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SR2067 reveals a unique kinetic and structural signature for PPARgamma partial agonism

机译:sR2067揭示了ppaRγ部分激动的独特动力学和结构特征

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摘要

Synthetic full agonists of PPARγ have been prescribed for the treatment of diabetes due to their ability to regulate glucose homeostasis and insulin sensitization. While the use of full agonists of PPARγ has been hampered due to severe side effects, partial agonists have shown promise due to their decreased incidence of such side effects in preclinical models. No kinetic information has been forthcoming in regard to the mechanism of full versus partial agonism of PPARγ to date. Here, we describe the discovery of a partial agonist, SR2067. A co-crystal structure obtained at 2.2 Å resolution demonstrates that interactions with the β-sheet are driven exclusively via hydrophobic interactions mediated through a naphthalene group, an observation that is unique from other partial agonists. Surface plasmon resonance revealed that SR2067 binds to the receptor with higher affinity (KD = 513 nM) as compared to that of full agonist rosiglitazone, yet it has a much slower off rate compared to that of rosiglitazone.
机译:由于PPARγ具有调节葡萄糖稳态和胰岛素敏感性的能力,因此已开列了PPARγ的合成全效激动剂。尽管由于严重的副作用而阻碍了PPARγ完全激动剂的使用,但由于部分激动剂在临床前模型中降低了此类副作用的发生率,因此显示出了希望。迄今为止,尚无关于PPARγ完全或部分激动作用机理的动力学信息。在这里,我们描述了部分激动剂SR2067的发现。在2.2Å分辨率下获得的共晶体结构表明,与β-折叠的相互作用完全是由萘基团介导的疏水相互作用驱动的,这一发现与其他部分激动剂不同。表面等离振子共振表明,与完全激动剂罗格列酮相比,SR2067以更高的亲和力(KD = 513 nM)与受体结合,但与罗格列酮相比其离解速率要慢得多。

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