在酵母和植物中生产具有极高热稳定性和抗革兰氏阴性菌活性的转基因溶菌酶。

A Kato, S Nakamura, H Ibrahim, T Matsumi, C Tsumiyama, M Kato
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引用次数: 23

摘要

对母鸡蛋白溶菌酶进行了基因改造,使其具有极高的热稳定性和对革兰氏阴性菌的强抗菌活性,改造后的溶菌酶被分泌到酵母和烟草中。对编码溶菌酶的互补 DNA 进行定点突变,使其在第 49 位出现天冬酰胺连接糖基化信号的 Asn-X-Thr(Ser) 序列。在携带修饰溶菌酶 cDNA 的酵母中表达了热稳定性增强的糖基溶菌酶。糖基溶菌酶的表达量约为 10 毫克/升酵母培养基。使用相同的酵母表达系统,通过在 C 端插入疏水五肽来增强抗菌作用的溶菌酶被少量分泌(在酵母培养基中小于 100 微克/升)。通过农杆菌介导的转化,这些经修饰的溶菌酶 cDNA 构建体被工程化到烟草中,以构建抗菌植物。溶菌酶的表达通过反转录 PCR、SDS-PAGE 分析和烟草转化株的溶菌活性得到了证实。溶菌酶活性最高的转化体每克叶组织表达约 40 微克溶菌酶。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Production of genetically modified lysozymes having extreme heat stability and antimicrobial activity against gram negative bacteria in yeast and in plant.

Hen egg white lysozyme was genetically modified to have extreme heat stability and strong antimicrobial activity against Gram negative bacteria and the modified lysozymes were secreted in yeast and tobacco. Complementary DNA encoding lysozyme was subjected to site-directed mutagenesis to have the Asn-X-Thr(Ser) sequence that is the signal for asparagine-linked glycosylation at the positions 49. The glycosyl lysozyme enhanced heat stability was expressed in the yeast carrying the modified lysozyme cDNA. The expression amount of glycosyl lysozyme was about 10 mg/l of yeast culture medium. Using the same yeast expression system, the lysozyme enhanced antimicrobial action by inserting hydrophobic penta-peptide at the C-terminus were secreted in a small amount (less than 100 micrograms/l in the yeast culture medium). These cDNA constructs of modified lysozymes were engineered into tabacco through Agrobacterium-mediated transformation in order to construct antimicrobial plant. The expression of lysozymes was confirmed by the reverse transcriptional PCR, SDS-PAGE analysis and lytic activity of transformants of tobacco. The transformant having the highest lytic activity expressed about 40 micrograms of lysozyme per g of leaf tissue.

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