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Heterologous expression of diverse barley XTH genes in the yeast Pichia pastoris

机译:大麦XTH基因在酵母毕赤酵母中的异源表达

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Heterologous expression of plant genes, particularly those encoding carbohydrate-active enzymes such as glycoside hydrolases and glycosyl transferases, continues to be a major hurdle in the functional analysis of plant proteomes. Presently, there are few convenient systems for the production of recombinant plant enzymes in active form and at adequate levels for biochemical and structural characterization. The methylotrophic yeast Pichia pastoris is an attractive expression host due to its ease of manipulation and its capacity to perform post-translational protein modifications, such as N-glycosylation [Daly and Hearn (2005) J Mol Recognit 18: 119-138]. Here, we demonstrate the utility of the P. pastoris SMD1168H/pPICZ-alpha C system for the expression of a range of xyloglucan endo-transglycosylase/hydrolase (XTH) cDNAs from barley (Hordeum vulgare). Although stable transformants were readily obtained by positive selection for vector-induced antibiotic resistance for all of the nine constructs tested, only five isoforms were secreted as soluble proteins into the culture medium, four in active form. Furthermore, production levels of these five isoforms were found to be variable, depending on the transformant, which further underscores the necessity of screening multiple clones for expression of active enzyme. Failure to express certain XTH isoforms in P. pastoris could not be correlated with any conserved gene or protein sequence properties, and this precluded using rational sequence engineering to enhance heterologous expression of the cDNAs. Thus, while significant advances are reported here, systems for the heterologous production of plant proteins require further development.
机译:植物基因的异源表达,特别是编码碳水化合物活性酶(如糖苷水解酶和糖基转移酶)的异源表达,仍然是植物蛋白质组功能分析的主要障碍。目前,很少有方便的系统用于生产活性形式和足够水平以用于生化和结构表征的重组植物酶。甲基营养型酵母巴斯德毕赤酵母(Pichia pastoris)是有吸引力的表达宿主,因为其易于操作并且具有执行翻译后蛋白质修饰例如N-糖基化的能力[Daly和Hearn(2005)J Mol Recognit 18:119-138]。在这里,我们证明了巴斯德毕赤酵母SMD1168H /pPICZ-αC系统可用于表达大麦(大麦)的各种木葡聚糖内转糖基化酶/水解酶(XTH)cDNA。尽管通过对所有九种构建体进行载体诱导的抗生素抗性的阳性选择,很容易获得稳定的转化体,但只有五种亚型作为可溶性蛋白分泌到培养基中,其中四种以活性形式分泌。此外,发现这五个同工型的生产水平是可变的,取决于转化体,这进一步强调了筛选多个克隆以表达活性酶的必要性。未能在巴斯德毕赤酵母中表达某些XTH亚型与任何保守的基因或蛋白质序列特性均不相关,并且这可以通过使用合理的序列工程来增强cDNA的异源表达来避免。因此,尽管此处报道了重大进展,但用于植物蛋白异源生产的系统仍需进一步开发。

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