Slayden R A, Barry C E
Tuberculosis Research Section, Laboratory of Host Defenses, NIAID, NIH, 12441 Parklawn Dr, Rockville, MD 20852, USA.
Tuberculosis (Edinb). 2002;82(4-5):149-60. doi: 10.1054/tube.2002.0333.
Mycobacterium tuberculosis has two discrete beta-ketoacyl synthases encoded by kasA and kasB that are located in tandem within a five-gene operon that has been implicated in isoniazid-sensitivity and mycolic acid synthesis. We have developed an in vitro meromycolic acid synthase assay to elucidate the anabolic role of these enzymes. Overproduction of KasA and KasB individually and together in M. smegmatis enabled cell-free incorporation of [(14)C]malonyl-CoA into lipids whose chain length was dependent upon the M. tuberculosis elongating enzyme used. KasA specifically elongated palmitoyl-CoA to monounsaturated fatty acids that averaged 40 carbons in length. KasB hyperproduction in the presence of KasA produced longer chain multiunsaturated hydrocarbons averaging 54 carbons in length. These products comigrated with a synthetic standard of meromycolic acid and their production was sensitive to isoniazid, thiolactomycin, and triclosan. KasA mutations associated with isoniazid resistance produced an enzyme that had a diminished overall catalytic activity but conferred enhanced resistance to isoniazid. In vivo analysis confirmed that overexpression of each of the four mutant KasAs enhanced isoniazid resistance when compared to overexpression of wild-type KasA. These results suggest discrete anabolic roles for both KasA and KasB in mycolic acid synthesis and substantiate the involvement of KasA mutations in isoniazid resistance.
结核分枝杆菌有两个由kasA和kasB编码的离散β-酮酰基合成酶,它们串联位于一个五基因操纵子中,该操纵子与异烟肼敏感性和分枝菌酸合成有关。我们开发了一种体外分枝菌酸合酶测定法来阐明这些酶的合成代谢作用。在耻垢分枝杆菌中分别或共同过量表达KasA和KasB,能使[(14)C]丙二酰辅酶A在无细胞体系中掺入脂质,其链长取决于所使用的结核分枝杆菌延伸酶。KasA特异性地将棕榈酰辅酶A延伸为平均长度为40个碳的单不饱和脂肪酸。在KasA存在的情况下过量表达KasB会产生平均长度为54个碳的更长链多不饱和烃。这些产物与分枝菌酸的合成标准品迁移一致,并且它们的产生对异烟肼、硫霉素和三氯生敏感。与异烟肼耐药相关的KasA突变产生的一种酶,其总体催化活性降低,但对异烟肼的耐药性增强。体内分析证实,与野生型KasA的过表达相比,四种突变型KasA中的每一种的过表达都增强了异烟肼耐药性。这些结果表明KasA和KasB在分枝菌酸合成中具有不同的合成代谢作用,并证实了KasA突变与异烟肼耐药性有关。