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一种用于在植物中协同合成多种蛋白质的基于泛素的载体。

A ubiquitin-based vector for the co-ordinated synthesis of multiple proteins in plants.

作者信息

Walker Joseph M, Vierstra Richard D

机构信息

Department of Genetics, University of Wisconsin-Madison, Madison, WI 53706, USA.

出版信息

Plant Biotechnol J. 2007 May;5(3):413-21. doi: 10.1111/j.1467-7652.2007.00250.x. Epub 2007 Mar 15.

Abstract

The genetic engineering of complex traits into crop plants will ultimately require strategies to co-express more than one protein at the same time. Here, we report the development of a ubiquitin (Ub)-based expression method that can generate two proteins from a single transcript. It contains coding regions for the proteins of interest, separated in-frame by the coding region for the C-terminal end of Ub followed by a full-length Ub. On expression in tobacco, this polycistronic messenger RNA (mRNA) is translated to produce a chimeric protein that is rapidly processed by endogenous deubiquitinating proteases to release the two proteins plus a Ub moiety in intact forms. The C-terminal protein domain is released without additional amino acids, whereas the N-terminal protein domain retains the short C-terminal end of Ub. The analysis of vectors with progressively shorter C-terminal ends indicates that only the last six C-terminal amino acids of the proximal Ub domain are needed for efficient processing in plants. By comparing the levels of luciferase and beta-glucuronidase simultaneously expressed by this method in multiple independent tobacco transformants, we synthesized consistently similar ratios of the two proteins over a wide range of protein amounts. Ub-based polyprotein vectors should facilitate the genetic engineering of crops by providing a simple method for the co-ordinated and stoichiometric synthesis of two or more proteins.

摘要

将复杂性状通过基因工程导入农作物最终需要同时共表达多种蛋白质的策略。在此,我们报道了一种基于泛素(Ub)的表达方法的开发,该方法可从单个转录本产生两种蛋白质。它包含感兴趣蛋白质的编码区,由Ub C末端的编码区在框内分隔,随后是全长Ub。在烟草中表达时,这种多顺反子信使核糖核酸(mRNA)被翻译产生一种嵌合蛋白,该蛋白被内源性去泛素化蛋白酶快速加工,以完整形式释放出两种蛋白质加一个Ub部分。C末端蛋白结构域在没有额外氨基酸的情况下被释放,而N末端蛋白结构域保留Ub的短C末端。对具有逐渐缩短的C末端的载体进行分析表明,在植物中有效加工仅需要近端Ub结构域的最后六个C末端氨基酸。通过比较该方法在多个独立烟草转化体中同时表达的荧光素酶和β-葡萄糖醛酸酶的水平,我们在很宽的蛋白量范围内一致地合成了两种蛋白质的相似比例。基于Ub的多蛋白载体应为两种或更多种蛋白质的协调和化学计量合成提供一种简单方法,从而促进作物的基因工程。

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