陈娇, 宋思敏, 唐婕, 辛锦秀, 张倩, 赵虹杰, 陈欣, 周嘉裕, 廖海. 暗紫贝母IPI基因的克隆与功能分析J. 药学学报, 2023, 58(2): 447-453. DOI: 10.16438/j.0513-4870.2022-0925
引用本文: 陈娇, 宋思敏, 唐婕, 辛锦秀, 张倩, 赵虹杰, 陈欣, 周嘉裕, 廖海. 暗紫贝母IPI基因的克隆与功能分析J. 药学学报, 2023, 58(2): 447-453. DOI: 10.16438/j.0513-4870.2022-0925
CHEN Jiao, SONG Si-min, TANG Jie, XIN Jin-xiu, ZHANG Qian, ZHAO Hong-jie, CHEN Xin, ZHOU Jia-yu, LIAO Hai. Cloning and functional analysis of IPI gene from Fritillaria unibracteata Hsiao et K. C. Hsia.J. Acta Pharmaceutica Sinica, 2023, 58(2): 447-453. DOI: 10.16438/j.0513-4870.2022-0925
Citation: CHEN Jiao, SONG Si-min, TANG Jie, XIN Jin-xiu, ZHANG Qian, ZHAO Hong-jie, CHEN Xin, ZHOU Jia-yu, LIAO Hai. Cloning and functional analysis of IPI gene from Fritillaria unibracteata Hsiao et K. C. Hsia.J. Acta Pharmaceutica Sinica, 2023, 58(2): 447-453. DOI: 10.16438/j.0513-4870.2022-0925

暗紫贝母IPI基因的克隆与功能分析

Cloning and functional analysis of IPI gene from Fritillaria unibracteata Hsiao et K. C. Hsia.

  • 摘要: 从暗紫贝母(Fritillaria unibracteata Hsiao et K. C. Hsia.) 中克隆异戊烯焦磷酸异构酶(isopentenyl-diphosphate delta isomerase, IPI) 基因的开放阅读框(open reading frame, ORF), 命名为FuIPI, 并开展生物信息学及功能分析。结果表明, FuIPI基因的ORF长度为825 bp, 编码蛋白包括274个氨基酸残基, 相对分子质量约为31 kD, 理论等电点为5.61。序列比对表明FuIPI具有IPI家族特有的保守结构域及参与催化的关键氨基酸残基。系统进化分析表明FuIPI与姜、小果野蕉等植物的IPI具有较近的亲缘关系。实时荧光定量PCR分析表明, FuIPI在暗紫贝母不同组织中均有分布, 但在叶中表达量最高, 其次是茎、鳞茎, 花中最低。随后, 以大肠杆菌BL21(DE3) 为宿主, 过量表达FuIPI基因, 获得的FuIPI重组蛋白能有效转化异戊烯基二磷酸(isopentenyl diphosphate, IPP) 形成二甲基烯丙基二磷酸(dimethylallyl pyrophosphate, DMAPP)。本研究为进一步探究FuIPI在生物碱类物质生物合成中的分子作用奠定了理论基础。

     

    Abstract: An open reading frame (ORF) of isopentenyl-diphosphate delta isomerase gene (FuIPI) was cloned from Fritillaria unibracteata Hsiao et K. C. Hsia. (F. unibracteata). Furthermore, the bioinformatics and functional analyses of FuIPI were performed in this study. The result showed that, the ORF of FuIPI gene was 825 bp, encoding a polypeptide of 274 amino acids in length, with a relative molecular mass of about 31 kD and a theoretical isoelectric point of 5.61. Sequence analysis showed that FuIPI contained conserved structural domains and key residues involved in the catalyzing process. The phylogenetic analysis exhibited that FuIPI was closely related to IPIs of Dendrobium officinale and Musa acuminate. Real-time PCR analysis showed that FuIPI was distributed in different tissues of F. unibracteata, but had the highest transcriptional level in leaves, followed by stems, bulbs, and flowers. Furthermore, the FuIPI protein was successfully expressed in Escherichia coli BL21(DE3). The purified FuIPI protein successfully catalyzed the conversion from isopentenyl diphosphate (IPP) to dimethylallyl pyrophosphate (DMAPP). The above results provided a theoretical basis for further investigation of the molecular role of FuIPI in the biosynthesis of alkaloids.

     

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