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3-Phenyl substituted 67-dimethoxyisoquinoline derivatives as FtsZ-targeting antibacterial agents

机译:作为FTSZ靶向抗菌剂的3-苯基取代67-二甲氧基异喹啉衍生物

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摘要

The emergence of multidrug-resistant bacteria has created an urgent need for antibiotics with a novel mechanism of action. The bacterial cell division protein FtsZ is an attractive target for the development of novel antibiotics. The benzo[c]phenanthridinium sanguinarine and the dibenzo[a,g]quinolizin-7-ium berberine are two structurally similar plant alkaloids that alter FtsZ function. The presence of a hydrophobic functionality at either the 1-position of 5-methylbenzo[c]phenanthridinium derivatives or the 2-position of dibenzo[a,g]quinolizin-7-ium derivatives is associated with significantly enhanced antibacterial activity. 3-Phenylisoquinoline represents a subunit within the ring-systems of both of these alkaloids. Several 3-phenylisoquinolines and 3-phenylisoquinolinium derivatives have been synthesized and evaluated for antibacterial activity against Staphylococcus aureus and Enterococcus faecalis, including multidrug-resistant strains of methicillin-resistant S. aureus (MRSA) and vancomycin-resistant E. faecalis (VRE). A number of derivatives were found to have activity against both MRSA and VRE. The binding of select compounds to S. aureus FtsZ (SaFtsZ) was demonstrated and characterized using fluorescence spectroscopy. In addition, the compounds were shown to act as stabilizers of SaFtsZ polymers and concomitant inhibitors of SaFtsZ GTPase activity. Toxicological assessment of select compounds revealed minimal cross-reaction mammalian β-tubulin as well as little or no human cytotoxicity.
机译:耐多药细菌的出现迫切需要具有新颖作用机制的抗生素。细菌细胞分裂蛋白FtsZ是开发新型抗生素的有吸引力的靶标。苯并[c]菲啶鎓血红碱碱和二苯并[a,g]喹啉嗪-7-小ber碱是改变FtsZ功能的两种结构相似的植物生物碱。在5-甲基苯并[c]菲啶鎓衍生物的1-位或在二苯并[a,g]喹啉嗪-7-鎓衍生物的2-位上存在疏水性官能团与显着增强的抗菌活性有关。 3-苯基异喹啉代表这两种生物碱的环系统内的一个亚基。已经合成了几种3-苯基异喹啉和3-苯基异喹啉鎓衍生物并评估了其对金黄色葡萄球菌和粪肠球菌的抗菌活性,包括耐甲氧西林金黄色葡萄球菌(MRSA)和耐万古霉素的粪肠球菌(VRE)的多重耐药菌株。发现许多衍生物对MRSA和VRE均具有活性。使用荧光光谱法证明并表征了选择的化合物与金黄色葡萄球菌FtsZ(SaFtsZ)的结合。此外,该化合物还显示出可作为SaFtsZ聚合物的稳定剂和SaFtsZ GTPase活性的伴随抑制剂。所选化合物的毒理学评估显示,哺乳动物的β-微管蛋白交叉反应最少,对人的细胞毒性很小或没有。

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