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A strategy for targeting recombinant proteins to protein storage vacuoles by fusion to Brassica napus napin in napin-depleted seeds

机译:通过与贫油的种子中的甘蓝型油菜融合而将重组蛋白靶向于蛋白储存液泡的策略

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摘要

Seeds are capable of accumulating high levels of seed storage proteins (SSP), as well as heterologous proteins under certain conditions. Arabidopsis thaliana was used to develop a strategy to deplete seeds of an endogenous SSP and then replenish them with the same protein fused to a heterologous protein. In several other studies, competition with endogenous SSP for space and metabolic resources was shown to affect the accumulation of recombinant proteins in seeds. We used RNAi to reduce the expression of the five napin genes and deplete the seeds of this SSP. Targeting a recombinant protein to a vacuole or structure within the seed where it can be protected from cytosolic proteases can also promote its accumulation. To achieve this, a synthetic Brassica napus napin gene (Bn napin) was designed that was both impervious to the A. thaliana napin (At napin) RNAi construct and permitted fusion to a heterologous protein, in this case green fluorescent protein (GFP). GFP was placed in several strategic locations within Bn napin with consideration to maintaining structure, processing sites and possible vacuolar targeting signals. In transgenic A. thaliana plants, GFP was strongly localized to the seed protein storage vacuole in all Bn napin fusion configurations tested, but not when expressed alone. This SSP depletion-replenishment strategy outlined here would be applicable to expression of recombinant proteins in industrial crops that generally have large repertoires of endogenous SSP genes.
机译:种子能够在某些条件下积累高水平的种子存储蛋白(SSP)以及异源蛋白。拟南芥被用于开发一种策略,以耗尽内源性SSP的种子,然后向它们补充与异源蛋白融合的相同蛋白。在其他几项研究中,与内源性SSP竞争空间和代谢资源被证明会影响重组蛋白在种子中的积累。我们使用RNAi来减少五个napin基因的表达并耗尽该SSP的种子。将重组蛋白靶向种子中的液泡或液泡,可以保护其免受胞质蛋白酶的破坏,也可以促进其积累。为此,设计了一种合成的甘蓝型油菜napin基因(Bn napin),该基因既不渗透拟南芥(na。napin)RNAi构建体,又允许融合到异源蛋白上,在这种情况下为绿色荧光蛋白(GFP)。考虑到维持结构,加工位点和可能的液泡靶向信号,将GFP放置在Bn napin内的几个关键位置。在转基因拟南芥植物中,GFP在所有测试的Bn napin融合构型中均强烈定位于种子蛋白贮藏液泡中,但当单独表达时则并非如此。本文概述的这种SSP耗竭补充策略将适用于通常具有大量内源SSP基因库的工业作物中重组蛋白的表达。

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