Pharmacological inhibition of diacylglycerol acyltransferase 1 reduces body weight and modulates gut peptide release--potential insight into mechanism of action

药理学抑制二酰甘油酰基转移酶 1 可减轻体重并调节肠道肽释放——对作用机制的潜在洞察

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作者:Jinqi Liu, Judith N Gorski, Stephen J Gold, Dunlu Chen, Shirley Chen, Gail Forrest, Yoshiki Itoh, Donald J Marsh, David G McLaren, Zhu Shen, Lisa Sonatore, Ester Carballo-Jane, Stephanie Craw, Xiaoming Guan, Bindhu Karanam, Junichi Sakaki, Daphne Szeto, Xinchun Tong, Jianying Xiao, Ryo Yoshimoto, Ho

Conclusion

Treatment with DGAT1 inhibitors improves lipid metabolism and body weight. DGAT1 inhibition leads to enhanced PC production via alternative carbon channeling. Immunohistological studies suggest that DGAT1 inhibitor's effects on plasma gut peptide levels are likely via an indirect mechanism. Overall these data indicate a translational potential towards the clinic.

Methods

Biochemical and stable-label tracer approaches were applied to interrogate the functional activities of compounds K and L on TG synthesis and changes of carbon flow. Energy homeostasis and gut peptide release upon DGAT1 inhibition was conducted in mouse and dog models.

Objective

Investigation was conducted to understand the mechanism of action of diacylglycerol acyltransferase 1 (DGAT1) using small molecules DGAT1 inhibitors, compounds K and L. Design and

Results

Compounds K and L, dose-dependently inhibits post-prandial TG excursion in mouse and dog models. Weight loss studies in WT and Dgat1(-/-) mice, confirmed that the effects of compound K on body weight loss is mechanism-based. Compounds K and L altered incretin peptide release following oral fat challenge. Immunohistochemical studies with intestinal tissues demonstrate lack of detectable DGAT1 immunoreactivity in enteroendocrine cells. Furthermore, (13) C-fatty acid tracing studies indicate that compound K inhibition of DGAT1 increased the production of phosphatidyl choline (PC).

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