Takamasa Higashimori
Yale University
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Publication
Featured researches published by Takamasa Higashimori.
Journal of Clinical Investigation | 2004
Jason K. Kim; Ruth E. Gimeno; Takamasa Higashimori; Hyo-Jeong Kim; Hyejeong Choi; Sandhya Punreddy; Robin L. Mozell; Guo Tan; Alain Stricker-Krongrad; David Hirsch; Jonathan J. Fillmore; Zhen-Xiang Liu; Jianying Dong; Gary W. Cline; Andreas Stahl; Harvey F. Lodish; Gerald I. Shulman
Insulin resistance in skeletal muscle plays a major role in the development of type 2 diabetes and may be causally associated with increases in intramuscular fatty acid metabolites. Fatty acid transport protein 1 (FATP1) is an acyl-CoA synthetase highly expressed in skeletal muscle and modulates fatty acid uptake and metabolism by converting fatty acids into fatty acyl-CoA. To investigate the role of FATP1 in glucose homeostasis and in the pathogenesis of insulin resistance, we examined the effect of acute lipid infusion or chronic high-fat feeding on insulin action in FATP1 KO mice. Whole-body adiposity, adipose tissue expression of adiponectin, intramuscular fatty acid metabolites, and insulin sensitivity were not altered in FATP1 KO mice fed a regular chow diet. In contrast, FATP1 deletion protected the KO mice from fat-induced insulin resistance and intramuscular accumulation of fatty acyl-CoA without alteration in whole-body adiposity. These findings demonstrate an important role of intramuscular fatty acid metabolites in causing insulin resistance and suggest that FATP1 may be a novel therapeutic target for the treatment of insulin resistance and type 2 diabetes.
Journal of Clinical Investigation | 2007
Cheol Soo Choi; Jonathan J. Fillmore; Jason K. Kim; Zhen-Xiang Liu; Sheene Kim; Emily F. Collier; Ameya Kulkarni; Alberto Distefano; Yu-Jin Hwang; Mario Kahn; Yan Chen; Chunli Yu; Irene K. Moore; Richard M. Reznick; Takamasa Higashimori; Gerald I. Shulman
Insulin resistance is a major factor in the pathogenesis of type 2 diabetes and is strongly associated with obesity. Increased concentrations of intracellular fatty acid metabolites have been postulated to interfere with insulin signaling by activation of a serine kinase cascade involving PKCtheta in skeletal muscle. Uncoupling protein 3 (UCP3) has been postulated to dissipate the mitochondrial proton gradient and cause metabolic inefficiency. We therefore hypothesized that overexpression of UCP3 in skeletal muscle might protect against fat-induced insulin resistance in muscle by conversion of intramyocellular fat into thermal energy. Wild-type mice fed a high-fat diet were markedly insulin resistant, a result of defects in insulin-stimulated glucose uptake in skeletal muscle and hepatic insulin resistance. Insulin resistance in these tissues was associated with reduced insulin-stimulated insulin receptor substrate 1- (IRS-1-) and IRS-2-associated PI3K activity in muscle and liver, respectively. In contrast, UCP3-overexpressing mice were completely protected against fat-induced defects in insulin signaling and action in these tissues. Furthermore, these changes were associated with a lower membrane-to-cytosolic ratio of diacylglycerol and reduced PKCtheta activity in whole-body fat-matched UCP3 transgenic mice. These results suggest that increasing mitochondrial uncoupling in skeletal muscle may be an excellent therapeutic target for type 2 diabetes mellitus.
Diabetes | 2004
Hyo-Jeong Kim; Takamasa Higashimori; So-Young Park; Hyejeong Choi; Jianying Dong; Yoon-Jung Kim; Hye-Lim Noh; You-Ree Cho; Gary W. Cline; Young-Bum Kim; Jason K. Kim
Diabetes | 2005
So Young Park; You Ree Cho; Hyo Jeong Kim; Takamasa Higashimori; Cheryl Danton; Mi Kyung Lee; Asim Dey; Beverly A. Rothermel; Young-Bum Kim; April Kalinowski; Kerry S. Russell; Jason K. Kim
Diabetes | 2005
So Young Park; You Ree Cho; Brian N. Finck; Hyo Jeong Kim; Takamasa Higashimori; Eun Gyoung Hong; Mi Kyung Lee; Cheryl Danton; Swati Deshmukh; Gary W. Cline; Julie J. Wu; Anton M. Bennett; Beverly A. Rothermel; April Kalinowski; Kerry S. Russell; Young-Bum Kim; Daniel P. Kelly; Jason E. Kim
American Journal of Physiology-endocrinology and Metabolism | 2005
So-Young Park; Hyo-Jeong Kim; Shupei Wang; Takamasa Higashimori; Jianying Dong; Yoon-Jung Kim; Gary W. Cline; Hong Li; Marc Prentki; Gerald I. Shulman; Grant A. Mitchell; Jason K. Kim
Diabetes | 2003
Jason K. Kim; Jonathan J. Fillmore; Oksana Gavrilova; Lily C. Chao; Takamasa Higashimori; Hyejeong Choi; Hyo-Jeong Kim; Chunli Yu; Yan Chen; Xianqin Qu; Martin Haluzik; Marc L. Reitman; Gerald I. Shulman
Diabetes | 2005
Jason K. Kim; Hyo-Jeong Kim; So-Young Park; Anna Cederberg; Rickard Westergren; Daniel Nilsson; Takamasa Higashimori; You-Ree Cho; Zhen-Xiang Liu; Jianying Dong; Gary W. Cline; Sven Enerbäck; Gerald I. Shulman
American Journal of Physiology-endocrinology and Metabolism | 2006
So-Young Park; You-Ree Cho; Hyo-Jeong Kim; Eun-Gyoung Hong; Takamasa Higashimori; Sang Jun Lee; Ira J. Goldberg; Gerald I. Shulman; Sonia M. Najjar; Jason K. Kim
American Journal of Physiology-endocrinology and Metabolism | 2007
You-Ree Cho; Hyo-Jeong Kim; So-Young Park; Hwi Jin Ko; Eun-Gyoung Hong; Takamasa Higashimori; Zhiyou Zhang; Dae Young Jung; M. Shamsul Ola; Kathryn F. LaNoue; Edward H. Leiter; Jason K. Kim