Lee Matthew R, Gardinier Kevin M, Gernert Douglas L, Schober Douglas A, Wright Rebecca A, Wang He, Qian Yuewei, Witkin Jeffrey M, Nisenbaum Eric S, Kato Akihiko S
Lilly Biotechnology Center, Eli Lilly and Company , 10300 Campus Point Dr. #200, San Diego, California 92121, United States.
Neuroscience Discovery, Lilly Research Laboratory , 355 E Merril St., Indianapolis, Indiana 46285, United States.
ACS Chem Neurosci. 2017 Dec 20;8(12):2631-2647. doi: 10.1021/acschemneuro.7b00186. Epub 2017 Sep 5.
The forebrain specific AMPA receptor antagonist, LY3130481/CERC-611, which selectively antagonizes the AMPA receptors associated with TARP γ-8, an auxiliary subunit enriched in the forebrain, has potent antiepileptic activities without motor side effects. We designated the compounds with such activities as γ-8 TARP dependent AMPA receptor antagonists (γ-8 TDAAs). In this work, we further investigated the mechanisms of action using a radiolabeled γ-8 TDAA and ternary structural modeling with mutational validations to characterize the LY3130481 binding to γ-8. The radioligand binding to the cells heterologously expressing GluA1 and/or γ-8 revealed that γ-8 TDAAs binds to γ-8 alone without AMPA receptors. Homology modeling of γ-8, based on the crystal structures of a distant TARP homologue, murine claudin 19, in conjunction with knowledge of two γ-8 residues previously identified as critical for the LY3130481 TARP-dependent selectivity provided the basis for a binding mode prediction. This allowed further rational mutational studies for characterization of the structural determinants in TARP γ-8 for LY3130481 activities, both thermodynamically as well as kinetically.
前脑特异性AMPA受体拮抗剂LY3130481/CERC-611可选择性拮抗与TARPγ-8相关的AMPA受体,TARPγ-8是一种在前脑中富集的辅助亚基,该拮抗剂具有强效抗癫痫活性且无运动副作用。我们将具有此类活性的化合物命名为γ-8 TARP依赖性AMPA受体拮抗剂(γ-8 TDAA)。在这项研究中,我们使用放射性标记的γ-8 TDAA以及通过突变验证的三元结构模型进一步研究其作用机制,以表征LY3130481与γ-8的结合。放射性配体与异源表达GluA1和/或γ-8的细胞的结合表明,γ-8 TDAA仅与γ-8结合,而不与AMPA受体结合。基于远亲TARP同源物小鼠claudin 19的晶体结构,结合先前确定的对LY3130481 TARP依赖性选择性至关重要的两个γ-8残基的信息,对γ-8进行同源建模,为结合模式预测提供了基础。这使得我们能够进一步进行合理的突变研究,以从热力学和动力学角度表征TARPγ-8中LY3130481活性的结构决定因素。