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首页> 外文期刊>The Journal of biological chemistry >Inhibition of the First Step in Synthesis of the Mycobacterial Cell Wall Core, Catalyzed by the GlcNAc-1-phosphate Transferase WecA, by the Novel Caprazamycin Derivative CPZEN-45
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Inhibition of the First Step in Synthesis of the Mycobacterial Cell Wall Core, Catalyzed by the GlcNAc-1-phosphate Transferase WecA, by the Novel Caprazamycin Derivative CPZEN-45

机译:通过新型辣椒胺衍生物Cpzen-45抑制由GlcNAC-1-磷酸酯转移酶WECA催化的分枝杆菌细胞壁芯的第一步。

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摘要

Because tuberculosis is one of the most prevalent and serious infections, countermeasures against it are urgently required. We isolated the antitubercular agents caprazamycins from the culture of an actinomycete strain and created CPZEN-45 as the most promising derivative of the caprazamycins. Herein, we describe the mode of action of CPZEN-45 first against Bacillus subtilis. Unlike the caprazamycins, CPZEN-45 strongly inhibited incorporation of radiolabeled glycerol into growing cultures and showed antibacterial activity against caprazamycin-resistant strains, including a strain overexpressing translocase-I (MraY, involved in the biosynthesis of peptidoglycan), the target of the caprazamycins. By contrast, CPZEN-45 was not effective against a strain overexpressing undecaprenyl-phosphate–GlcNAc-1-phosphate transferase (TagO, involved in the biosynthesis of teichoic acid), and a mutation was found in the tagO gene of the spontaneous CPZEN-45-resistant strain. This suggested that the primary target of CPZEN-45 in B. subtilis is TagO, which is a different target from that of the parent caprazamycins. This suggestion was confirmed by evaluation of the activities of these enzymes. Finally, we showed that CPZEN-45 was effective against WecA (Rv1302, also called Rfe) of Mycobacterium tuberculosis, the ortholog of TagO and involved in the biosynthesis of the mycolylarabinogalactan of the cell wall of M. tuberculosis. The outlook for WecA as a promising target for the development of antituberculous drugs as a countermeasure of drug resistant tuberculosis is discussed.
机译:由于结核病是最普遍和最严重的感染之一,因此迫切需要对抗它的对策。我们将抗细胞药物从放线菌菌株的培养物中分离出来,并将CPZEN-45作为己唑霉素的最有前途的衍生物产生。在此,我们描述了CPZEN-45首先对枯草芽孢杆菌的作用方式。与己酰胺不同,CPZEN-45强烈抑制放射性标记的甘油的掺入生长培养物中,并显示出对钙唑氏霉素的抗菌菌株的抗菌活性,包括过表达的挥发甲酰基酶-i(MRAY,参与肽聚糖的生物合成的MRAY),己酰胺的毒性。相比之下,CPZEN-45对过表达过赤赤蛋白 - 磷酸盐-1-GlcNAC-1-磷酸盐转移酶(涉及噻吩的生物合成的TAGO)的菌株无效,并且在自发CPZEN-45的TAGO基因中发现突变 - 破坏菌株。这表明B.枯草芽孢杆菌中Cpzen-45的主要靶标是Tago,其是来自母辣椒碱的不同靶标。通过评估这些酶的活性来证实了该建议。最后,我们表明CPZEN-45对抗治愈性结核病的WECA(RV1302,也称为RFE),TAGO的矫形器和参与M.结核病细胞壁的蒙科拉巴尼酰胺的生物合成。讨论了WECA作为开发抗抗抑郁药物作为耐药结核病的对策的有希望的目标。

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