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解纤维梭菌celF纤维素酶基因在大肠杆菌中的分子研究及过表达

Molecular study and overexpression of the Clostridium cellulolyticum celF cellulase gene in Escherichia coli.

作者信息

Reverbel-Leroy Corinne, Belaich Anne, Bernadac Alain, Gaudin Christian, Belaich Jean-Pierre, Tardif Chantal

机构信息

Bioénergétique et Ingéniérie des protéines, Centre National de la Recherche Scientifique, 31 chemin Joseph Aiguier, BP71, 13402 Marseille Cedex 20, France.

Laboratoire d'lngéniérie et Dynamique des Systèmes Membranaires, Centre National de la Recherche Scientifique, 31 chemin Joseph Aiguier, BP71, 13402 Marseille Cedex 20, France.

出版信息

Microbiology (Reading). 1996 Apr;142 ( Pt 4):1013-1023. doi: 10.1099/00221287-142-4-1013.

Abstract

The CelF-encoding sequence was isolated from Clostridium cellulolyticum genomic DNA using the inverse PCR technique. The gene lies between cipC (the gene encoding the cellulosome scaffolding protein) and celC (coding for the endoglucanase C) in the large cel cluster of this mesophilic cellulolytic Clostridium species. Comparisons between the deduced amino acid sequence of the mature CelF (693 amino acids, molecular mass 77626) and those of other beta-glycanases showed that this enzyme belongs to the recently proposed family L of cellulases (family 48 of glycosyl hydrolases). The protein was overproduced in Escherichia coli using the T7 expression system. It formed both cytoplasmic and periplasmic inclusion bodies when induction was performed at 37 degrees C. Surprisingly, the protein synthesized from the cytoplasmic production vector was degraded in the Ion protease-deficient strain BL21(DE3). The induction conditions were optimized with regard to the concentration of inductor, cell density, and temperature and time of induction in order to overproduce an active periplasmic protein (CelFp) which was both soluble and stable. It was collected using the osmotic shock method. The enzymic degradation of various cellulosic substrates by CelFp was studied. CelFp degraded swollen Avicel more efficiently than substituted soluble CM-cellulose or crystalline Avicel and was not active on xylan. Its activity is therefore quite different from that of endoglucanases, which are most active on CM-cellulose.

摘要

采用反向PCR技术从解纤维素梭菌基因组DNA中分离出编码CelF的序列。该基因位于这种嗜温性纤维素分解梭菌物种的大纤维素酶基因簇中cipC(编码纤维小体支架蛋白的基因)和celC(编码内切葡聚糖酶C)之间。成熟CelF推导的氨基酸序列(693个氨基酸,分子量77626)与其他β-聚糖酶的氨基酸序列比较表明,该酶属于最近提出的纤维素酶L家族(糖基水解酶家族48)。使用T7表达系统在大肠杆菌中过量表达该蛋白。当在37℃进行诱导时,它会形成细胞质和周质包涵体。令人惊讶的是,从细胞质生产载体合成的蛋白在离子蛋白酶缺陷型菌株BL21(DE3)中被降解。为了过量表达既可溶性又稳定的活性周质蛋白(CelFp),对诱导剂浓度、细胞密度以及诱导温度和时间等诱导条件进行了优化。使用渗透休克法收集该蛋白。研究了CelFp对各种纤维素底物的酶促降解作用。CelFp降解膨胀的微晶纤维素比取代的可溶性羧甲基纤维素或结晶微晶纤维素更有效,并且对木聚糖没有活性。因此,它的活性与对内切葡聚糖酶活性最高的羧甲基纤维素的活性有很大不同。

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