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首页> 外文期刊>The Biochemical Journal >Cloning of thioredoxin h reductase and characterization of the thioredoxin reductase-thioredoxin h system from wheat
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Cloning of thioredoxin h reductase and characterization of the thioredoxin reductase-thioredoxin h system from wheat

机译:小麦硫氧还蛋白h还原酶的克隆及特征分析

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Thioredoxins h are ubiquitous proteins reduced by NADPH-thioredoxin reductase (NTR). They are able to reduce disulphides in target proteins. In monocots, thioredoxins h accumulate at high level in seeds and show a predominant localization in the nucleus of seed cells. These results suggest that the NTR-thioredoxin h system probably plays an important role in seed physiology. To date, the study of this system in monocots is limited by the lack of information about NTR. In the present study, we describe the cloning of a full-length cDNA encoding NTR from wheat (Triticum aestivum). The polypeptide deduced from this cDNA shows close similarity to NTRs from Arabidopsis, contains FAD- and NADPH-binding domains and a disulphide probably interacting with the disulphide at the active site of thioredoxin h. Wheat NTR was expressed in Escherichia coli as a His-tagged protein. The absorption spectrum of the purified recombinant protein is typical of flavoenzymes. Furthermore, it showed NADPH-dependent thioredoxin h reduction activity, thus confirming that the cDNA clone reported in the present study encodes wheat NTR. Using the His-tagged NTR and TRXhA (wheat thioredoxin h), we successfully reconstituted the wheat NTR-thioredoxin h system in vitro, as shown by the insulin reduction assay. A polyclonal antibody was raised against wheat NTR after immunization of rabbits with the purified His-tagged protein. This antibody efficiently detected a single polypeptide of the corresponding molecular mass in seed extracts and it allowed the analysis of the pattern of accumulation of NTR in different wheat organs and developmental stages. NTR shows a wide distribution in wheat, but, surprisingly, its accumulation in seeds is low, in contrast with the level of thioredoxins h.
机译:硫氧还蛋白h是被NADPH-硫氧还蛋白还原酶(NTR)还原的普遍存在的蛋白质。它们能够还原靶蛋白中的二硫化物。在单子叶植物中,硫氧还蛋白h在种子中高水平积累,并在种子细胞的细胞核中占主要位置。这些结果表明,NTR-硫氧还蛋白h系统可能在种子生理中起重要作用。迄今为止,由于缺乏有关NTR的信息,在单子叶植物中对该系统的研究受到限制。在本研究中,我们描述了从小麦(Triticum aestivum)克隆编码NTR的全长cDNA。从该cDNA推导的多肽显示出与拟南芥属的NTR非常相似,含有FAD和NADPH结合域以及可能与硫氧还蛋白h的活性位点上的二硫相互作用的二硫。小麦NTR在大肠杆菌中以His标签蛋白表达。纯化的重组蛋白的吸收光谱是典型的黄素酶。此外,它显示出NADPH依赖性硫氧还蛋白h还原活性,从而证实了本研究报道的cDNA克隆编码小麦NTR。使用胰岛素标记的NTR和TRXhA(小麦硫氧还蛋白h),我们成功地在体外重建了小麦NTR-硫氧还蛋白h系统,如胰岛素还原法所示。用纯化的带有His标签的蛋白免疫兔子后,产生了针对小麦NTR的多克隆抗体。该抗体有效地检测了种子提取物中相应分子量的单个多肽,并且可以分析NTR在不同小麦器官和发育阶段中的积累模式。 NTR在小麦中分布较广,但令人惊讶的是,与硫氧还蛋白h相比,其在种子中的积累较低。

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