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Fusion expression of antibacterial peptide salmine from genetically engineered bacteria

机译:基因工程菌中抗菌肽盐胺的融合表达

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To develop a genetically engineered Escherichia coli for potential mass production of antibacterial peptide salmine instead of extraction from fish sperm, three primers designed according to amino acid sequence of salmine were used to construct an oligonucleotide fragment (SAL) encoding salmine. SAL was inserted into a pEC vector and transformed into E. coli BL21 (DE3) to construct genetically engineered bacteria (E. coli BL21-pEC-SAL). Expression of the pEC vector in E. coli BL21-pEC-SAL was induced by addition of lactose and resulted in production of a fusion protein (20 KD) containing salmine peptides inside the E. coli cells. Expression of the fusion protein was significantly affected by growth media, time and temperature of incubation, and lactose induction time. A condition allowing the highest expression of the fusion protein (39.8%) was identified by growing E. coli BL21-pEC-SAL in tryptic soy broth at 43°C for 2–4 h followed by addition of lactose (0.2%) to the medium and incubating for additional 8- 10 h. In conclusion, a recombinant vector containing gene encoding salmine peptide was constructed and expressed in E. coli BL21-pEC-SAL as a fusion protein.
机译:为了开发一种基因工程大肠杆菌来潜在地大量生产抗菌肽氨苄青霉素,而不是从鱼精中提取,根据氨苄青霉素的氨基酸序列设计的三种引物被用于构建编码氨苄青霉素的寡核苷酸片段(SAL)。将SAL插入pEC载体中,并转化到大肠杆菌BL21(DE3)中,以构建基因工程细菌(大肠杆菌BL21-pEC-SAL)。通过添加乳糖来诱导pEC载体在大肠杆菌BL21-pEC-SAL中的表达,并导致在大肠杆菌细胞内产生包含氨苄二胺肽的融合蛋白(20KD)。融合蛋白的表达受生长培养基,孵育时间和温度以及乳糖诱导时间的影响很大。通过使胰蛋白酶大豆肉汤中的BL21-pEC-SAL大肠杆菌在43°C下生长2-4小时,然后向其中加入乳糖(0.2%),从而确定了允许融合蛋白最高表达的条件(39.8%)。培养基,再孵育8-10小时。综上所述,构建了包含编码红蛋白肽的基因的重组载体,并在大肠杆菌BL21-pEC-SAL中作为融合蛋白表达。

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