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表型可可酮,一种用于细菌生物膜内细胞外蛋白质原位定量的灵敏且特异的荧光染料。

Epicocconone, a sensitive and specific fluorescent dye for in situ quantification of extracellular proteins within bacterial biofilms.

作者信息

Randrianjatovo I, Girbal-Neuhauser E, Marcato-Romain C-E

机构信息

Université de Toulouse, Laboratoire de Biotechnologies Alimentaire et Environnementale, EA 4565 (LBAE), Institut Universitaire de Technologie, Université Paul Sabatier, 24 rue d'Embaquès, F-32000, Auch, France.

出版信息

Appl Microbiol Biotechnol. 2015 Jun;99(11):4835-44. doi: 10.1007/s00253-015-6570-9. Epub 2015 Apr 26.

Abstract

Biofilms are ecosystems of closely associated bacteria encapsulated in an extracellular matrix mainly composed of polysaccharides and proteins. A novel approach was developed for in situ quantification of extracellular proteins (ePNs) in various bacterial biofilms using epicocconone, a natural, fluorescent compound that binds amine residues of proteins. Six commercial proteins were tested for their reaction with epicocconone, and bovine serum albumin (BSA) was selected for assay optimization. The optimized protocol, performed as a microassay, allowed protein amounts as low as 0.7 μg to as high as 50 μg per well to be detected. Addition of monosaccharides or polysaccharides (glucose, dextran or alginate) to the standard BSA solutions (0 to 250 μg ml(-1)) showed little or no sugar interference up to 2000 μg ml(-1), thus providing an assessment of the specificity of epicocconone for proteins. The optimized protocol was then applied to three different biofilms, and in situ quantification of ePN showed contrasted protein amounts of 22.1 ± 3.1, 38.3 ± 7.1 and 0.3 ± 0.1 μg equivalent BSA of proteins for 48-h biofilms of Pseudomonas aeruginosa, Bacillus licheniformis and Weissella confusa, respectively. Possible interference due to global matrix compounds on the in situ quantification of proteins was also investigated by applying the standard addition method (SAM). Low error percentages were obtained, indicating a correct quantification of both the ePN and the added proteins. For the first time, a specific and sensitive assay has been developed for in situ determination of ePN produced by bacterial cells. This advance should lead to an accurate, rapid tool for further protein labelling and microscopic observation of the extracellular matrix of biofilms.

摘要

生物膜是由紧密相连的细菌组成的生态系统,这些细菌被包裹在主要由多糖和蛋白质构成的细胞外基质中。开发了一种新方法,用于使用表儿茶素(一种与蛋白质的胺残基结合的天然荧光化合物)对各种细菌生物膜中的细胞外蛋白质(ePNs)进行原位定量。测试了六种商业蛋白质与表儿茶素的反应,并选择牛血清白蛋白(BSA)进行测定优化。优化后的方案以微量测定法进行,能够检测到每孔低至0.7μg至高至50μg的蛋白质量。向标准BSA溶液(0至250μg ml(-1))中添加单糖或多糖(葡萄糖、葡聚糖或藻酸盐),在高达2000μg ml(-1)时显示出很少或没有糖干扰,从而评估了表儿茶素对蛋白质的特异性。然后将优化后的方案应用于三种不同的生物膜,对ePN的原位定量显示,铜绿假单胞菌、地衣芽孢杆菌和困惑魏斯氏菌48小时生物膜中蛋白质的对比蛋白质量分别为22.1±3.1、38.3±7.1和0.3±0.1μg等效BSA。还通过应用标准加入法(SAM)研究了全局基质化合物对蛋白质原位定量的可能干扰。获得了低误差百分比,表明对ePN和添加的蛋白质都进行了正确的定量。首次开发了一种特异性和灵敏的测定方法,用于原位测定细菌细胞产生的ePN。这一进展应该会带来一种准确、快速的工具,用于进一步的蛋白质标记和生物膜细胞外基质的显微镜观察。

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