首页> 外文期刊>Nova Biotechnologica et Chimica >Optimization Of Expression Conditions Of The Acetylesterase CE16 From Hypocrea Jecorina Encoded By A Synthetic Gene And Expressed In Escherichia coli Cells
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Optimization Of Expression Conditions Of The Acetylesterase CE16 From Hypocrea Jecorina Encoded By A Synthetic Gene And Expressed In Escherichia coli Cells

机译:合成基因编码并在大肠杆菌细胞中表达的 Hypocrea Jecorina 乙酰酯酶CE16表达条件的优化

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Acetylesterase CE16 was identified as a part of the enzymatic cocktail secreted by fungus Hypocrea jecorina (anamorph: Trichoderma reesei) during its growth on cellulose. Later it was classified as the first member of a newly organized carbohydrate esterase family CE16. Further studies showed that acetylesterase is crucial for complete deacetylation of naturally acetylated xylans enabling their saccharification by xylanases. To study the relationship between structure and function of acetylesterase, highly purified recombinant enzyme produced by Trichoderma reesei Rut C-30 was prepared. The enzyme was composed of 348 amino acid residues from which the 1 - 19 formed a secretion signal peptide. Determined molecular mass of purified recombinant acetylesterase (Aes1) was 45 kDa which was more than molecular mass calculated from amino acid sequence. As it has been proved later, the difference was caused by the enzyme glycosylation. Glycosylation of proteins increases their stability, but it can also be a source of heterogeneity, which might be a problem during crystallization. To make the future X-ray study of the enzyme easier, recombinant non-glycosylated enzyme needed to be prepared. For these purposes, a synthetic gene optimized for protein expression in Escherichia coli was designed and synthetized. The first nonglycosylated acetylesterase obtained by the expression of its synthetic gene in E. coli cells was mostly insoluble or aggregated. Conditions of cell cultivation, induction of gene expression and cells disruption were necessary to optimize. Presently, after optimization of all mentioned steps, the non-glycosylated recombinant CE16 acetylesterase was prepared in the soluble and active form, ready for further downstream procedures, involving protein purification and crystallization.
机译:乙酰酯酶CE16被鉴定为在其在纤维素上生长过程中,由红景天真菌Hypocrea jecorina(无性:里氏木霉)分泌的酶混合物的一部分。后来,它被归类为新组织的碳水化合物酯酶家族CE16的第一个成员。进一步的研究表明,乙酰酯酶对于使自然乙酰化的木聚糖完全脱乙酰至关重要,从而使其能够被木聚糖酶糖化。为了研究乙酰酯酶的结构和功能之间的关系,制备了由里氏木霉Rut C-30产生的高度纯化的重组酶。该酶由348个氨基酸残基组成,其中1-19形成一个分泌信号肽。纯化的重组乙酰酯酶(Aes1)的测定分子量为45 kDa,大于从氨基酸序列计算的分子量。如稍后所证明的,差异是由酶糖基化引起的。蛋白质的糖基化增加了其稳定性,但它也可能是异质性的来源,这在结晶过程中可能会成为问题。为了使酶的未来X射线研究更容易,需要制备重组的非糖基化酶。为了这些目的,设计并合成了针对大肠杆菌中的蛋白质表达优化的合成基因。通过在大肠杆菌细胞中表达其合成基因而获得的第一个非糖基化乙酰酯酶大多不溶或聚集。细胞培养的条件,基因表达的诱导和细胞破坏是优化的必要条件。目前,在优化所有上述步骤之后,将非糖基化的重组CE16乙酰酯酶以可溶性和活性形式制备,准备用于进一步的下游程序,包括蛋白质纯化和结晶。

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