Novel Indole-Based Peroxisome Proliferator-Activated Receptor Agonists:  Design, SAR, Structural Biology, and Biological Activities

Neeraj Mahindroo(National Health Research Institutes), Chien-Fu Huang(National Tsing Hua University), Yi-Huei Peng(National Tsing Hua University), Chiung-Chiu Wang(National Health Research Institutes), Chun-Chen Liao(National Tsing Hua University), Tzu‐Wen Lien(National Tsing Hua University), Santhosh Kumar Chittimalla(National Health Research Institutes), Wei‐Jan Huang(National Health Research Institutes), Chia-Hua Chai(National Health Research Institutes), Ekambaranellore Prakash(National Tsing Hua University), Ching-Ping Chen(National Tsing Hua University), Tsu‐An Hsu(National Tsing Hua University), Cheng-Hung Peng(National Tsing Hua University), I-Lin Lu(National Health Research Institutes), Ling-Hui Lee(National Health Research Institutes), Yi-Wei Chang(National Tsing Hua University), Wei-Cheng Chen(National Tsing Hua University), Y. T. Chou(National Health Research Institutes), Chiung‐Tong Chen(National Tsing Hua University), Chandra Goparaju(National Health Research Institutes), Yuan‐Shou Chen(National Health Research Institutes), Shih-Jung Lan(National Tsing Hua University), Mingchen Yu(National Health Research Institutes), Xin Chen(National Tsing Hua University), Yu‐Sheng Chao(National Tsing Hua University), Su‐Ying Wu(National Tsing Hua University), Hsing‐Pang Hsieh(National Tsing Hua University)
Journal of Medicinal Chemistry
November 18, 2005
Cited by 87Open Access
Full Text

Abstract

The synthesis and structure-activity relationship studies of novel indole derivatives as peroxisome proliferator-activated receptor (PPAR) agonists are reported. Indole, a drug-like scaffold, was studied as a core skeleton for the acidic head part of PPAR agonists. The structural features (acidic head, substitution on indole, and linker) were optimized first, by keeping benzisoxazole as the tail part, based on binding and functional activity at PPARgamma protein. The variations in the tail part, by introducing various heteroaromatic ring systems, were then studied. In vitro evaluation led to identification of a novel series of indole compounds with a benzisoxazole tail as potent PPAR agonists with the lead compound 14 (BPR1H036) displaying an excellent pharmacokinetic profile in BALB/c mice and an efficacious glucose lowering activity in KKA(y) mice. Structural biology studies of 14 showed that the indole ring contributes strong hydrophobic interactions with PPARgamma and could be an important moiety for the binding to the protein.


Related Papers

No related papers found

Powered by citation graph analysis