Displaying 1 - 1 of 1
Results per page
10
25
50

Article: Design, synthesis, and evaluation of novel N-1 fluroquinolone derivatives

Image
Description
Article co-written by Northwestern Health Sciences University faculty member Lisa Oppegard. The article was published in Bioorganic & Medicinal Chemistry Letters and was made available online by HHS Public Access in June 2019. Citation: Bioorg Med Chem Lett. 2018 June 01; 28(10); 1903-1910.
Abstract

Structural studies of topoisomerase-fluoroquinolone-DNA ternary complexes revealed a cavity between the quinolone N-1 position and the active site tyrosine. Fluoroquinolone derivatives having positively charged or aromatic moieties extended from the N-1 position were designed to probe for binding contacts with the phosphotyrosine residue in ternary complex. While alkylamine, alkylphthalimide, and alkylphenyl groups introduced at the N-1 position afforded derivatives that maintained modest inhibition of the supercoiling activity of DNA gyrase, none retained ability to poison DNA gyrase. Thus, the addition of a large and/or long moiety at the N-1 position disrupts ternary complex formation, and retained ability to inhibit supercoiling is likely through interference with the strand breakage reaction. Two derivatives were found to possess inhibitory effects on the decatenation activity of human topoisomerase II.