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优化亲和消化法从热纤梭菌中分离细胞外纤维素酶。

Optimization of affinity digestion for the isolation of cellulosomes from Clostridium thermocellum.

机构信息

a Thayer School of Engineering, Dartmouth College , Hanover , New Hampshire , USA.

出版信息

Prep Biochem Biotechnol. 2014;44(2):206-16. doi: 10.1080/10826068.2013.829494.

Abstract

The affinity digestion process for cellulase purification consisting of binding to amorphous cellulose, and amorphous cellulose hydrolysis in the presence of dialysis (Morag et al., 1991), was optimized to obtain high activity recoveries and consistent protein recoveries in the isolation of Clostridium thermocellum cellulase. Experiments were conducted using crude supernatant prepared from C. thermocellum grown on either Avicel or cellobiose. While no difference was observed between Avicel-grown or cellobiose-grown cellulase in the adsorption step, differences were observed during the hydrolysis step. The optimal amorphous cellulose loading was found to be 3 mg amorphous cellulose per milligram supernatant protein. At this loading, 90-100% of activity in the crude supernatant was adsorbed. Twenty-four-hour incubation with the amorphous cellulose during the adsorption stage was found to result in maximal and stable adsorption of activity to the substrate. By fitting the adsorption data to the Langmuir model, an adsorption constant of 410 L/g and a binding capacity of 0.249 g cellulase/g cellulose were obtained. The optimal length of time for hydrolysis was found to be 3 hr for cellulase purified from Avicel cultures and 4 hr for cellulase purified from cellobiose cultures. These loadings and incubation times allowed for more than 85% activity recovery.

摘要

纤维素酶的亲和消化过程包括与无定形纤维素结合,以及在透析存在下对无定形纤维素进行水解(Morag 等人,1991 年),该过程被优化以获得高活性回收率和分离热纤梭菌纤维素酶时的一致蛋白回收率。使用从在微晶纤维素或纤维二糖上生长的热纤梭菌制备的粗上清液进行实验。虽然在吸附步骤中,来源于生长在微晶纤维素或纤维二糖上的纤维素酶之间没有观察到差异,但在水解步骤中观察到了差异。发现最佳无定形纤维素负载量为每毫克上清液蛋白 3mg 无定形纤维素。在此负载量下,粗上清液中的 90-100%的活性被吸附。在吸附阶段与无定形纤维素孵育 24 小时被发现导致对底物的最大和稳定的活性吸附。通过将吸附数据拟合到 Langmuir 模型,获得了 410 L/g 的吸附常数和 0.249 g 纤维素酶/g 纤维素的结合能力。发现从微晶纤维素培养物中纯化的纤维素酶的最佳水解时间为 3 小时,从纤维二糖培养物中纯化的纤维素酶的最佳水解时间为 4 小时。这些负载和孵育时间允许超过 85%的活性回收率。

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