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在毕赤酵母中表达编码赤拟谷盗羧酸酯酶的合成基因。

Expression of a synthetic gene encoding a Tribolium castaneum carboxylesterase in Pichia pastoris.

作者信息

Delroisse Jean-Marc, Dannau Marie, Gilsoul Jean-Jacques, El Mejdoub Thami, Destain Jacqueline, Portetelle Daniel, Thonart Philippe, Haubruge Eric, Vandenbol Micheline

机构信息

FUSAGX, Unité de Biologie animale et microbienne, Avenue Maréchal Juin, 6 B-5030 Gembloux, Belgium.

出版信息

Protein Expr Purif. 2005 Aug;42(2):286-94. doi: 10.1016/j.pep.2005.04.011.

Abstract

This is the first report of an insect esterase efficiently expressed in the methylotrophic yeast Pichia pastoris (so far insect esterases have been produced only in the baculovirus system). Having isolated a Tribolium castaneum carboxylesterase cDNA (TCE), we were initially unable to express it in Escherichia coli or P. pastoris despite significant transcription levels. As codon usage bias is different in T. castaneum and P. pastoris, we assumed this was a possible explanation for the translational barrier observed in yeast. Accordingly, we designed and constructed by recursive PCR a synthetic TCE gene (synTCE) optimized for heterologous expression in P. pastoris, i.e., a gene in which certain TCE codons are replaced with synonymous codons 'preferred' in P. pastoris. When the altered gene was placed under the control of either the P. pastoris glyceraldehyde-3-phosphate dehydrogenase (GAP) promoter or the inducible alcohol oxidase (AOX1) promoter and introduced on an expression vector into P. pastoris, its product was produced intracellularly. We also successfully explored the possibility of obtaining a secreted product: P. pastoris cells expressing an in-frame fusion of synTCE with the alpha-factor secretion signal under the control of the GAP promoter were found to secrete the recombinant esterase into the external medium (to a concentration of 7 mg/L). In addition to this demonstration of TCE production in yeast, our results suggest that the GAP promoter could advantageously replace the AOX1 promoter as a driver of synTCE expression. TCE specific activity was approximately 5 U/mg when p-nitrophenyl acetate was used as substrate.

摘要

这是关于一种昆虫酯酶在甲基营养型酵母毕赤酵母中高效表达的首次报道(迄今为止,昆虫酯酶仅在杆状病毒系统中产生)。我们分离到了赤拟谷盗羧酸酯酶cDNA(TCE),尽管转录水平显著,但最初无法在大肠杆菌或毕赤酵母中表达。由于赤拟谷盗和毕赤酵母的密码子使用偏好不同,我们认为这可能是酵母中观察到的翻译障碍的一个解释。因此,我们通过递归PCR设计并构建了一个针对毕赤酵母中异源表达优化的合成TCE基因(synTCE),即一个将某些TCE密码子替换为毕赤酵母中“偏好”的同义密码子的基因。当将改变后的基因置于毕赤酵母甘油醛-3-磷酸脱氢酶(GAP)启动子或诱导型醇氧化酶(AOX1)启动子的控制下,并通过表达载体导入毕赤酵母时,其产物在细胞内产生。我们还成功探索了获得分泌产物的可能性:发现在GAP启动子控制下表达synTCE与α-因子分泌信号的框内融合体的毕赤酵母细胞将重组酯酶分泌到外部培养基中(浓度为7 mg/L)。除了证明在酵母中产生TCE外,我们的结果表明GAP启动子可以有利地替代AOX1启动子作为synTCE表达的驱动因子。当以对硝基苯乙酸为底物时,TCE的比活性约为5 U/mg。

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