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利用配体连接策略鉴定新型共价PPARγ激动剂

Identification of a New Type of Covalent PPARγ Agonist using a Ligand-Linking Strategy.

作者信息

Ohtera Anna, Miyamae Yusaku, Yoshida Kotaro, Maejima Kazuhiro, Akita Toru, Kakizuka Akira, Irie Kazuhiro, Masuda Seiji, Kambe Taiho, Nagao Masaya

机构信息

Nippon Shinyaku CO., LTD. , Kyoto 601-8550, Japan.

出版信息

ACS Chem Biol. 2015 Dec 18;10(12):2794-804. doi: 10.1021/acschembio.5b00628. Epub 2015 Oct 12.

DOI:10.1021/acschembio.5b00628
PMID:26414848
Abstract

Peroxisome proliferator-activated receptor γ (PPARγ) is a ligand-activated transcription factor that plays an important role in adipogenesis and glucose metabolism. The ligand-binding pocket (LBP) of PPARγ has a large Y-shaped cavity with multiple subpockets where multiple ligands can simultaneously bind and cooperatively activate PPARγ. Focusing on this unique property of the PPARγ LBP, we describe a novel two-step cell-based strategy to develop PPARγ ligands. First, a combination of ligands that cooperatively activates PPARγ was identified using a luciferase reporter assay. Second, hybrid ligands were designed and synthesized. For proof of concept, we focused on covalent agonists, which activate PPARγ through a unique activation mechanism regulated by a covalent linkage with the Cys285 residue in the PPARγ LBP. Despite their biological significance and pharmacological potential, few covalent PPARγ agonists are known except for endogenous fatty acid metabolites. With our strategy, we determined that plant-derived cinnamic acid derivatives cooperatively activated PPARγ by combining with GW9662, an irreversible antagonist. GW9662 covalently reacts with the Cys285 residue. A docking study predicted that a cinnamic acid derivative can bind to the open cavity in GW9662-bound PPARγ LBP. On the basis of the putative binding mode, structures of both ligands were linked successfully to create a potent PPARγ agonist, which enhanced the transactivation potential of PPARγ at submicromolar levels through covalent modification of Cys285. Our approach could lead to the discovery of novel high-potency PPARγ agonists.

摘要

过氧化物酶体增殖物激活受体γ(PPARγ)是一种配体激活的转录因子,在脂肪生成和葡萄糖代谢中起重要作用。PPARγ的配体结合口袋(LBP)有一个大的Y形腔,带有多个亚口袋,多个配体可同时结合并协同激活PPARγ。基于PPARγ LBP的这一独特性质,我们描述了一种新颖的基于细胞的两步策略来开发PPARγ配体。首先,使用荧光素酶报告基因测定法鉴定出协同激活PPARγ的配体组合。其次,设计并合成了杂合配体。为了验证概念,我们专注于共价激动剂,其通过与PPARγ LBP中Cys285残基的共价连接所调节的独特激活机制来激活PPARγ。尽管它们具有生物学意义和药理潜力,但除了内源性脂肪酸代谢产物外,已知的共价PPARγ激动剂很少。通过我们的策略,我们确定植物来源的肉桂酸衍生物与不可逆拮抗剂GW9662结合可协同激活PPARγ。GW9662与Cys285残基发生共价反应。一项对接研究预测,肉桂酸衍生物可与结合GW9662的PPARγ LBP中的开放腔结合。基于推测的结合模式,成功连接了两种配体的结构以创建一种有效的PPARγ激动剂,该激动剂通过对Cys285进行共价修饰,在亚微摩尔水平增强了PPARγ的反式激活潜力。我们的方法可能会导致发现新型高效PPARγ激动剂。

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