首页> 外文期刊>World Journal of Microbiology & Biotechnology >Construction, expression, and characterization of Arabidopsis thaliana 4CL and Arachis hypogaea RS fusion gene 4CL::RS in Escherichia coli
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Construction, expression, and characterization of Arabidopsis thaliana 4CL and Arachis hypogaea RS fusion gene 4CL::RS in Escherichia coli

机译:拟南芥4CL和花生花生RS融合基因4CL :: RS在大肠杆菌中的构建,表达及鉴定

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Resveratrol is an important antioxidant that confers several beneficial effects on human health. 4-coumarate coenzyme A ligase (4CL) and resveratrol synthase (RS) are key rate-limiting enzymes in the biosynthetic pathway of resveratrol. Using gene fusion technology, the fusion gene, 4CL::RS, was constructed by the 4CL gene from Arabidopsis thaliana and RS gene from Arachis hypogaea. DNAMAN analysis showed that the fusion gene encoded a 964-amino acid protein with an approximate weight of 104.7 kDa and a pI of 5.63. A prokaryotic expression vector containing Nco-I and EcoR-I restriction sites, pET-30a/4CL::RS, was identified by liquid culture bacterial PCR, enzyme digestion, and sequencing, and then used in the induction of expression. Subsequently, a biosynthetic pathway of resveratrol was constructed in Escherichia coli BL21(DE3) that harbored pET-30a/4CL::RS. The recombinant strains were induced to express the fusion protein at 28 A degrees C for 8 h. After bacterial cells were disrupted by hypothermic ultrasonication, the 4CL::RS fusion protein was thoroughly separated from tags using Ni-NTA affinity chromatography, and then detected by SDS-PAGE analysis. When the recombinant strains expressed the fusion protein, the precursor, p-coumaric acid, was converted to resveratrol. In the present study, the final concentration of resveratrol derived from 1 mM p-coumaric acid was 80.524 mg/L, with a 35.28 % (mol/mol) conversion yield.
机译:白藜芦醇是一种重要的抗氧化剂,对人体健康具有多种有益作用。 4-香豆酸酯辅酶A连接酶(4CL)和白藜芦醇合酶(RS)是白藜芦醇生物合成途径中的关键限速酶。利用基因融合技术,由拟南芥的4CL基因和花生到的花生的RS基因构建了融合基因4CL :: RS。 DNAMAN分析表明,该融合基因编码一种964个氨基酸的蛋白质,重量约为104.7 kDa,pI为5.63。通过液体培养细菌PCR,酶消化和测序鉴定了含有Nco-I和EcoR-I限制性位点的原核表达载体pET-30a / 4CL :: RS,然后将其用于诱导表达。随后,在具有pET-30a / 4CL :: RS的大肠杆菌BL21(DE3)中构建了白藜芦醇的生物合成途径。诱导重组菌株在28 A摄氏度表达融合蛋白8 h。通过低温超声破坏细菌细胞后,使用Ni-NTA亲和色谱将4CL :: RS融合蛋白与标签彻底分离,然后通过SDS-PAGE分析进行检测。当重组菌株表达融合蛋白时,前体对香豆酸被转化为白藜芦醇。在本研究中,源自1 mM对香豆酸的白藜芦醇的终浓度为80.524 mg / L,转化率为35.28%(mol / mol)。

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