiaohua
Wu, Sheng
Yu, Jun
Snyder, Nathaniel W.
Yang, Ling
Shi, Xinghua Mindy
Zhao, Huaqing
Wang, Hong
Yang, Xiaofeng
ER stress mediates Angiotensin II-augmented innate immunity memory and facilitates distinct susceptibilities of thoracic from abdominal aorta to aneurysm development
title ER stress mediates Angiotensin II-augmented innate immunity memory and facilitates distinct susceptibilities of thoracic from abdominal aorta to aneurysm development
title_full ER stress mediates Angiotensin II-augmented innate immunity memory and facilitates distinct susceptibilities of thoracic from abdominal aorta to aneurysm development
title_fullStr ER stress mediates Angiotensin II-augmented innate immunity memory and facilitates distinct susceptibilities of thoracic from abdominal aorta to aneurysm development
title_full_unstemmed ER stress mediates Angiotensin II-augmented innate immunity memory and facilitates distinct susceptibilities of thoracic from abdominal aorta to aneurysm development
title_short ER stress mediates Angiotensin II-augmented innate immunity memory and facilitates distinct susceptibilities of thoracic from abdominal aorta to aneurysm development
title_sort er stress mediates angiotensin ii-augmented innate immunity memory and facilitates distinct susceptibilities of thoracic from abdominal aorta to aneurysm development
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10507336/
https://www.ncbi.nlm.nih.gov/pubmed/37731512
http://dx.doi.org/10.3389/fimmu.2023.1268916
work_keys_str_mv AT luyifan erstressmediatesangiotensiniiaugmentedinnateimmunitymemoryandfacilitatesdistinctsusceptibilitiesofthoracicfromabdominalaortatoaneurysmdevelopment
AT sunyu erstressmediatesangiotensiniiaugmentedinnateimmunitymemoryandfacilitatesdistinctsusceptibilitiesofthoracicfromabdominalaortatoaneurysmdevelopment
AT saaoudfatma erstressmediatesangiotensiniiaugmentedinnateimmunitymemoryandfacilitatesdistinctsusceptibilitiesofthoracicfromabdominalaortatoaneurysmdevelopment
AT shaoying erstressmediatesangiotensiniiaugmentedinnateimmunitymemoryandfacilitatesdistinctsusceptibilitiesofthoracicfromabdominalaortatoaneurysmdevelopment
AT xukeman erstressmediatesangiotensiniiaugmentedinnateimmunitymemoryandfacilitatesdistinctsusceptibilitiesofthoracicfromabdominalaortatoaneurysmdevelopment
AT jiangxiaohua erstressmediatesangiotensiniiaugmentedinnateimmunitymemoryandfacilitatesdistinctsusceptibilitiesofthoracicfromabdominalaortatoaneurysmdevelopment
AT wusheng erstressmediatesangiotensiniiaugmentedinnateimmunitymemoryandfacilitatesdistinctsusceptibilitiesofthoracicfromabdominalaortatoaneurysmdevelopment
AT yujun erstressmediatesangiotensiniiaugmentedinnateimmunitymemoryandfacilitatesdistinctsusceptibilitiesofthoracicfromabdominalaortatoaneurysmdevelopment
AT snydernathanielw erstressmediatesangiotensiniiaugmentedinnateimmunitymemoryandfacilitatesdistinctsusceptibilitiesofthoracicfromabdominalaortatoaneurysmdevelopment
AT yangling erstressmediatesangiotensiniiaugmentedinnateimmunitymemoryandfacilitatesdistinctsusceptibilitiesofthoracicfromabdominalaortatoaneurysmdevelopment
AT shixinghuamindy erstressmediatesangiotensiniiaugmentedinnateimmunitymemoryandfacilitatesdistinctsusceptibilitiesofthoracicfromabdominalaortatoaneurysmdevelopment
AT zhaohuaqing erstressmediatesangiotensiniiaugmentedinnateimmunitymemoryandfacilitatesdistinctsusceptibilitiesofthoracicfromabdominalaortatoaneurysmdevelopment
AT wanghong erstressmediatesangiotensiniiaugmentedinnateimmunitymemoryandfacilitatesdistinctsusceptibilitiesofthoracicfromabdominalaortatoaneurysmdevelopment
AT yangxiaofeng erstressmediatesangiotensiniiaugmentedinnateimmunitymemoryandfacilitatesdistinctsusceptibilitiesofthoracicfromabdominalaortatoaneurysmdevelopment