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利用群体感应肽在[具体两种生物]之间进行的跨界细胞间通信控制。 (你提供的原文中“and”前后内容缺失,这里保留原文格式便于你理解,实际应用时请补充完整准确的信息)

Controlled interkingdom cell-cell communication between and using quorum-sensing peptides.

作者信息

Vološen Tomislav, Gutbier Uta, Korn Ramón, Korp Juliane, Göttsche Tobias, Schuster Linda, Pohl Carolin, Rau Cindy, Wolf Diana, Ostermann Kai

机构信息

General Microbiology, Chair of General Microbiology, TUD Dresden University of Technology, Dresden, Germany.

Faculty of Biology, Research Group Biological Sensor-Actuator-Systems, TUD Dresden University of Technology, Dresden, Germany.

出版信息

Front Microbiol. 2024 Dec 12;15:1477298. doi: 10.3389/fmicb.2024.1477298. eCollection 2024.

Abstract

Understanding communication among microorganisms through the array of signal molecules and establishing controlled signal transfer between different species is a major goal of the future of biotechnology, and controlled multispecies bioreactor cultivations will open a wide range of applications. In this study, we used two quorum-sensing peptides from - namely, the competence and sporulation factor (CSF) and (PhrF)-to establish a controlled interkingdom communication system between prokaryotes and eukaryotes. For this purpose, we engineered as a reporter capable of detecting the CSF and PhrF peptides heterologously produced by the yeast . The reporter strain included the ComA-dependent promoter fused to the bioluminescence or fluorescence reporter gene(s) to monitor promoter activity measured in a multimode microplate reader. The first measurements of promoter activity showed a specific response of the reporter strain to the peptides CSF and PhrF. Based on this, systematic mutagenesis of genes that modulate the activity of ComA in the reporter strain resulted in increased activity of the promoter and, thereby, higher sensitivity to the heterologously produced CSF/PhrF. The robustness of the signal transfer was further confirmed in co-cultivation studies in both liquid and solid media. The reporter strain exhibited an up to 5-fold increase in promoter activity in the presence of quorum-sensing peptides-producing cells of . In summary, a quorum sensing peptide-driven interkingdom crosstalk between yeast and bacteria was successfully established, which might serve as a basis for controlled protein expression in co-cultivations, establishing biological sensor-actuator systems or study cell-cell interaction and metabolite exchange in bioreactors cultivations.

摘要

通过一系列信号分子理解微生物之间的通讯,并在不同物种之间建立可控的信号传递,是生物技术未来的一个主要目标,而可控的多物种生物反应器培养将开启广泛的应用。在本研究中,我们使用了两种群体感应肽——即感受态和芽孢形成因子(CSF)和(PhrF)——来建立原核生物和真核生物之间可控的跨界通讯系统。为此,我们构建了一种作为报告菌株,能够检测由酵母异源产生的CSF和PhrF肽。该报告菌株包含与生物发光或荧光报告基因融合的ComA依赖性启动子,以监测在多模式微孔板读数器中测量的启动子活性。对启动子活性的首次测量显示报告菌株对CSF和PhrF肽有特异性反应。基于此,对报告菌株中调节ComA活性的基因进行系统诱变,导致启动子活性增加,从而对异源产生的CSF/PhrF具有更高的敏感性。在液体和固体培养基的共培养研究中进一步证实了信号传递的稳健性。在存在产生群体感应肽的细胞的情况下,报告菌株的启动子活性增加了高达5倍。总之,成功建立了酵母和细菌之间由群体感应肽驱动的跨界串扰,这可能为共培养中可控的蛋白质表达、建立生物传感器-执行器系统或研究生物反应器培养中的细胞间相互作用和代谢物交换奠定基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0551/11669912/bd962ca8a6f5/fmicb-15-1477298-g001.jpg

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