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An acidic and thermostable carboxymethyl cellulase from the yeast Cryptococcus sp. S-2: Purification, characterization and improvement of its recombinant enzyme production by high cell-density fermentation of Pichia pastoris

机译:来自酵母隐球菌sp。的酸性和热稳定的羧甲基纤维素酶。 S-2:通过巴斯德毕赤酵母的高细胞密度发酵纯化,鉴定和改进其重组酶生产

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The extracellular carboxymethyl cellulase (CSCMCase) from the yeast, Cryptococcus sp. S-2, was produced when grown on cellobiose. It was purified to homogeneity from the supernatant by ultrafiltration, DEAE-5PW anion exchange column and TSK-Gel G3000SW gel filtration. The purified enzyme was monomeric protein with molecular mass of approximately 34 kDa. The optimum temperature and pH for the action of the enzyme were at 40-50 ℃ and 3.5, respectively. It was stable at pH range of 5.5-7.5 and retained approximately 50% of its maximum activity after incubating at 90 ℃ for 1 h. Moreover, it could able to hydrolyze carboxymethyl cellulose sodium salt higher than insoluble cellulose substrate such as Avicel, SIGMACELL and CM cellulose. Due to its action at acidic pH and moderately stable at high temperature, the gene encoding carboxymethyl cellulase (CSCMCase) was isolated and improved the enzyme yield by high cell-density fermentation of Pichia pastoris. The CSCMCase cDNA contains 1023 nucleotides and encodes a 341-amino acid. It was successfully expressed under the control of alcohol oxidase I promoter using methanol induction of P. pastoris fermentation in a 2L ABLE bioreactor. The production of the recombinant carboxymethyl cellulases was higher than that from Cryptococcus sp. S-2 of 657-fold (2.75 and 4.2 × 10~(-3) mg protein L~(-1), respectively) indicating that the leader sequence of CSCMCase has been recognized and processed as efficiently by P. pastoris. Furthermore, the recombinant enzyme was purified in two-step of ultrafiltration and hydrophobic interaction chromatography which would be much more convenient for large-scale purification for successful industrial application.
机译:来自酵母隐球菌的胞外羧甲基纤维素酶(CSCMCase)。当在纤维二糖上生长时产生S-2。通过超滤,DEAE-5PW阴离子交换柱和TSK-Gel G3000SW凝胶过滤将其从上清液中纯化至均质。纯化的酶是分子量约为34kDa的单体蛋白。该酶作用的最适温度为40-50℃,最适pH为3.5。在pH为5.5-7.5范围内稳定,在90℃温育1小时后,保留其最大活性的约50%。而且,它能够水解羧甲基纤维素钠盐,其水解程度高于不溶性纤维素底物,例如Avicel,SIGMACELL和CM纤维素。由于其在酸性pH下的作用以及在高温下的适度稳定性,因此可以分离出编码羧甲基纤维素酶(CSCMCase)的基因,并通过巴斯德毕赤酵母的高细胞密度发酵提高了酶的产量。 CSCMCase cDNA包含1023个核苷酸,并编码341个氨基酸。它在2 L ABLE生物反应器中使用甲醇诱导巴斯德毕赤酵母发酵,在酒精氧化酶I启动子的控制下成功表达。重组羧甲基纤维素酶的产量高于隐球菌的产量。 S-2为657倍(分别为2.75和4.2×10〜(-3)mg蛋白L〜(-1)mg),表明CSCMCase的前导序列已被巴斯德毕赤酵母有效识别和加工。此外,重组酶可通过两步超滤和疏水作用色谱法进行纯化,这对于大规模纯化成功进行工业应用将更为方便。

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