Rajappan V P, Hosmane R S
Department of Chemistry & Biochemistry, University of Maryland, Baltimore County (UMBC) 21250, USA.
Nucleosides Nucleotides. 1999 Apr-May;18(4-5):835-6. doi: 10.1080/15257779908041573.
In an effort to biochemical mode of guanase inhibition as well as the structure-activity relationships of azepinomycin, five analogues (I-V) of azepinomycin were synthesized and screened against guanase from rabbit liver. Our results suggest that while the 6-hydroxy group of azepinomycin is crucial for activity, its putative transition state mode of inhibition of guanase is questionable. The additional H-bonding sites at position 5, and hydrophobic groups in and around position 3 of azepinomycin appear to be tolerated, and may in fact enhance the potency of inhibition.