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利用泛素融合蛋白增强转基因植物中的蛋白质表达。

Use of ubiquitin fusions to augment protein expression in transgenic plants.

作者信息

Hondred D, Walker J M, Mathews D E, Vierstra R D

机构信息

Cellular and Molecular Biology Program and the Department of Horticulture, University of Wisconsin, Madison, Wisconsin 53706, USA.

出版信息

Plant Physiol. 1999 Feb;119(2):713-24. doi: 10.1104/pp.119.2.713.

Abstract

A major goal of plant biotechnology is the production of genetically engineered crops that express natural or foreign proteins at high levels. To enhance protein accumulation in transgenic plants, we developed a set of vectors that express proteins and peptides as C-terminal translational fusions with ubiquitin (UBQ). Studies of several proteins in tobacco (Nicotiana tabacum) showed that: (a) proteins can be readily expressed in plants as UBQ fusions; (b) by the action of endogenous UBQ-specific proteases (Ubps), these fusions are rapidly and precisely processed in vivo to release the fused protein moieties in free forms; (c) the synthesis of a protein as a UBQ fusion can significantly augment its accumulation; (d) proper processing and localization of a protein targeted to either the apoplast or the chloroplast is not affected by the N-terminal UBQ sequence; and (e) single amino acid substitutions surrounding the cleavage site can inhibit in vivo processing of the fusion by Ubps. Noncleavable UBQ fusions of beta-glucuronidase became extensively modified, with additional UBQs in planta. Because multiubiquitinated proteins are the preferred substrates of the 26S proteasome, noncleavable fusions may be useful for decreasing protein half-life. Based on their ability to augment protein accumulation and the sequence specificity of Ubps, UBQ fusions offer a versatile way to express plant proteins.

摘要

植物生物技术的一个主要目标是生产能够高水平表达天然或外源蛋白质的基因工程作物。为了提高转基因植物中的蛋白质积累量,我们开发了一组载体,这些载体将蛋白质和肽作为与泛素(UBQ)的C端翻译融合体来表达。对烟草(Nicotiana tabacum)中几种蛋白质的研究表明:(a)蛋白质可以很容易地在植物中作为UBQ融合体表达;(b)通过内源性泛素特异性蛋白酶(Ubps)的作用,这些融合体在体内被快速、精确地加工,以游离形式释放融合的蛋白质部分;(c)将蛋白质合成为UBQ融合体可以显著增加其积累量;(d)靶向质外体或叶绿体的蛋白质的正确加工和定位不受N端UBQ序列的影响;(e)切割位点周围的单个氨基酸替换可以抑制Ubps对融合体的体内加工。β-葡萄糖醛酸酶的不可切割UBQ融合体在植物中会被广泛修饰,带有额外的泛素。由于多泛素化蛋白质是26S蛋白酶体的首选底物,不可切割的融合体可能有助于降低蛋白质半衰期。基于其增加蛋白质积累的能力和泛素特异性蛋白酶的序列特异性,UBQ融合体为表达植物蛋白提供了一种通用方法。

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