4.7 Article

Axial chirality and affinity at the GABAA receptor of triazolobenzodiazepines

Journal

BIOORGANIC & MEDICINAL CHEMISTRY
Volume 64, Issue -, Pages -

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.bmc.2022.116758

Keywords

Axial chirality; Atropisomer; Benzodiazepine; Triazolobenzodiazepine; GABA(A) receptor

Funding

  1. Japan Society for the Promotion of Science [19K06980]
  2. Grants-in-Aid for Scientific Research [19K06980] Funding Source: KAKEN

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Triazolobenzodiazepines with methyl substituents at C1 and C10 positions, as well as a chloro substituent at C2' of the pendant phenyl, were synthesized and their physicochemical properties and affinity at GABA(A) receptors were investigated. The results showed that the (a(1)R, a(2)S) isomers possessed higher activity than the (a(1)S, a(2)R) isomers. The absolute configurations of the compounds were determined based on CD spectra and comparison with reference compounds.
Triazolobenzodiazepines substituted with a methyl group at the C1- and C10-positions and chloro group at C2' of pendant-phenyl were prepared and their physicochemical properties were investigated. The atropisomers of 1,10-disubstituted triazolobenzodiazepines, 1d and 1f, were isolated as (a(1)R, a(2)S) and (a(1)S, a(2)R) isomers. Their absolute configurations were determined on the basis of CD spectra in comparison with those of stereochemically defined 9-methyl-1,4-benzodiazepin-2-ones. Examination of the affinity at the human GABA(A) receptors revealed that each (a(1)R, a(2)S) isomer of 1d and 1f possessed higher activity than its antipode (a(1)S, a(2)R) isomer. It was also found that 1a, which behaves achirally due to the rapid conformational change, had the highest GABAA affinity, equal to that of triazolam. Considering that each eutomer of 1d and 1f is (a(1)R, a(2)S), the conformation of 1a at the binding site of the GABA(A) receptor is expected to be (a(1)R, a(2)S).

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