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Expression of a Recombinant Anti-HIV and Anti-Tumor Protein MAP30 in Nicotiana tobacum Hairy Roots: A pH-Stable and Thermophilic Antimicrobial Protein

机译:重组抗艾滋病毒和抗肿瘤蛋白MAP30在烟草烟草毛状根中的表达:pH稳定且嗜热的抗菌蛋白

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摘要

In contrast to conventional antibiotics, which microorganisms can readily evade, it is nearly impossible for a microbial strain that is sensitive to antimicrobial proteins to convert to a resistant strain. Therefore, antimicrobial proteins and peptides that are promising alternative candidates for the control of bacterial infections are under investigation. The MAP30 protein of Momordica charantia is a valuable type I ribosome-inactivating protein (RIP) with anti-HIV and anti-tumor activities. Whereas the antimicrobial activity of some type I RIPs has been confirmed, less attention has been paid to the antimicrobial activity of MAP30 produced in a stable, easily handled, and extremely cost-effective protein-expression system. rMAP30-KDEL was expressed in Nicotiana tobacum hairy roots, and its effect on different microorganisms was investigated. Analysis of the extracted total proteins of transgenic hairy roots showed that rMAP30-KDEL was expressed effectively and that this protein exhibited significant antibacterial activity in a dose-dependent manner. rMAP30-KDEL also possessed thermal and pH stability. Bioinformatic analysis of MAP30 and other RIPs regarding their conserved motifs, amino-acid contents, charge, aliphatic index, GRAVY value, and secondary structures demonstrated that these factors accounted for their thermophilicity. Therefore, RIPs such as MAP30 and its derived peptides might have promising applications as food preservatives, and their analysis might provide useful insights into designing clinically applicable antibiotic agents.
机译:与微生物可以轻易逃避的常规抗生素相反,对抗菌蛋白敏感的微生物菌株几乎不可能转化为耐药菌株。因此,正在研究有望用于控制细菌感染的备选候选抗菌蛋白和肽。苦瓜的MAP30蛋白是一种有价值的I型核糖体失活蛋白(RIP),具有抗HIV和抗肿瘤活性。尽管已经证实了某些I型RIP的抗菌活性,但对在稳定,易于操作且极具成本效益的蛋白表达系统中生产的MAP30的抗菌活性的关注较少。 rMAP30-KDEL在烟草多毛根中表达,并研究了其对不同微生物的影响。对提取的转基因毛状根总蛋白的分析表明,rMAP30-KDEL被有效表达,并且该蛋白以剂量依赖性方式表现出显着的抗菌活性。 rMAP30-KDEL还具有热稳定性和pH稳定性。有关MAP30和其他RIP保守基序,氨基酸含量,电荷,脂肪族指数,GRAVY值和二级结构的生物信息学分析表明,这些因素构成了它们的嗜热性。因此,诸如MAP30及其衍生肽之类的RIP作为食品防腐剂可能具有广阔的应用前景,它们的分析可能为设计临床上可应用的抗生素提供有用的见解。

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