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Design synthesis and evaluation of novel N-1 fluoroquinolone derivatives: probing for binding contact with the active site tyrosine of gyrase

机译:新型N-1氟喹诺酮衍生物的设计合成和评估:探究与陀螺酶活性位点酪氨酸的结合接触

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摘要

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.
机译:拓扑异构酶-氟喹诺酮-DNA三元复合物的结构研究表明,喹诺酮N-1位置和活性位点酪氨酸之间存在一个空腔。具有从N-1位延伸的带正电或芳族基团的氟喹诺酮衍生物被设计用于探测与三元复合物中的磷酸酪氨酸残基的结合接触。虽然在N-1位引入的烷基胺,烷基邻苯二甲酰亚胺和烷基苯基基团可提供对DNA促旋酶的超螺旋活性保持适度抑制的衍生物,但没有保留对DNA促旋酶中毒的能力。因此,在N-1位置添加大和/或长的部分会破坏三元复合物的形成,并且可能通过干扰链断裂反应而保留抑制超螺旋的能力。发现两种衍生物对人拓扑异构酶II的脱级活性具有抑制作用。

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