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Isolation of Dihydroflavonol 4-Reductase cDNA Clones from Angelonia x angustifolia and Heterologous Expression as GST Fusion Protein in Escherichia coli

机译:Ang Angelonia x angustifolia中二氢黄酮醇4-还原酶cDNA克隆的分离及在大肠杆菌中异源表达为GST融合蛋白

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摘要

Blue Angelonia × angustifolia flowers can show spontaneous mutations resulting in white/blue and white flower colourations. In such a white line, a loss of dihydroflavonol 4-reductase (DFR) activity was observed whereas chalcone synthase and flavanone 3-hydroxylase activity remained unchanged. Thus, cloning and characterization of a DFR of Angelonia flowers was carried out for the first time. Two full length DFR cDNA clones, Ang.DFR1 and Ang.DFR2, were obtained from a diploid chimeral white/blue Angelonia × angustifolia which demonstrated a 99% identity in their translated amino acid sequence. In comparison to Ang.DFR2, Ang.DFR1 was shown to contain an extra proline in a proline-rich region at the N-terminus along with two exchanges at the amino acids 12 and 26 in the translated amino acid sequence. The recombinant Ang.DFR2 obtained by heterologous expression in yeast was functionally active catalyzing the NADPH dependent reduction of dihydroquercetin (DHQ) and dihydromyricetin (DHM) to leucocyanidin and leucomyricetin, respectively. Dihydrokaempferol (DHK) in contrast was not accepted as a substrate despite the presence of asparagine in a position assumed to determine DHK acceptance. We show that substrate acceptance testing of DFRs provides biased results for DHM conversion if products are extracted with ethyl acetate. Recombinant Ang.DFR1 was inactive and functional activity could only be restored via exchanges of the amino acids in position 12 and 26 as well as the deletion of the extra proline. E. coli transformation of the pGEX-6P-1 vector harbouring the Ang.DFR2 and heterologous expression in E. coli resulted in functionally active enzymes before and after GST tag removal. Both the GST fusion protein and purified DFR minus the GST tag could be stored at −80°C for several months without loss of enzyme activity and demonstrated identical substrate specificity as the recombinant enzyme obtained from heterologous expression in yeast.
机译:蓝色当归×桔梗花可显示自发突变,导致白色/蓝色和白色花朵着色。在这样的白线中,观察到二氢黄酮醇4-还原酶(DFR)活性丧失,而查尔酮合酶和黄烷酮3-羟化酶活性保持不变。因此,首次进行了当归花的DFR的克隆和表征。从二倍体嵌合白色/蓝色Angelonia×Angustifolia获得了两个全长DFR cDNA克隆Ang.DFR1和Ang.DFR2,它们在翻译的氨基酸序列中显示出99%的同一性。与Ang.DFR2相比,Ang.DFR1显示在N末端的富含脯氨酸的区域中包含额外的脯氨酸,以及在翻译的氨基酸序列中的氨基酸12和26处的两个交换。通过在酵母中异源表达获得的重组Ang.DFR2具有功能活性,其催化NADPH依赖性的二氢槲皮素(DHQ)和二氢杨梅素(DHM)分别还原为亮蓝花青素和亮霉素。相反,尽管假定天冬酰胺存在于确定DHK接受度的位置,但是二氢山emp酚(DHK)未被接受为底物。我们表明,如果产品用乙酸乙酯萃取,则DFR的底物验收测试会为DHM转化提供有偏差的结果。重组Ang.DFR1是无活性的,只能通过交换位置12和26上的氨基酸以及删除多余的脯氨酸来恢复功能活性。带有Ang.DFR2的pGEX-6P-1载体的大肠杆菌转化以及在大肠杆菌中的异源表达导致在去除GST标签之前和之后产生了功能活跃的酶。 GST融合蛋白和不含GST标签的纯化DFR均可在-80°C下保存几个月,而不会损失酶活性,并且与从酵母中异源表达获得的重组酶具有相同的底物特异性。

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