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Biotin Protein Ligase Is a Target for New Antibacterials

机译:生物素蛋白连接酶是新型抗菌药物的靶标

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There is a desperate need for novel antibiotic classes to combat the rise of drug resistant pathogenic bacteria, such as Staphylococcus aureus . Inhibitors of the essential metabolic enzyme biotin protein ligase (BPL) represent a promising drug target for new antibacterials. Structural and biochemical studies on the BPL from S. aureus have paved the way for the design and development of new antibacterial chemotherapeutics. BPL employs an ordered ligand binding mechanism for the synthesis of the reaction intermediate biotinyl-5′-AMP from substrates biotin and ATP. Here we review the structure and catalytic mechanism of the target enzyme, along with an overview of chemical analogues of biotin and biotinyl-5′-AMP as BPL inhibitors reported to date. Of particular promise are studies to replace the labile phosphoroanhydride linker present in biotinyl-5′-AMP with alternative bioisosteres. A novel in situ click approach using a mutant of S. aureus BPL as a template for the synthesis of triazole-based inhibitors is also presented. These approaches can be widely applied to BPLs from other bacteria, as well as other closely related metabolic enzymes and antibacterial drug targets.
机译:迫切需要新型抗生素来抵抗耐药性病原细菌如金黄色葡萄球菌的出现。基本代谢酶生物素蛋白连接酶(BPL)的抑制剂代表了新型抗菌药物的有希望的靶标。对金黄色葡萄球菌BPL的结构和生化研究为新型抗菌化学疗法的设计和开发铺平了道路。 BPL采用有序的配体结合机制,从底物生物素和ATP合成反应中间体生物素5'-AMP。在这里,我们综述了目标酶的结构和催化机理,并概述了迄今为止报道的生物素和生物素-5'-AMP作为BPL抑制剂的化学类似物。特别有希望的研究是用替代的生物等排体替代生物素-5'-AMP中存在的不稳定的磷酸酐连接体。还提出了一种新颖的原位点击方法,该方法使用金黄色葡萄球菌BPL突变体作为合成三唑类抑制剂的模板。这些方法可广泛应用于其他细菌的BPL,以及其他密切相关的代谢酶和抗菌药物靶标。

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