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Mengwei Zang

Showing results (11-20 of 40) with videos related to

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Molecular Endocrinology (Baltimore, Md.)|October 31, 2002
Interaction among four residues distributed through the secretin pharmacophore and a focused region of the secretin receptor amino terminusMaoqing Dong, Mengwei Zang, Delia I Pinon, et al.
The Journal of Biological Chemistry|September 23, 2003
Spatial approximation between two residues in the mid-region of secretin and the amino terminus of its receptor. Incorporation of seven sets of such constraints into a three-dimensional model of the agonist-bound secretin receptorMaoqing Dong, Zhijun Li, Mengwei Zang, et al.
Journal of Cardiovascular Pharmacology|June 10, 2011
High-fat diet increases and the polyphenol, S17834, decreases acetylation of the sirtuin-1-dependent lysine-382 on p53 and apoptotic signaling in atherosclerotic lesion-prone aortic endothelium of normal miceShanqin Xu, Bingbing Jiang, Xiuyun Hou, et al.
The Journal of Biological Chemistry|September 17, 2004
AMP-activated protein kinase is required for the lipid-lowering effect of metformin in insulin-resistant human HepG2 cellsMengwei Zang, Adriana Zuccollo, Xiuyun Hou, et al.
Molecular Pharmacology|April 16, 2003
Spatial approximation between a photolabile residue in position 13 of secretin and the amino terminus of the secretin receptorMengwei Zang, Maoqing Dong, Delia I Pinon, et al.
Diabetes|July 29, 2006
Polyphenols stimulate AMP-activated protein kinase, lower lipids, and inhibit accelerated atherosclerosis in diabetic LDL receptor-deficient miceMengwei Zang, Shanqin Xu, Karlene A Maitland-Toolan, et al.
Molecular Endocrinology (Baltimore, Md.)|July 7, 2015
New Insight Into Metformin Action: Regulation of ChREBP and FOXO1 Activities in Endothelial CellsXiaoyu Li, Karen L Kover, Daniel P Heruth, et al.
The Journal of Biological Chemistry|September 9, 2008
Characterization of Ser338 phosphorylation for Raf-1 activationMengwei Zang, Jun Gong, Lingqi Luo, et al.
Gastroenterology|November 5, 2013
Hepatic SIRT1 attenuates hepatic steatosis and controls energy balance in mice by inducing fibroblast growth factor 21Yu Li, Kimberly Wong, Amber Giles, et al.
The Journal of Biological Chemistry|September 7, 2010
SIRT1 deacetylates and inhibits SREBP-1C activity in regulation of hepatic lipid metabolismBhaskar Ponugoti, Dong-Hyun Kim, Zhen Xiao, et al.
Pageof 4

Showing results (11-20 of 40) with videos related to

Sort By:
Pageof 4
Molecular Endocrinology (Baltimore, Md.)|October 31, 2002
Interaction among four residues distributed through the secretin pharmacophore and a focused region of the secretin receptor amino terminusMaoqing Dong, Mengwei Zang, Delia I Pinon, et al.
The Journal of Biological Chemistry|September 23, 2003
Spatial approximation between two residues in the mid-region of secretin and the amino terminus of its receptor. Incorporation of seven sets of such constraints into a three-dimensional model of the agonist-bound secretin receptorMaoqing Dong, Zhijun Li, Mengwei Zang, et al.
Journal of Cardiovascular Pharmacology|June 10, 2011
High-fat diet increases and the polyphenol, S17834, decreases acetylation of the sirtuin-1-dependent lysine-382 on p53 and apoptotic signaling in atherosclerotic lesion-prone aortic endothelium of normal miceShanqin Xu, Bingbing Jiang, Xiuyun Hou, et al.
The Journal of Biological Chemistry|September 17, 2004
AMP-activated protein kinase is required for the lipid-lowering effect of metformin in insulin-resistant human HepG2 cellsMengwei Zang, Adriana Zuccollo, Xiuyun Hou, et al.
Molecular Pharmacology|April 16, 2003
Spatial approximation between a photolabile residue in position 13 of secretin and the amino terminus of the secretin receptorMengwei Zang, Maoqing Dong, Delia I Pinon, et al.
Diabetes|July 29, 2006
Polyphenols stimulate AMP-activated protein kinase, lower lipids, and inhibit accelerated atherosclerosis in diabetic LDL receptor-deficient miceMengwei Zang, Shanqin Xu, Karlene A Maitland-Toolan, et al.
Molecular Endocrinology (Baltimore, Md.)|July 7, 2015
New Insight Into Metformin Action: Regulation of ChREBP and FOXO1 Activities in Endothelial CellsXiaoyu Li, Karen L Kover, Daniel P Heruth, et al.
The Journal of Biological Chemistry|September 9, 2008
Characterization of Ser338 phosphorylation for Raf-1 activationMengwei Zang, Jun Gong, Lingqi Luo, et al.
Gastroenterology|November 5, 2013
Hepatic SIRT1 attenuates hepatic steatosis and controls energy balance in mice by inducing fibroblast growth factor 21Yu Li, Kimberly Wong, Amber Giles, et al.
The Journal of Biological Chemistry|September 7, 2010
SIRT1 deacetylates and inhibits SREBP-1C activity in regulation of hepatic lipid metabolismBhaskar Ponugoti, Dong-Hyun Kim, Zhen Xiao, et al.
Pageof 4