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Prdx1 (peroxiredoxin 1) deficiency reduces cholesterol efflux via impaired macrophage lipophagic flux.

Authors :
Jeong, Se-Jin
Kim, Sinai
Park, Jong-Gil
Jung, In-hyuk
Lee, Mi-Ni
Jeon, Sejin
Kweon, Hyae Yon
Yu, Dae-Yeul
Lee, Sang-Hak
Jang, Yangsoo
Kang, Sang Won
Han, Ki-Hwan
Miller, Yury I.
Park, Young Mi
Cheong, Cheolho
Choi, Jae-Hoon
Oh, Goo Taeg
Source :
Autophagy; 2018, Vol. 14 Issue 1, p120-133, 14p
Publication Year :
2018

Abstract

Oxidative stress activates macroautophagy/autophagy and contributes to atherogenesis via lipophagic flux, a form of lipid removal by autophagy. However, it is not known exactly how endogenous antioxidant enzymes are involved in lipophagic flux. Here, we demonstrate that the antioxidant PRDX1 (peroxiredoxin 1) has a crucial role in the maintenance of lipophagic flux in macrophages. PRDX1 is more highly expressed than other antioxidant enzymes in monocytes and macrophages. We determined that <italic>Prdx1</italic> deficiency induced excessive oxidative stress and impaired maintenance of autophagic flux in macrophages. <italic>Prdx1</italic>-deficient macrophages had higher intracellular cholesterol mass and lower cholesterol efflux compared with wild type. This perturbation in cholesterol homeostasis was due to impaired lipophagic cholesterol hydrolysis caused by excessive oxidative stress, resulting in the inhibition of free cholesterol formation and the reduction of NR1H3 (nuclear receptor subfamily 1, group H, member 3) activity. Notably, impairment of both lipophagic flux and cholesterol efflux was restored by the 2-Cys PRDX-mimics ebselen and gliotoxin. Consistent with this observation, <italic>apoe <superscript>−/−</superscript></italic> mice transplanted with bone marrow from <italic>prdx1<superscript>−/−</superscript>apoe<superscript>−/−</superscript></italic> mice had increased plaque formation compared with <italic>apoe<superscript>−/−</superscript></italic> BM-transplanted recipients. This study reveals that PRDX1 is crucial to regulating lipophagic flux and maintaining macrophage cholesterol homeostasis against oxidative stress. We suggest that PRDX1-dependent control of oxidative stress may provide a strategy for treating atherosclerosis and autophagy-related human diseases. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
15548627
Volume :
14
Issue :
1
Database :
Complementary Index
Journal :
Autophagy
Publication Type :
Academic Journal
Accession number :
128421935
Full Text :
https://doi.org/10.1080/15548627.2017.1327942