G C Bibek, Zhou Peng, Naha Arindam, Gu Jianhua, Wu Chenggang
Department of Microbiology & Molecular Genetics, The University of Texas Health Science Center , Houston, Texas, USA.
Houston Methodist Hospital Research Institute , Houston, Texas, USA.
Appl Environ Microbiol. 2023 Sep 28;89(9):e0066723. doi: 10.1128/aem.00667-23. Epub 2023 Sep 11.
Inducible gene expression systems are important for studying bacterial gene function, yet most exhibit leakage. In this study, we engineered a leakage-free hybrid system for precise gene expression controls in by integrating the xylose-inducible expression system with the theophylline-responsive riboswitch. This innovative method enables concurrent control of target gene expression at both transcription and translation initiation levels. Using luciferase and the indole-producing enzyme tryptophanase (TnaA) as reporters, we demonstrated that the hybrid system displays virtually no observable signal in the absence of inducers. We employed this system to express FtsX, a protein related to fusobacterial cytokinesis, in an mutant strain, unveiling a dose-dependent manner in FtsX production. Without inducers, cells form long filaments, while increasing FtsX levels by increasing inducer concentrations led to a gradual reduction in cell length until normal morphology was restored. Crucially, this system facilitated essential gene investigation, identifying the signal peptidase gene as vital for . LepB's essentiality stems from depletion, affecting outer membrane biogenesis and cell division. This novel hybrid system holds the potential for advancing research on essential genes and accurate gene regulation in . IMPORTANCE , an anaerobic bacterium prevalent in the human oral cavity, is strongly linked to periodontitis and can colonize areas beyond the oral cavity, such as the placenta and gastrointestinal tract, causing adverse pregnancy outcomes and promoting colorectal cancer growth. Given 's clinical significance, research is underway to develop targeted therapies to inhibit its growth or eradicate the bacterium specifically. Essential genes, crucial for bacterial survival, growth, and reproduction, are promising drug targets. A leak-free-inducible gene expression system is needed for studying these genes, enabling conditional gene knockouts and elucidating the importance of those essential genes. Our study identified as the essential gene by first generating a conditional gene mutation in . Combining a xylose-inducible system with a riboswitch facilitated the analysis of essential genes in , paving the way for potential drug development targeting this bacterium for various clinical applications.
可诱导基因表达系统对于研究细菌基因功能很重要,但大多数都存在渗漏现象。在本研究中,我们通过将木糖诱导表达系统与茶碱响应性核糖开关整合,构建了一种用于在[具体细菌名称未给出]中进行精确基因表达控制的无渗漏杂交系统。这种创新方法能够在转录和翻译起始水平同时控制靶基因表达。使用荧光素酶和产吲哚酶色氨酸酶(TnaA)作为报告基因,我们证明在没有诱导剂的情况下,杂交系统几乎没有可观察到的信号。我们利用该系统在[具体细菌名称未给出]的突变菌株中表达与梭杆菌胞质分裂相关的蛋白质FtsX,揭示了FtsX产生的剂量依赖性方式。在没有诱导剂的情况下,细胞形成长丝,而通过增加诱导剂浓度来提高FtsX水平会导致细胞长度逐渐缩短,直至恢复正常形态。至关重要的是,该系统有助于对必需基因进行研究,确定信号肽酶基因LepB对[具体细菌名称未给出]至关重要。LepB的必需性源于其缺失会影响外膜生物合成和细胞分裂。这种新型杂交系统具有推进对[具体细菌名称未给出]中必需基因和精确基因调控研究的潜力。重要性:[具体细菌名称未给出]是一种在人类口腔中普遍存在的厌氧菌,与牙周炎密切相关,并且可以在口腔以外的区域定殖,如胎盘和胃肠道,导致不良妊娠结局并促进结直肠癌生长。鉴于[具体细菌名称未给出]的临床意义,正在开展研究以开发靶向疗法来抑制其生长或特异性根除该细菌。必需基因对于细菌的存活、生长和繁殖至关重要,是有前景的药物靶点。研究这些基因需要一个无渗漏的可诱导基因表达系统,以实现条件性基因敲除并阐明那些必需基因的重要性。我们的研究通过首先在[具体细菌名称未给出]中产生条件性基因突变,确定LepB为必需基因。将木糖诱导系统与核糖开关相结合有助于对[具体细菌名称未给出]中的必需基因进行分析,为针对该细菌的各种临床应用开发潜在药物铺平了道路。