University of KwaZulu-Natal, Congella, Durban, South Africa.
Anaerobe. 2010 Dec;16(6):610-3. doi: 10.1016/j.anaerobe.2010.10.006. Epub 2010 Nov 19.
Mycobacterium tuberculosis has been classified for decades as a strict aerobic species. Whole genome sequencing of the type culture strain H37Rv has revealed the presence of a full set of genes allowing for anaerobic metabolism. Naphthoate synthase (menB) is a key enzyme required for the synthesis of menaquinone, which plays a crucial role in anaerobic electron transport, ultimately resulting in the formation of energy generating intermediates. Interrupting the synthesis of this enzyme will interfere with the production of menaquinone and therefore this enzyme is a potential drug target. This study serves to investigate the role of naphtoate synthase in the survival of M. tuberculosis H37Rv when incubated under oxygen limiting conditions of unagitated liquid culture over 15 weeks. M. tuberculosis H37Rv was grown in Middlebrook 7H9 media. The tubes were kept undisturbed at 37 °C for up to 15 weeks. At selected time points, aliquots of cells were removed and frozen. RNA was simultaneously extracted from all aliquots. The RNA was converted to cDNA for Real-Time PCR on the ABI 7000 SDS. Gene expression was normalized against 16S RNA quantities at each time point. A systematic increase in the expression of the menB gene product was observed over the incubation period with a 4.3-fold increase seen at week 6 (P < 0.001) relative to day 0 and an 85.8-fold increase at week 15 (P < 0.001) relative to day 0. Cells of M. tuberculosis increase menaquinone production during prolonged incubation in broth culture as a mechanism of survival. This study substantiates the menB enzyme to be a putative drug target.
结核分枝杆菌数十年来一直被归类为严格需氧物种。对模式培养株 H37Rv 的全基因组测序揭示了存在一整套允许进行厌氧代谢的基因。萘酸合酶(menB)是合成menaquinone 所必需的关键酶,menaquinone 在厌氧电子传递中起着至关重要的作用,最终导致能量生成中间体的形成。中断该酶的合成将干扰menaquinone 的产生,因此该酶是一个潜在的药物靶点。本研究旨在研究在未搅动的液体培养中氧气限制条件下培养 15 周时,萘酸合酶在结核分枝杆菌 H37Rv 存活中的作用。结核分枝杆菌 H37Rv 在 Middlebrook 7H9 培养基中生长。将试管在 37°C 下保持不摇动,最多 15 周。在选定的时间点,取出等分试样的细胞并冷冻。同时从所有等分试样中提取 RNA。将 RNA 转化为 cDNA,用于 ABI 7000 SDS 的实时 PCR。在每个时间点,根据 16S RNA 数量对基因表达进行归一化。在孵育期间观察到 menB 基因产物的表达呈系统增加,第 6 周时增加了 4.3 倍(P<0.001),与第 0 天相比,第 15 周时增加了 85.8 倍(P<0.001)。结核分枝杆菌细胞在延长的肉汤培养中增加menaquinone 产生作为存活的一种机制。本研究证实了 menB 酶是一个潜在的药物靶点。