小鼠抗尿酸激酶- m (MAK33)抗体Kappa (K)轻链在酵母多态羊肠菌中的表达

H. Abdel-salam, G. Enan, F. Serry, M. Ghonaim, Hemmat K. Abdel-Latif, C. Hollenberg
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引用次数: 0

摘要

构建表达质粒,转化到甲基营养酵母中,产生IgG抗体kappa链肽(MAK33)。多态汉氏菌似乎是表达基因工程抗体基因最有效的宿主细胞之一。虽然聚乙二醇对该酵母的转化率较低(3-5个细胞/1.0μg质粒DNA),但转化子在100代以上表现出较高的有丝分裂稳定性。通过非同源整合机制,将表达质粒与低拷贝数质粒和多拷贝数质粒整合在酵母基因组的一个或多个整合位点上。一个n端葡萄糖淀粉酶基因片段连接到MAK33抗体Fab衍生物的轻链(kappa)基因上。将酵母(Saceharomyces cerevisiae)的pre - α因子插入到糖淀粉酶与轻链基因之间的质粒中作为轻链肽的分泌信号序列。培养基中游离蛋白为50mg/L,细胞内包埋蛋白为500mg/L时产生kappa链,总量为550mg/L,约占细胞总蛋白的10%。结果表明,前a因子在汉参中加工不完全,前段伴随轻链肽。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Expression of the Kappa (K) Light Chain of Mouse Anticreatine Kinase-M (MAK33) Antibody in the Yeast Hansenula Polymorpha
An expression plasmid was constructed and transformed to the methylotrophic yeast Hansenulapolyinorpha to produce the kappa chain peptide of IgG antibody (MAK33). Hansenula polymorpha appears to be one of the most efficient host cells for the expression of genetically engineered antibody genes. Although the rate of transformation of this yeast by polyethylene glycol was low (3-5 cells/1.0μg plasmid DNA), yet the transformants showed high mitotic stability for more than 100 generations. The expression plasmid was integrated within the yeast genome at one or more integrations site(s) with low and multicopy-number plasmids via a non-homologous integration mechanism. An N-terminal glucoamylase gene fragment was linked to the light chain (kappa) gene of the Fab derivative of the MAK33 antibody. Prepro-alpha factor of the yeast Saceharomyces cerevisiae was inserted into the plasmid between the glucoamylase and light chain genes as a secretion signal sequence for the light chain peptide. The kappa chain was produced at 50mg/L free protein in the culture medium and 500mg/L entrapped within the cells, amounting to 550mg/L and representing about 10% of the total cell protein. The prepro-a factor was shown to be incompletely processed in Hansenulapolyinorpha and the pro-segment accompanied the light chain peptide.
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