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Construction of a chimeric thermoacidophilic beta-endoglucanase

机译:嵌合嗜热嗜酸β-内切葡聚糖酶的构建

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The archeaon Sulfolobus solfataricus P2 encodes a thermoacidophilic cellulase which shows an extreme acid and thermal stability with a pH optimum at 1.8 and a temperature optimum at 80°C. This extraordinary enzyme could be useful for biotechnological exploitation but the expression and purification in expression hosts like E. coli is unsatisfactory due to the high aggregation tendency of the recombinant enzyme. The thermophilic cellulase CelA from Thermotoga maritima belongs to the same glycoside hydrolase family (GH12) but has a neutral pH optimum. In contrast to SSO1949 this enzyme is expressed partially soluble in E. coli. We aimed to constructed a hybrid enzyme based on these two beta-endoglucanases which should successfully combine the advantageous properties of both cellulases, i.e. recombinant expression in E. coli, acidophily and thermophily. We constructed two hybrid proteins after bioinformatic analysis: both hybrids are expressed insoluble in E. coli, but one hybrid enzyme was successfully refolded from washed inclusion bodies. The refolded active chimeric enzyme shows a temperature optimum of approximately 85°C and a pH optimum of approximately pH 3 thus retaining the advantageous properties of the Sulfolobus parent enzyme. This study suggests that the targeted construction of chimeric enzymes is an alternative to point mutational engineering efforts as long as parent enzymes with the wanted properties are available.
机译:古生的Sulfolobus solfataricus P2编码一种嗜热纤维素酶,该酶具有极强的酸和热稳定性,最适pH为1.8,最适温度为80°C。这种非凡的酶可用于生物技术开发,但是由于重组酶的高聚集趋势,在表达宿主如大肠杆菌中的表达和纯化不能令人满意。来自滨海嗜热菌的嗜热纤维素酶CelA属于相同的糖苷水解酶家族(GH12),但具有中性的最佳pH。与SSO1949相反,该酶被表达为部分可溶于大肠杆菌。我们旨在基于这两个β-内切葡聚糖酶构建杂合酶,该杂合酶应成功地结合两种纤维素酶的有利特性,即在大肠杆菌中重组表达,嗜酸性和嗜热性。经过生物信息学分析,我们构建了两种杂合蛋白:两种杂合蛋白均表达为不溶于大肠杆菌,但一种杂合酶已成功地从洗涤后的包涵体中折叠。重新折叠的活性嵌合酶显示出约85℃的最佳温度和约pH 3的最佳pH,因此保留了Sulfolobus亲本酶的有利性质。这项研究表明,只要具有所需特性的亲本酶可用,针对性的嵌合酶构建就可以替代点突变工程。

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