Design, synthesis, and pharmacological characterization of (+)-2-aminobicyclo[3.1.0]hexane-2,6-dicarboxylic acid (LY354740): A potent, selective, and orally active group 2 metabotropic glutamate receptor agonist possessing anticonvulsant and anxiolytic properties
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Monn, JA
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机构:ELI LILLY & CO,LILLY CORP CTR,PROC RES DIV,INDIANAPOLIS,IN 46285
Monn, JA
Valli, MJ
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Valli, MJ
Massey, SM
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Massey, SM
Wright, RA
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Wright, RA
Salhoff, CR
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Salhoff, CR
Johnson, BG
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Johnson, BG
Howe, T
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Howe, T
Alt, CA
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Alt, CA
Rhodes, GA
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Rhodes, GA
Robey, RL
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Robey, RL
Griffey, KR
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Griffey, KR
Tizzano, JP
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Tizzano, JP
Kallman, MJ
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Kallman, MJ
Helton, DR
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Helton, DR
Schoepp, DD
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Schoepp, DD
机构:
[1] ELI LILLY & CO,LILLY CORP CTR,PROC RES DIV,INDIANAPOLIS,IN 46285
[2] ELI LILLY & CO,LILLY CORP CTR,TOXICOL RES DIV,INDIANAPOLIS,IN 46285
[3] LILLY RES CTR LTD,WINDLESHAM GU20 6PH,SURREY,ENGLAND
2-Aminobicyclo[3.1.0]hexane-2,6-dicarboxylic acid (9) was designed as a conformationally constrained analog of glutamic acid. For 9, the key torsion angles (tau(1) and tau(2)) which determine the relative positions of the alpha-amino acid and distal carboxyl functionalities are constrained where tau(1) = 166.9 degrees or 202 degrees and tau(2) = 156 degrees, respectively. We hypothesized that 9 would closely approximate the proposed bioactive conformation of glutamate when acting at group 2 metabotropic glutamate receptors (mGluRs). The racemic target molecule (+/-)-9, its C2-diastereomer (+/-)-16, and its enantiomers (+)-9 (LY354740) and (-)-9 (LY366563) were prepared by an efficient, stereocontrolled, and high-yielding synthesis from 2-cyclopentenone. Our hypothesis that 9 could interact with high affinity and specificity at group 2 mGluRs has been supported by the observation that (+/-)-9 (EC(50) = 0.086 +/- 0.025 mu M) and its enantiomer (=)-9 (EC(50) = 0.055 +/- 0.017 mu M) are highly potent agonists for group 2 mGluRs in the rat cerebral cortical slice preparation (suppression of forskolin-stimulated cAMP formation) possessing no activity at other glutamate receptor sites (iGluR or group 1 mGluR) at concentrations up to 100 mu M. Importantly, the mGluR agonist effects of (+)-9 are evident following oral administration in mice in both the elevated plus maze model of anxiety (ED(50) = 0.5 mg/kg) and in the ACPD-induced limbic seizure model (ED(50) = 45.6 mg/kg). Thus, (+)-9 is the first orally active group 2 mGluR agonist described thus far and is an important tool for studying the effects of compounds of this class in humans.