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首页> 外文期刊>Nucleic Acids Research >Next-generation RNA-based fluorescent biosensors enable anaerobic detection of cyclic di-GMP
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Next-generation RNA-based fluorescent biosensors enable anaerobic detection of cyclic di-GMP

机译:下一代基于RNA的荧光生物传感器可对环状di-GMP进行厌氧检测

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摘要

Bacteria occupy a diverse set of environmental niches with differing oxygen availability. Anaerobic environments such as mammalian digestive tracts and industrial reactors harbor an abundance of both obligate and facultative anaerobes, many of which play significant roles in human health and biomanufacturing. Studying bacterial function under partial or fully anaerobic conditions, however, is challenging given the paucity of suitable live-cell imaging tools. Here, we introduce a series of RNA-based fluorescent biosensors that respond selectively to cyclic di-GMP, an intracellular bacterial second messenger that controls cellular motility and biofilm formation. We demonstrate the utility of these biosensors in vivo under both aerobic and anaerobic conditions, and we show that biosensor expression does not interfere with the native motility phenotype. Together, our results attest to the effectiveness and versatility of RNA-based fluorescent biosensors, priming further development and application of these and other analogous sensors to study host-microbial and microbial-microbial interactions through small molecule signals.
机译:细菌占据着不同的环境环境,具有不同的氧气利用率。厌氧环境,例如哺乳动物的消化道和工业反应器,都含有大量专性厌氧和兼性厌氧菌,其中许多厌氧菌在人类健康和生物制造中发挥着重要作用。然而,鉴于缺乏合适的活细胞成像工具,在部分或完全厌氧条件下研究细菌功能具有挑战性。在这里,我们介绍了一系列基于RNA的荧光生物传感器,这些传感器可选择性地响应环状di-GMP,这是一种控制细胞运动性和生物膜形成的细胞内细菌第二信使。我们展示了在有氧和厌氧条件下这些生物传感器在体内的实用性,并且我们表明生物传感器的表达不干扰天然运动的表型。总之,我们的结果证明了基于RNA的荧光生物传感器的有效性和多功能性,引发了这些传感器和其他类似传感器的进一步开发和应用,以通过小分子信号研究宿主-微生物和微生物-微生物相互作用。

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