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Impaired LRP6-TCF7L2 Activity Enhances Smooth Muscle Cell Plasticity and Causes Coronary Artery Diseaseopen access

Authors
Srivastava, RoshniZhang, JiashengGo, Gwang-woongNarayanan, AnandNottoli, Timothy P.Mani, Arya
Issue Date
Oct-2015
Publisher
CELL PRESS
Keywords
MACROPHAGE-LIKE CELLS; NONCANONICAL WNT; BETA-CATENIN; LRP6; GENE; TRANSCRIPTION; ATHEROSCLEROSIS; PHOSPHORYLATION; EXPRESSION; PHENOTYPE
Citation
CELL REPORTS, v.13, no.4, pp.746 - 759
Indexed
SCIE
SCOPUS
Journal Title
CELL REPORTS
Volume
13
Number
4
Start Page
746
End Page
759
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/156123
DOI
10.1016/j.celrep.2015.09.028
ISSN
22111247
Abstract
Mutations in Wnt-signaling coreceptor LRP6 have been linked to coronary artery disease (CAD) by unknown mechanisms. Here, we show that reduced LRP6 activity in LRP6(R611C) mice promotes loss of vascular smooth muscle cell (VSMC) differentiation, leading to aortic medial hyperplasia. Carotid injury augmented these effects and led to partial to total vascular obstruction. LRP6(R611C) mice on high-fat diet displayed dramatic obstructive CAD and exhibited an accelerated atherosclerotic burden on LDLR knockout background. Mechanistically, impaired LRP6 activity leads to enhanced non-canonical Wnt signaling, culminating in diminished TCF7L2 and increased Sp1-dependent activation of PDGF signaling. Wnt3a administration to LRP6(R611C) mice improved LRP6 activity, led to TCF7L2-dependent VSMC differentiation, and rescued post-carotid-injury neointima formation. These findings demonstrate the critical role of intact Wnt signaling in the vessel wall, establish a causal link between impaired LRP6/TCF7L2 activities and arterial disease, and identify Wnt signaling as a therapeutic target against CAD.
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COLLEGE OF HUMAN ECOLOGY (DEPARTMENT OF FOOD & NUTRITION)
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