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Quantifying the Dynamics of Bacterial Secondary Metabolites by Spectral Multiphoton Microscopy

  作者 SULLIVAN NORA L; TZERANIS DIMITRIOS S; WANG YUN; SO PETER T C; NEWMAN DIANNE  
  选自 期刊  ACS CHEMICAL BIOLOGY;  卷期  2011年6-9;  页码  893-899  
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[摘要]Phenazines, a group of fluorescent small molecules produced by the bacterium Pseudomonas aeruginosa, play a role in maintaining cellular redox homeostasis. Phenazines have been challenging to study in vivo due to their redbx activity, presence both intra- and extracellularly, and their diverse chemical properties. Here, we describe a noninvasive in vivo optical technique to monitor phenazine concentrations within bacterial cells using time-lapsed spectral multiphoton fluorescence microscopy. This technique enables simultaneous monitoring of multiple weakly fluorescent molecules (phenazines, siderophores, NAD(P)H) expressed by bacteria in culture. This work provides phenazine-NAD(P)H redox system in Pseudomonas aeruginosa, illuminating an unanticipated role for 1-hydroxyphenazine. Similar approaches could be used to study the abundance and redox dynamics of the a wide range of small molecules within bacteria both us single cells and in communities.

 
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