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外源蛋白在毕赤酵母中的表达:蛋白质工程与生产中的一种有用实验工具。

Expression of heterologous proteins in Pichia pastoris: a useful experimental tool in protein engineering and production.

作者信息

Daly Rachel, Hearn Milton T W

机构信息

ARC Special Research Centre for Green Chemistry, Monash University, Building 23, Wellington Road, Clayton, Victoria 3800, Australia.

出版信息

J Mol Recognit. 2005 Mar-Apr;18(2):119-38. doi: 10.1002/jmr.687.

DOI:10.1002/jmr.687
PMID:15565717
Abstract

The use of the methylotrophic yeast, Pichia pastoris, as a cellular host for the expression of recombinant proteins has become increasing popular in recent times. P. pastoris is easier to genetically manipulate and culture than mammalian cells and can be grown to high cell densities. Equally important, P. pastoris is also a eukaryote, and thereby provides the potential for producing soluble, correctly folded recombinant proteins that have undergone all the post-translational modifications required for functionality. Additionally, linearized foreign DNA can be inserted in high efficiency via homologous recombination procedures to generate stable cell lines whilst expression vectors can be readily prepared that allow multiple copies of the target protein, multimeric proteins with different subunit structures, or alternatively the target protein and its cognate binding partners, to be expressed. A further benefit of the P. pastoris system is that strong promoters are available to drive the expression of a foreign gene(s) of interest, thus enabling production of large amounts of the target protein(s) with relative technical ease and at a lower cost than most other eukaryotic systems. The purpose of this review is to summarize important developments and features of this expression system and, in particular, to examine from an experimental perspective the genetic engineering, protein chemical and molecular design considerations that have to be taken into account for the successful expression of the target recombinant protein. Included in these considerations are the influences of P. pastoris strain selection; the choice of expression vectors and promoters; procedures for the transformation and integration of the vectors into the P. pastoris genome; the consequences of rare codon usage and truncated transcripts; and techniques employed to achieve multi-copy integration numbers. The impact of the alcohol oxidase (AOX) pathways in terms of the mut+ and mut(s) phenotypes, intracellular expression and folding pathways is examined. The roles of pre-pro signal sequences such as the alpha mating factor (alpha-MF) and the Glu-Ala repeats at the kex2p cleavage site on the processing of the protein translate(s) have also been considered. Protocols for the generation of protein variants and mutants for screening for orphan cognate binding partners and the use of experimental platforms addressing the molecular recognition behaviour of recombinant proteins such as the extracellular domains of transmembrane receptors with their physiological ligands are also described. Finally, the palindromic patterns of glycosylation that can occur with these expression systems, in terms of the role and location of the sequon in the primary structure, the number of mannose units and the types of oligosaccharides incorporated as Asn- or O-linkages and their impact on the thermostability and immunogenicity of the recombinant protein are considered. Procedures to prevent glycosylation through manipulation of cell culture conditions or via enzymatic and site-directed mutagenesis methods are also discussed.

摘要

近年来,利用甲基营养型酵母毕赤酵母作为细胞宿主来表达重组蛋白越来越普遍。与哺乳动物细胞相比,毕赤酵母更易于进行基因操作和培养,并且能够生长到高细胞密度。同样重要的是,毕赤酵母也是一种真核生物,因此有潜力产生经过功能所需的所有翻译后修饰的可溶性、正确折叠的重组蛋白。此外,线性化的外源DNA可以通过同源重组程序高效插入,以产生稳定的细胞系,同时可以很容易地制备表达载体,使目标蛋白的多个拷贝、具有不同亚基结构的多聚体蛋白,或者目标蛋白及其同源结合伴侣得以表达。毕赤酵母系统的另一个优点是有强启动子可用于驱动感兴趣的外源基因的表达,从而能够相对轻松地以比大多数其他真核系统更低的成本大量生产目标蛋白。本综述的目的是总结该表达系统的重要进展和特点,特别是从实验角度审视为成功表达目标重组蛋白而必须考虑的基因工程、蛋白质化学和分子设计方面的因素。这些因素包括毕赤酵母菌株选择的影响;表达载体和启动子的选择;载体转化和整合到毕赤酵母基因组中的程序;稀有密码子使用和转录本截短的后果;以及用于实现多拷贝整合数的技术。研究了醇氧化酶(AOX)途径在mut+和mut(s)表型、细胞内表达和折叠途径方面的影响。还考虑了前导信号序列如α交配因子(α-MF)以及kex2p切割位点处的Glu-Ala重复序列在蛋白质翻译加工中的作用。还描述了用于生成蛋白质变体和突变体以筛选孤儿同源结合伴侣的方案,以及使用实验平台研究重组蛋白如跨膜受体细胞外结构域与其生理配体的分子识别行为。最后,考虑了这些表达系统可能出现的糖基化回文模式,包括序列在一级结构中的作用和位置、甘露糖单元的数量以及作为天冬酰胺或O-连接掺入的寡糖类型及其对重组蛋白热稳定性和免疫原性的影响。还讨论了通过操纵细胞培养条件或通过酶促和定点诱变方法防止糖基化的程序。

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