• 中文核心期刊
  • CSCD来源期刊
  • 中国科技核心期刊
  • CA、CABI、ZR收录期刊

木薯MePOD10基因克隆及原核表达分析

Cloning and Prokaryotic Expression of Cassava MePOD10

  • 摘要:
    目的 克隆木薯MePOD10基因并进行生物信息学分析、原核表达分析和蛋白酶动力学分析,为进一步研究MePOD10基因的功能提供参考
    方法 从木薯‘华南124’('South China 124', 'SC124')中扩增MePOD10基因编码区序列(Coding sequence, CDS),对其进行生物信息学分析,并构建MePOD10-pET28a融合表达载体,再转化至BL21感受态细胞中进行蛋白诱导,通过SDS-PAGE以及Western blotting确定MePOD10蛋白的表达情况,纯化MePOD10蛋白后进行酶活性和动力学分析。
    结果 MePOD10基因CDS序列长度为981 bp,编码326个氨基酸,蛋白分子量为35069.60 kD,理论等电点为6.59,属于不稳定疏水性蛋白。MePOD10含有植物过氧化物酶保守结构域,其氨基酸序列与橡胶树POD蛋白的相似性最高,为93.25%。在37℃、1 mmol1·L−1异丙基-β-D-硫代半乳糖苷(Isopropyl β-D-Thiogalactoside, IPTG)诱导6 h条件下,上清和沉淀均有蛋白表达,纯化后的的上清蛋白酶活性高于对照蛋白,以愈创木酚为底物时,随着底物浓度增加,MePOD10蛋白催化活性迅速增加,之后趋于平稳,说明MePOD10蛋白具有催化活性。
    结论 MePOD10蛋白具有过氧化物酶(Peroxidase, POD)保守结构域,在37℃、1 mmol·L -1IPTG诱导6 h条件下,MePOD10-pET28a融合蛋白能正确表达,纯化后的融合蛋白具有催化活性。

     

    Abstract:
    Objective The key gene associated with Class III peroxidase (POD) in stress responses of animals and plants, MePOD10 from cassava was cloned for bioinformatics, prokaryotic expression, and protease kinetics analyses.
    Methods The coding sequence (CDS) of MePOD10 of South China 124 cassava cultivar (SC124) was amplified and subjected to bioinformatics analysis. A MePOD10-pET28a fusion expression vector was constructed and transformed into BL21 competent cells for protein induction.The protein was confirmed on its expression by SDS-PAGE and western blot and purified for enzymatic activity determination and kinetic analysis.
    Results The length of MePOD10 CDS was 981bp encoded 326 amino acids with a molecular weight of 35,069.60kD and a theoretical isoelectric point of 6.59. The unstable and hydrophobic MePOD10 contained a conserved domain of plant POD sharing the highest amino acid sequence similarity of 93.25% with that of rubber trees. Induced by 1mmol·L−1 isopropyl-β-D-thiogalactoside (IPTG) at 37°C for 6h, the protein expressions in the supernatant and precipitate were examined. The purified supernatant showed greater enzymatic activity than control. When guaiacol was used as a substrate, the catalytic activity of MePOD10 increased rapidly with increasing substrate concentration to reach a peak.
    Conclusion MePOD10 was determined to contain conserved POD domain. MePOD10-pET28a could be correctly expressed under the induction of 1mmol·L−1 IPTG at 37°C for 6h, and the purified fusion protein exhibited a significant catalytic activity.

     

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