Xplor® 2—an optimized transformation/expression system for recombinant protein production in the yeast Arxula adeninivorans

被引:0
作者
Erik Böer
Michael Piontek
Gotthard Kunze
机构
[1] Leibniz-Institut für Pflanzengenetik und Kulturpflanzenforschung (IPK),
[2] ARTES Biotechnology GmbH,undefined
来源
Applied Microbiology and Biotechnology | 2009年 / 84卷
关键词
Interferon α; Phytase; Transformation; Xplor® 2; Yeast;
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学科分类号
摘要
Combining ease of genetic manipulation and fermentation with the ability to secrete and to glycosylate proteins in the basic eukaryotic manner, Arxula adeninivorans provides an attractive expression platform. Based on a redesign of the basic vector, a new Arxula vector system, Xplor® 2, for heterologous gene expression was established, which allows (1) the construction of expression plasmids for supertransformation of A. adeninivorans strains secreting target proteins of biotechnological interest and (2) the integration of small vector cassettes consisting of yeast DNA sequences only. For this purpose, a set of modules including the ATRP1m selection-marker module, expression modules for constitutive expression of the genes phyK (Klebsiella-derived phytase) and IFNα2a (human interferon α), the HARS (Hansenula polymorpha autonomous replication sequence) for autonomous replication and the chaperone module AHSB4 promoter –HpCNE1 gene (calnexin) –PHO5 terminator to improve secretion efficiency were constructed and integrated in various combinations in the basic vector Xplor® 2. After removal of the complete Escherichia coli-based plasmid parts (resistance marker, ColE1 ori and f1(−) origin), the remaining yeast-based linear vector fragment with or without rDNA targeting sequences were transformed as yeast rDNA integrative expression cassettes and yeast integrative expression cassettes (YICs), respectively, and the resulting strains were tested for their capacity to secrete PhyK or IFNα2a. Maximal expression levels were consistently obtained using YICs for transformation irrespective of whether or not they carry HARS and/or calnexin modules. It is recommended that at least 50 such transformants be analyzed to ensure selection of the best transformants.
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页码:583 / 594
页数:11
相关论文
共 165 条
[1]  
Böer E(2005)An extracellular lipase from the dimorphic yeast Yeast 22 523-535
[2]  
Mock HP(2007) molecular cloning of the Appl Microbiol Biotechnol 77 513-523
[3]  
Bode R(2007) gene and characterization of the purified recombinant enzyme FEMS Yeast Res 7 1181-1187
[4]  
Gellissen G(2009)Yeast expression platforms Yeast 26 323-337
[5]  
Kunze G(1976)Production of interleukin-6 in Anal Biochem 72 248-254
[6]  
Böer E(2002), FEMS Yeast Res 2 349-361
[7]  
Steinborn G(1990), and Zbl Mikrobiol 145 3-12
[8]  
Kunze G(2006) applying the wide range vector (CoMed™) system to simultaneous comparative assessment Biosens Bioelectron 21 2078-2085
[9]  
Gellissen G(2007)Atan1p—an extracellular tannase from the dimorphic yeast Antonie Van Leuuwenhoek 91 45-55
[10]  
Böer E(2003): molecular cloning of the FEMS Yeast Res 4 185-193