TY - JOUR
T1 - Endothelial cell-specific liver kinase B1 deletion causes endothelial dysfunction and hypertension in mice in vivo
AU - Zhang, Wencheng
AU - Wang, Qilong
AU - Wu, Yue
AU - Moriasi, Cate
AU - Liu, Zhaoyu
AU - Dai, Xiaoyan
AU - Wang, Qiongxin
AU - Liu, Weimin
AU - Yuan, Zu Yi
AU - Zou, Ming Hui
PY - 2014/4/1
Y1 - 2014/4/1
N2 - BACKGROUND-: Liver kinase B1 (LKB1), a tumor suppressor, is a central regulator of cell polarity and energy homeostasis. The role of LKB1 in endothelial function in vivo has not been explored. METHODS AND RESULTS-: Endothelium-specific LKB1 knockout (LKB1) mice were generated by cross-breeding LKB1 mice with VE-Cadherin-Cre mice. LKB1 mice exhibited hypertension, cardiac hypertrophy, and impaired endothelium-dependent relaxation. LKB1 endothelial cells exhibited reduced endothelial nitric oxide synthase activity and AMP kinase (a downstream enzyme of LKB1) phosphorylation at Thr172 compared with wild-type (WT) cells. In addition, the levels of caveolin-1 were higher in the endothelial cells of LKB1 mice, and knockdown of caveolin-1 by siRNA normalized endothelial nitric oxide synthase activity. Human antigen R bound with the adenylate-uridylate-rich elements of caveolin-1 mRNA 3′ untranslated region, resulting in the increased stability of caveolin-1, and genetic knockdown of human antigen R decreased the expression of caveolin-1 in LKB1-deficient endothelial cells. Finally, adenoviral overexpression of constitutively active AMP kinase, but not green fluorescent protein, decreased caveolin-1, lowered blood pressure, and improved endothelial function in LKB1 mice in vivo. CONCLUSIONS-: Our findings indicate that endothelial LKB1 regulates endothelial nitric oxide synthase activity, endothelial function, and blood pressure by modulating AMP kinase-mediated caveolin-1 expression.
AB - BACKGROUND-: Liver kinase B1 (LKB1), a tumor suppressor, is a central regulator of cell polarity and energy homeostasis. The role of LKB1 in endothelial function in vivo has not been explored. METHODS AND RESULTS-: Endothelium-specific LKB1 knockout (LKB1) mice were generated by cross-breeding LKB1 mice with VE-Cadherin-Cre mice. LKB1 mice exhibited hypertension, cardiac hypertrophy, and impaired endothelium-dependent relaxation. LKB1 endothelial cells exhibited reduced endothelial nitric oxide synthase activity and AMP kinase (a downstream enzyme of LKB1) phosphorylation at Thr172 compared with wild-type (WT) cells. In addition, the levels of caveolin-1 were higher in the endothelial cells of LKB1 mice, and knockdown of caveolin-1 by siRNA normalized endothelial nitric oxide synthase activity. Human antigen R bound with the adenylate-uridylate-rich elements of caveolin-1 mRNA 3′ untranslated region, resulting in the increased stability of caveolin-1, and genetic knockdown of human antigen R decreased the expression of caveolin-1 in LKB1-deficient endothelial cells. Finally, adenoviral overexpression of constitutively active AMP kinase, but not green fluorescent protein, decreased caveolin-1, lowered blood pressure, and improved endothelial function in LKB1 mice in vivo. CONCLUSIONS-: Our findings indicate that endothelial LKB1 regulates endothelial nitric oxide synthase activity, endothelial function, and blood pressure by modulating AMP kinase-mediated caveolin-1 expression.
KW - AMP-activated protein kinases
KW - caveolin 1
KW - hypertension
KW - nitric oxide synthase type III
UR - http://www.scopus.com/inward/record.url?scp=84898059358&partnerID=8YFLogxK
U2 - 10.1161/CIRCULATIONAHA.113.004146
DO - 10.1161/CIRCULATIONAHA.113.004146
M3 - Article
C2 - 24637557
AN - SCOPUS:84898059358
SN - 0009-7322
VL - 129
SP - 1428
EP - 1439
JO - Circulation
JF - Circulation
IS - 13
ER -