TY - JOUR
T1 - Macrophage PPAR gamma Co-activator-1 alpha participates in repressing foam cell formation and atherosclerosis in response to conjugated linoleic acid
AU - Mccarthy, Cathal
AU - Lieggi, Nora T.
AU - Barry, Denis
AU - Mooney, Declan
AU - de Gaetano, Monica
AU - James, William G.
AU - Mcclelland, Sarah
AU - Barry, Mary C.
AU - Escoubet-Lozach, Laure
AU - Li, Andrew C.
AU - Glass, Christopher K.
AU - Fitzgerald, Desmond J.
AU - Belton, Orina
PY - 2013/9
Y1 - 2013/9
N2 - Conjugated linoleic acid (CLA) has the unique property of inducing regression of pre-established murine atherosclerosis. Understanding the mechanism(s) involved may help identify endogenous pathways that reverse human atherosclerosis. Here, we provide evidence that CLA inhibits foam cell formation via regulation of the nuclear receptor coactivator, peroxisome proliferator-activated receptor (PPAR)-γ coactivator (PGC)-1α, and that macrophage PGC-1α plays a role in atheroprotection in vivo. PGC-1α was identified as a hub gene within a cluster in the aorta of the apoE-/- mouse in the CLA-induced regression model. PGC-1α was localized to macrophage/foam cells in the murine aorta where its expression was increased during CLA-induced regression. PGC-1α expression was also detected in macrophages in human atherosclerosis and was inversely linked to disease progression in patients with the disease. Deletion of PGC-1α in bone marrow derived macrophages promoted, whilst over expression of the gene inhibited foam cell formation. Importantly, macrophage specific deletion of PGC-1α accelerated atherosclerosis in the LDLR-/- mouse in vivo. These novel data support a functional role for PGC-1α in atheroprotection.
AB - Conjugated linoleic acid (CLA) has the unique property of inducing regression of pre-established murine atherosclerosis. Understanding the mechanism(s) involved may help identify endogenous pathways that reverse human atherosclerosis. Here, we provide evidence that CLA inhibits foam cell formation via regulation of the nuclear receptor coactivator, peroxisome proliferator-activated receptor (PPAR)-γ coactivator (PGC)-1α, and that macrophage PGC-1α plays a role in atheroprotection in vivo. PGC-1α was identified as a hub gene within a cluster in the aorta of the apoE-/- mouse in the CLA-induced regression model. PGC-1α was localized to macrophage/foam cells in the murine aorta where its expression was increased during CLA-induced regression. PGC-1α expression was also detected in macrophages in human atherosclerosis and was inversely linked to disease progression in patients with the disease. Deletion of PGC-1α in bone marrow derived macrophages promoted, whilst over expression of the gene inhibited foam cell formation. Importantly, macrophage specific deletion of PGC-1α accelerated atherosclerosis in the LDLR-/- mouse in vivo. These novel data support a functional role for PGC-1α in atheroprotection.
KW - Atherosclerosis regression
KW - Conjugated linoleic acid
KW - Foam cell formation
KW - PGC-1α
UR - https://www.scopus.com/pages/publications/84883435854
U2 - 10.1002/emmm.201302587
DO - 10.1002/emmm.201302587
M3 - Article
C2 - 23964012
AN - SCOPUS:84883435854
SN - 1757-4676
VL - 5
SP - 1443
EP - 1457
JO - EMBO Molecular Medicine
JF - EMBO Molecular Medicine
IS - 9
ER -