Recent progress in the discovery of mGluâ allosteric modulators has suggested the modulation of mGluâ could offer possible treatment for a number of central nervous system disorders; however, the available chemotypes are inadequate to fully investigate the therapeutic potential of mGluâ modulation. To address this issue, we used a fluorescence-based high-throughput screening assay to screen an allosteric modulator-biased library of compounds to generate structurally diverse mGluâ negative allosteric modulator hits for chemical optimization. Herein, we describe the discovery and characterization of a novel mGluâ chemotype. This series of succinimide negative allosteric modulators, exemplified by VU0410425, exhibited potent inhibitory activity at rat mGluâ but was, surprisingly, inactive at human mGluâ. VU0410425 and a set of chemically diverse mGluâ negative allosteric modulators previously reported in the literature were utilized to examine this species disconnect between rat and human mGluâ activity. Mutation of the key transmembrane domain residue 757 and functional screening of VU0410425 and the literature compounds suggests that amino acid 757 plays a role in the activity of these compounds, but the contribution of the residue is scaffold specific, ranging from critical to minor. The operational model of allosterism was used to estimate the binding affinities of each compound to compare to functional data. This novel series of mGluâ negative allosteric modulators provides valuable insight into the pharmacology underlying the disconnect between rat and human mGluâ activity, an issue that must be understood to progress the therapeutic potential of allosteric modulators of mGluâ.
A novel class of succinimide-derived negative allosteric modulators of metabotropic glutamate receptor subtype 1 provides insight into a disconnect in activity between the rat and human receptors.
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作者:Cho Hyekyung P, Engers Darren W, Venable Daryl F, Niswender Colleen M, Lindsley Craig W, Conn P Jeffrey, Emmitte Kyle A, Rodriguez Alice L
| 期刊: | ACS Chemical Neuroscience | 影响因子: | 3.900 |
| 时间: | 2014 | 起止号: | 2014 Jul 16; 5(7):597-610 |
| doi: | 10.1021/cn5000343 | ||
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