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MC155对G-四链体配体BRACO-19和TMPyP4的全基因组转录反应

Genome-Wide Transcriptional Response of MC155 to G-Quadruplex Ligands BRACO-19 and TMPyP4.

作者信息

Shitikov Egor, Bespiatykh Dmitry, Malakhova Maja, Bespyatykh Julia, Bodoev Ivan, Vedekhina Tatiana, Zaychikova Marina, Veselovsky Vladimir, Klimina Ksenia, Ilina Elena, Varizhuk Anna

机构信息

Federal Research and Clinical Center of Physical-Chemical Medicine of Federal Medical Biological Agency, Moscow, Russia.

出版信息

Front Microbiol. 2022 Mar 4;13:817024. doi: 10.3389/fmicb.2022.817024. eCollection 2022.

Abstract

G-quadruplexes (G4s) are non-canonical DNA structures that could be considered as potential therapeutic targets for antimicrobial compounds, also known as G4-stabilizing ligands. While some of these ligands are shown to have a stabilizing effect, the precise mechanism of antibacterial action has not been fully investigated. Here, we employed genome-wide RNA-sequencing to analyze the response of to inhibitory concentrations of BRACO-19 and TMPyP4 G4 ligands. The expression profile changed (FDR < 0.05, logFC > |1|) for 822 (515↑; 307↓) genes in in response to BRACO-19 and for 680 (339↑; 341↓) genes in response to TMPyP4. However, the analysis revealed no significant ligand-induced changes in the expression levels of G4-harboring genes, genes under G4-harboring promoters, or intergenic regions located on mRNA-like or template strands. Meanwhile, for the BRACO-19 ligand, we found significant changes in the replication and repair system genes, as well as in iron metabolism genes which is, undoubtedly, evidence of the induced stress. For the TMPyP4 compound, substantial changes were found in transcription factors and the arginine biosynthesis system, which may indicate multiple biological targets for this compound.

摘要

G-四链体(G4s)是一种非经典的DNA结构,可被视为抗菌化合物(也称为G4稳定配体)的潜在治疗靶点。虽然其中一些配体已显示出具有稳定作用,但抗菌作用的确切机制尚未得到充分研究。在这里,我们采用全基因组RNA测序来分析对BRACO-19和TMPyP4 G4配体抑制浓度的反应。在对BRACO-19的反应中,822个基因(515个上调;307个下调)的表达谱发生了变化(FDR<0.05,logFC>|1|),在对TMPyP4的反应中,680个基因(339个上调;341个下调)的表达谱发生了变化。然而,分析显示,在含有G4的基因、含有G4的启动子下的基因或位于mRNA样链或模板链上的基因间区域的表达水平上,没有显著的配体诱导变化。同时,对于BRACO-19配体,我们发现复制和修复系统基因以及铁代谢基因有显著变化,这无疑是诱导应激的证据。对于TMPyP4化合物,在转录因子和精氨酸生物合成系统中发现了大量变化,这可能表明该化合物有多个生物学靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee75/8931766/bfa6a3afbec7/fmicb-13-817024-g001.jpg

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