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dUTP 酶在耻垢分枝杆菌中是必不可少的。

The dUTPase enzyme is essential in Mycobacterium smegmatis.

机构信息

Institute of Enzymology, RCNS, Hungarian Academy of Sciences, Budapest, Hungary.

出版信息

PLoS One. 2012;7(5):e37461. doi: 10.1371/journal.pone.0037461. Epub 2012 May 24.

Abstract

Thymidine biosynthesis is essential in all cells. Inhibitors of the enzymes involved in this pathway (e.g. methotrexate) are thus frequently used as cytostatics. Due to its pivotal role in mycobacterial thymidylate synthesis dUTPase, which hydrolyzes dUTP into the dTTP precursor dUMP, has been suggested as a target for new antitubercular agents. All mycobacterial genomes encode dUTPase with a mycobacteria-specific surface loop absent in the human dUTPase. Using Mycobacterium smegmatis as a fast growing model for Mycobacterium tuberculosis, we demonstrate that dUTPase knock-out results in lethality that can be reverted by complementation with wild-type dUTPase. Interestingly, a mutant dUTPase gene lacking the genus-specific loop was unable to complement the knock-out phenotype. We also show that deletion of the mycobacteria-specific loop has no major effect on dUTPase enzymatic properties in vitro and thus a yet to be identified loop-specific function seems to be essential within the bacterial cell context. In addition, here we demonstrated that Mycobacterium tuberculosis dUTPase is fully functional in Mycobacterium smegmatis as it rescues the lethal knock-out phenotype. Our results indicate the potential of dUTPase as a target for antitubercular drugs and identify a genus-specific surface loop on the enzyme as a selective target.

摘要

胸苷生物合成在所有细胞中都是必不可少的。因此,参与该途径的酶的抑制剂(例如甲氨蝶呤)经常被用作细胞抑制剂。由于 dUTP 酶在分枝杆菌胸苷合成中起着关键作用,它可以将 dUTP 水解为 dTTP 前体 dUMP,因此被认为是新的抗结核药物的靶标。所有分枝杆菌基因组都编码 dUTP 酶,其具有分枝杆菌特异性表面环,而人类 dUTP 酶中不存在该环。我们使用快速生长的分枝杆菌模式生物耻垢分枝杆菌来证明 dUTP 酶敲除会导致致死性,而用野生型 dUTP 酶互补可以逆转这种致死性。有趣的是,缺乏属特异性环的突变 dUTP 酶基因无法互补敲除表型。我们还表明,分枝杆菌特异性环的缺失对 dUTP 酶的体外酶学特性没有重大影响,因此在细菌细胞环境中,似乎需要一个尚未确定的环特异性功能。此外,我们在这里证明了结核分枝杆菌 dUTP 酶在耻垢分枝杆菌中完全具有功能,因为它挽救了致命的敲除表型。我们的研究结果表明 dUTP 酶作为抗结核药物靶标的潜力,并确定了该酶上的属特异性表面环作为一个选择性靶标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3273/3360063/14cd681c2260/pone.0037461.g001.jpg

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