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核糖-5-磷酸异构酶基因的破坏可增加细菌对抗生素的敏感性。

Disruptions of Genes Encoding Ribose-5-Phosphate Isomerases in Increases Sensitivity of Bacteria to Antibiotics.

机构信息

Engelhardt Institute of Molecular Biology, Russian Academy of Science, 119991 Moscow, Russia.

出版信息

Cells. 2024 Nov 19;13(22):1915. doi: 10.3390/cells13221915.

Abstract

In cells, the main enzymes involved in pentose interconversion are ribose-5-phosphate isomerases RpiA and RpiB and ribulose-5-phosphate epimerase Rpe. The inactivation of limits ribose-5-phosphate (R5P) synthesis via the oxidative branch of the pentose phosphate pathway (PPP) and unexpectedly results in antibiotic supersensitivity. This type of metabolism is accompanied by significant changes in the level of reducing equivalents of NADPH and glutathione, as well as a sharp drop in the ATP pool. However, this redox and energy imbalance does not lead to the activation of the oxidative stress defense system but the increased sensitivity to oxidants paraquat and HO. The deletion of leads to a significant increase in the activity of transketalase (Tkt), a key enzyme of the nonoxidative branch of the PPP and increased sensitivity to ribose added in the growth medium. The phenotype of supersensitivity of to antibiotics and ribose can be suppressed by activating the utilization of sedoheptulose-7-phosphate, which originates from R5P, to LPS synthesis or limitation of nucleoside catabolism by the inactivation of the DeoB enzyme, responsible for conversion of ribose-1-phospate to R5P. Our results indicate that the induction of unidirectional synthesis of R5P is the cause of supersensitivity to antibiotics in mutant.

摘要

在细胞中,参与戊糖相互转化的主要酶是核糖-5-磷酸异构酶 RpiA 和 RpiB 以及核酮糖-5-磷酸差向异构酶 Rpe。RpiA 的失活限制了戊糖磷酸途径(PPP)的氧化分支中的核糖-5-磷酸(R5P)合成,出人意料的是导致抗生素超敏。这种代谢伴随着 NADPH 和谷胱甘肽的还原当量水平的显著变化,以及 ATP 池的急剧下降。然而,这种氧化还原和能量失衡不会导致 氧化应激防御系统的激活,而是导致对氧化剂百草枯和 HO 的敏感性增加。RpiA 的缺失导致转酮醇酶(Tkt)的活性显著增加,Tkt 是 PPP 的非氧化分支的关键酶,并增加了对生长培养基中添加的核糖的敏感性。通过激活 sedoheptulose-7-磷酸的利用来抑制 RpiA 对抗生素和核糖的超敏表型,sedoheptulose-7-磷酸来源于 R5P,可以用于 LPS 合成,或通过失活 DeoB 酶来限制核苷分解代谢,DeoB 酶负责将核糖-1-磷酸转化为 R5P。我们的结果表明,R5P 单向合成的诱导是 RpiA 突变体对抗生素超敏的原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e78/11592462/8362df1725ad/cells-13-01915-g001.jpg

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