Benchabane Meriem, Goulet Charles, Rivard Daniel, Faye Loïc, Gomord Véronique, Michaud Dominique
Département de phytologie, CRH/INAF, Université Laval, QC, Canada.
Plant Biotechnol J. 2008 Sep;6(7):633-48. doi: 10.1111/j.1467-7652.2008.00344.x. Epub 2008 Apr 28.
Numerous reports have been published over the last decade assessing the potential of plants as useful hosts for the heterologous expression of clinically useful proteins. Significant progress has been made, in particular, in optimizing transgene transcription and translation in plants, and in elucidating the complex post-translational modifications of proteins typical of the plant cell machinery. In this article, we address the important issue of recombinant protein degradation in plant expression platforms, which directly impacts on the final yield, homogeneity and overall quality of the resulting protein product. Unlike several more stable and structurally less complex pharmaceuticals, recombinant proteins present a natural tendency to structural heterogeneity, resulting in part from the inherent instability of polypeptide chains expressed in heterologous environments. Proteolytic processing, notably, may dramatically alter the structural integrity and overall accumulation of recombinant proteins in plant expression systems, both in planta during expression and ex planta after extraction. In this article, we describe the current strategies proposed to minimize protein hydrolysis in plant protein factories, including organ-specific transgene expression, organelle-specific protein targeting, the grafting of stabilizing protein domains to labile proteins, protein secretion in natural fluids and the co-expression of companion protease inhibitors.
在过去十年中,已有大量报告评估了植物作为临床有用蛋白质异源表达的有用宿主的潜力。特别是在优化植物中转基因的转录和翻译,以及阐明植物细胞机制中典型蛋白质复杂的翻译后修饰方面取得了重大进展。在本文中,我们讨论了植物表达平台中重组蛋白降解这一重要问题,它直接影响最终蛋白质产物的产量、均一性和整体质量。与几种更稳定且结构不太复杂的药物不同,重组蛋白存在结构异质性的自然倾向,部分原因是在异源环境中表达的多肽链固有的不稳定性。值得注意的是,蛋白水解在植物表达系统中,无论是在表达过程中的植物体内还是提取后的植物体外,都可能极大地改变重组蛋白的结构完整性和整体积累。在本文中,我们描述了目前为尽量减少植物蛋白工厂中蛋白质水解而提出的策略,包括器官特异性转基因表达、细胞器特异性蛋白质靶向、将稳定蛋白结构域嫁接到不稳定蛋白上、在天然流体中分泌蛋白质以及共表达伴侣蛋白酶抑制剂。