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PMID: 24911634 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Ox-LDL induces endothelial cell apoptosis via the LOX-1-dependent endoplasmic reticulum stress pathway.

Atherosclerosis ·Vol. 235 ·No. 2 ·2014-08-00 ·Pages 310-7

Hong D, Bai YP, Gao HC, Wang X, Li LF, Zhang GG, Hu CP

Abstract

To investigate the effect of lectin-like ox-LDL receptor-1 (LOX-1) on oxidized low-density lipoprotein (ox-LDL)-induced apoptosis and the involvement of the endoplasmic reticulum (ER) stress response pathway. Human umbilical vein endothelial cells were treated with 50, 100, or 200 μg/ml ox-LDL and cultured for 12, 24, or 48 h for concentration- and time-dependent studies. Cells were transfected with LOX-1 or Nox-4 shRNAs, and target proteins were inhibited with the corresponding antibodies for mechanistic studies. Active proteins and mRNAs were analyzed by Western blotting and RT-PCR, respectively. Cell apoptosis was analyzed by Annexin and Hoechst staining assays. Ox-LDL induced both apoptosis and protein expression of LOX-1 and Nox-4 through activation of ER stress sensors IRE1 and PERK, and nuclear translocation of ATF6 and their subsequent pathways were indicated by JNK, eukaryotic initiation factor 2 phosphorylation, XBP-1, and chaperone GRP78 expression; up-regulation of proapoptotic proteins CHOP and Bcl-2; and caspase-12 activity. LOX-1 gene silencing and treatment with an anti-LOX-1 antibody attenuated the effects of ox-LDL. Pretreatment with irestatin 9389, salubrinal, or AEBSF also blocked ox-LDL-induced expression of CHOP and Bcl-2 and activation of caspase-12 activity, leading to an attenuation of endothelial cell apoptosis. Furthermore, Nox-4 siRNA attenuated the up-regulated expression of GRP78, PERK, IRE1, and XBP-1 to reduce ox-LDL-induced endothelial cell apoptosis. LOX-1 plays a critical role in ox-LDL-induced endothelial cell apoptosis via the ER stress pathway.

Keywords
Apoptosis Endoplasmic reticulum stress Endothelial cells LOX-1 Nox-4
MeSH Terms
Apoptosis/drug effects Apoptosis Regulatory Proteins/metabolism Caspase 12/metabolism Endoplasmic Reticulum Chaperone BiP Endoplasmic Reticulum Stress/drug effects Human Umbilical Vein Endothelial Cells Humans Lipoproteins, LDL/metabolism,pharmacology NADPH Oxidase 4 NADPH Oxidases/physiology Scavenger Receptors, Class E/antagonists & inhibitors,metabolism Transcription Factor CHOP/biosynthesis
Chemicals
Apoptosis Regulatory Proteins DDIT3 protein, human Endoplasmic Reticulum Chaperone BiP HSPA5 protein, human Lipoproteins, LDL Scavenger Receptors, Class E oxidized low density lipoprotein Transcription Factor CHOP NADPH Oxidase 4 NADPH Oxidases NOX4 protein, human Caspase 12
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Hong Dan
Department of Cardiovascular Medicine, Xiangya Hospital, Central South University, Xiangya Road 87#, Changsha 410008, China.
Bai Yong-Ping
Department of Geriatric Medicine, Xiangya Hospital, Central South University, Changsha 410008, China.
Gao Hai-Chao
Department of Cardiovascular Medicine, Xiangya Hospital, Central South University, Xiangya Road 87#, Changsha 410008, China.
Wang Xiang
Department of Cardiovascular Medicine, Xiangya Hospital, Central South University, Xiangya Road 87#, Changsha 410008, China.
Li Ling-Fang
Department of Cardiovascular Medicine, Xiangya Hospital, Central South University, Xiangya Road 87#, Changsha 410008, China.
Zhang Guo-Gang
Department of Cardiovascular Medicine, Xiangya Hospital, Central South University, Xiangya Road 87#, Changsha 410008, China. Electronic address: [email protected].
Hu Chang-Ping
Department of Pharmacology, School of Pharmaceutical Sciences, Central South University, Changsha 410008, China. Electronic address: [email protected].
Article Info
Journal
Atherosclerosis
Abbr.
Atherosclerosis
ISSN
1879-1484
Published
2014-08-00
Epub
2014-00-24
Pages
310-7
Language
English
Region
Ireland
NLM ID
0242543
Subset
IM
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