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The Nonmevalonate Pathway of Isoprenoid Biosynthesis in Mycobacterium tuberculosis Is Essential and Transcriptionally Regulated by Dxs ▿ †

机译:结核分枝杆菌中类异戊二烯生物合成的非甲羟戊酸途径是必需的,并且在转录上受Dxs调控Reg†

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摘要

Mycobacterium tuberculosis synthesizes isoprenoids via the nonmevalonate or DOXP pathway. Previous work demonstrated that three enzymes in the pathway (Dxr, IspD, and IspF) are all required for growth in vitro. We demonstrate the essentiality of the key genes dxs1 and gcpE, confirming that the pathway is of central importance and that the second homolog of the synthase (dxs2) cannot compensate for the loss of dxs1. We looked at the effect of overexpression of Dxr, Dxs1, Dxs2, and GcpE on viability and on growth in M. tuberculosis. Overexpression of dxs1 or dxs2 was inhibitory to growth, whereas overexpression of dxr or gcpE was not. Toxicity is likely to be, at least partially, due to depletion of pyruvate from the cells. Overexpression of dxs1 or gcpE resulted in increased flux through the pathway, as measured by accumulation of the metabolite 4-hydroxy-3-methyl-but-2-enyl pyrophosphate. We identified the functional translational start site and promoter region for dxr and demonstrated that it is expressed as part of a polycistronic mRNA with gcpE and two other genes. Increased expression of this operon was seen in cells overexpressing Dxs1, indicating that transcriptional control is effected by the first enzyme of the pathway via an unknown regulator.
机译:结核分枝杆菌通过非甲羟戊酸或DOXP途径合成类异戊二烯。先前的工作表明该途径中的三种酶(Dxr,IspD和IspF)都是体外生长所需的。我们证明了关键基因dxs1和gcpE的必要性,证实了该途径具有至关重要的意义,并且合酶的第二个同源物(dxs2)无法补偿dxs1的损失。我们研究了Dxr,Dxs1,Dxs2和GcpE过表达对结核分枝杆菌生存能力和生长的影响。 dxs1或dxs2的过表达抑制生长,而dxr或gcpE的过表达则没有抑制作用。毒性可能至少部分是由于丙酮酸从细胞中耗竭所致。 dxs1或gcpE的过表达导致通过该途径的通量增加,这是通过代谢物4-羟基-3-甲基-丁-2-烯基焦磷酸盐的积累来衡量的。我们确定了dxr的功能性翻译起始位点和启动子区域,并证明它被表达为带有gcpE和其他两个基因的多顺反子mRNA的一部分。在过表达Dxs1的细胞中观察到该操纵子的表达增加,表明转录控制受该途径的第一个酶通过未知调节子的影响。

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