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ACCase 6是分枝杆菌中参与脂肪酸和霉菌酸生物合成的必需乙酰辅酶A羧化酶。

ACCase 6 is the essential acetyl-CoA carboxylase involved in fatty acid and mycolic acid biosynthesis in mycobacteria.

作者信息

Kurth Daniel G, Gago Gabriela M, de la Iglesia Agustina, Bazet Lyonnet Bernardo, Lin Ting-Wan, Morbidoni Héctor R, Tsai Shiou-Chuan, Gramajo Hugo

机构信息

Microbiology Division, Instituto de Biología Molecular y Celular de Rosario (IBR-CONICET), Facultad de Ciencias Bioquímicas y Farmacéuticas, Universidad Nacional de Rosario, Argentina.

Department of Molecular Biology and Biochemistry and Department of Chemistry, University of California, Irvine, CA 92612, USA.

出版信息

Microbiology (Reading). 2009 Aug;155(Pt 8):2664-2675. doi: 10.1099/mic.0.027714-0. Epub 2009 May 7.

Abstract

Mycolic acids are essential for the survival, virulence and antibiotic resistance of the human pathogen Mycobacterium tuberculosis. Inhibitors of mycolic acid biosynthesis, such as isoniazid and ethionamide, have been used as efficient drugs for the treatment of tuberculosis. However, the increase in cases of multidrug-resistant tuberculosis has prompted a search for new targets and agents that could also affect synthesis of mycolic acids. In mycobacteria, the acyl-CoA carboxylases (ACCases) provide the building blocks for de novo fatty acid biosynthesis by fatty acid synthase (FAS) I and for the elongation of FAS I products by the FAS II complex to produce meromycolic acids. By generating a conditional mutant in the accD6 gene of Mycobacterium smegmatis, we demonstrated that AccD6 is the essential carboxyltransferase component of the ACCase 6 enzyme complex implicated in the biosynthesis of malonyl-CoA, the substrate of the two FAS enzymes of Mycobacterium species. Based on the conserved structure of the AccD5 and AccD6 active sites we screened several inhibitors of AccD5 as potential inhibitors of AccD6 and found that the ligand NCI-172033 was capable of inhibiting AccD6 with an IC(50) of 8 microM. The compound showed bactericidal activity against several pathogenic Mycobacterium species by producing a strong inhibition of both fatty acid and mycolic acid biosynthesis at minimal inhibitory concentrations. Overexpression of accD6 in M. smegmatis conferred resistance to NCI-172033, confirming AccD6 as the main target of the inhibitor. These results define the biological role of a key ACCase in the biosynthesis of membrane and cell envelope fatty acids, and provide a new target, AccD6, for rational development of novel anti-mycobacterial drugs.

摘要

分枝菌酸对于人类病原体结核分枝杆菌的存活、毒力和抗生素耐药性至关重要。分枝菌酸生物合成抑制剂,如异烟肼和乙硫异烟胺,已被用作治疗结核病的有效药物。然而,耐多药结核病病例的增加促使人们寻找可能影响分枝菌酸合成的新靶点和药物。在分枝杆菌中,酰基辅酶A羧化酶(ACCase)为脂肪酸合酶(FAS)I从头合成脂肪酸提供构件,并为FAS II复合物延长FAS I产物以产生分枝菌酸提供构件。通过在耻垢分枝杆菌的accD6基因中产生条件突变体,我们证明AccD6是ACCase 6酶复合物中参与丙二酰辅酶A生物合成的必需羧基转移酶成分,丙二酰辅酶A是分枝杆菌属两种FAS酶的底物。基于AccD5和AccD6活性位点的保守结构,我们筛选了几种AccD5抑制剂作为AccD6的潜在抑制剂,发现配体NCI-172033能够以8 microM的IC(50)抑制AccD6。该化合物在最低抑菌浓度下对几种致病性分枝杆菌具有杀菌活性,通过强烈抑制脂肪酸和分枝菌酸的生物合成来实现。耻垢分枝杆菌中accD6的过表达赋予了对NCI-172033的抗性,证实AccD6是该抑制剂的主要靶点。这些结果确定了一种关键ACCase在膜和细胞壁脂肪酸生物合成中的生物学作用,并为合理开发新型抗分枝杆菌药物提供了一个新靶点AccD6。

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