首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Fluorescent derivatization of polysaccharides and carbohydrate-containing biopolymers for measurement of enzyme activities in complex media
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Fluorescent derivatization of polysaccharides and carbohydrate-containing biopolymers for measurement of enzyme activities in complex media

机译:多糖和含碳水化合物的生物聚合物的荧光衍生化,用于测量复杂培养基中的酶活性

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Fluorescence derivatization provides a means of tracing the dynamics of polysaccharides even in the presence of high concentrations of other organic compounds or salts. A method of labeling polysaccharides with fluoresceinamine was extended to polysaccharides of a wide range of chemical composition, and alternative means of preparation were established for polysaccharides not initially amenable to column chromatography. the polysaccharides were activated with cyanogen bromide, coupled to fluoresceinamine, and separated from unreacted fluorophore via gel filtration chromatography or dialysis. Since the resulting derivatized polysaccharides proved to be stable to further physical and chemical manipulation, methods were also developed for re-activation and labeling with a second fluorophore, as well as for tethering the labeled polysaccharides to agarose beads. As an example of the application of this approach, five distinct fluorescently-labeled polysaccharides (pullulan, laminarin, xylan, chondroitin sulfate, and alginic acid) were used to investigate the activities and structural specificities of extracellular enzymes produced in situ by marine microbial communities, providing a means of measuring specifically the activities of endo-acting extracellular enzymes and avoiding use of low molecular mass substrate proxies. These labeled polysaccharides could be used to explore the dynamics of polysaccharides in other types of complex media, as well as to investigate the activities and specificities of endo-acting enzymes in other systems.
机译:荧光衍生化提供了一种追踪多糖动态的方法,即使在存在高浓度的其他有机化合物或盐时也是如此。用荧光素胺标记多糖的方法被扩展到具有广泛化学组成的多糖,并且为最初不适合柱色谱法的多糖建立了替代的制备方法。多糖用溴化氰活化,与荧光素胺偶联,并通过凝胶过滤色谱法或透析法与未反应的荧光团分离。由于事实证明所得的衍生多糖对进一步的物理和化学处理是稳定的,因此还开发了用于重新活化和用第二种荧光团标记以及将标记的多糖束缚于琼脂糖珠的方法。作为该方法应用的一个例子,使用了五种不同的荧光标记多糖(普鲁兰,层粘连蛋白,木聚糖,硫酸软骨素和藻酸)来研究海洋微生物群落原位产生的细胞外酶的活性和结构特异性,提供了一种专门测量内在作用的细胞外酶活性的方法,并避免使用低分子量底物代理。这些标记的多糖可用于探索其他类型复杂介质中多糖的动力学,以及研究其他系统中内切酶的活性和特异性。

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