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厌氧纤维素发酵过程中细胞和纤维素酶质量浓度的定量分析:基于酶联免疫吸附测定法的方法开发及其在嗜热栖热梭菌分批培养中的应用

Quantification of cell and cellulase mass concentrations during anaerobic cellulose fermentation: development of an enzyme-linked immunosorbent assay-based method with application to Clostridium thermocellum batch cultures.

作者信息

Zhang Yiheng, Lynd Lee R

机构信息

Thayer School of Engineering and Department of Biological Sciences, Dartmouth College, Hanover, New Hampshire 03755, USA.

出版信息

Anal Chem. 2003 Jan 15;75(2):219-27. doi: 10.1021/ac020271n.

Abstract

A methodology was developed to determine the mass concentrations of cellulase and cells applicable to studies of microbial cellulose utilization in systems for which a substantial fraction of cellulase is cell-associated. Antibodies raised against a 14-amino acid synthetic peptide with sequence taken from the cohesin domain of the scaffoldin protein of Clostridium thermocellum ATCC 27405 were used to develop an indirect ELISA protocol. Six cellulase calibration standards were prepared using affinity digestion (Morag, E.; Bayer, E. A.; Lamed, R. Enzyme Microb. Technol. 1992, 14, 289-292.). These included supernatant and pellet samples from an Avicelgrown culture with fractional cellulose conversion (X) = 0.98, as well as supernatant, pellet, cell-associated, and cellulose-associated samples from an Avicel-grown culture with X = 0.8. All six standards displayed a very similar absorbance versus concentration relationship when subjected to ELISA, essentially identical SDS-PAGE banding patterns, and similar cellulase specific activity in relation to both other purified cellulase preparations and crude samples. Coefficients of variation for cellulase concentration measurements were 5.2% for supernatant samples and 5.9% for pellet samples. The ELISA method was applied to batch cultures of C. thermocellum grown on Avicel. Cell concentration was calculated from the pellet protein concentration and the cell protein fraction of a cellobiose-grown control. Two alternative methods appeared to overpredict the cell concentration and were not capable of quantifying cells as distinct from cellulase. Cellulase protein production by Avicel-grown batch cultures represented approximately 20% of cell mass exclusive of cellulase. It is concluded that the reported protocols establish a reasonable methodological basis for quantitative determination of the mass concentration of cellulase protein produced by C. thermocellum and for calculation of cell mass concentration as distinct from cellulase concentration.

摘要

已开发出一种方法,用于测定纤维素酶和细胞的质量浓度,该方法适用于研究纤维素酶大部分与细胞相关的系统中的微生物纤维素利用情况。使用针对从嗜热栖热放线菌ATCC 27405的支架蛋白的粘着蛋白结构域序列中选取的14个氨基酸的合成肽产生的抗体,开发了一种间接ELISA方案。使用亲和消化法制备了六种纤维素酶校准标准品(莫拉格,E.;拜尔,E. A.;拉梅德,R. 酶与微生物技术 1992,14,289 - 292)。这些标准品包括纤维素转化率(X)= 0.98的微晶纤维素培养物的上清液和沉淀样品,以及X = 0.8的微晶纤维素培养物的上清液、沉淀、细胞相关和纤维素相关样品。当进行ELISA时,所有六种标准品的吸光度与浓度关系非常相似,SDS - PAGE条带模式基本相同,并且与其他纯化的纤维素酶制剂和粗样品相比,纤维素酶比活性相似。上清液样品的纤维素酶浓度测量变异系数为5.2%,沉淀样品为5.9%。ELISA方法应用于在微晶纤维素上生长的嗜热栖热放线菌的分批培养。根据沉淀蛋白浓度和纤维二糖培养对照的细胞蛋白分数计算细胞浓度。另外两种替代方法似乎高估了细胞浓度,并且无法将细胞与纤维素酶区分开来进行定量。微晶纤维素生长的分批培养物产生的纤维素酶蛋白产量约占不含纤维素酶的细胞质量的20%。得出的结论是,所报道的方案为定量测定嗜热栖热放线菌产生的纤维素酶蛋白的质量浓度以及计算与纤维素酶浓度不同的细胞质量浓度建立了合理的方法学基础。

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