Enhanced expression of tandem multimers of the antimicrobial peptide buforin II in Escherichia coli by the DEAD-box protein and trxB mutant

被引:0
作者
J. Lee
M. Kim
J. Cho
S. Kim
机构
[1] Samyang Genex Biotech Research Institute,
[2] 63–2 Hwaam-dong,undefined
[3] Yusung-gu,undefined
[4] Taejon 305–348,undefined
[5] Korea,undefined
[6] Biomass Team,undefined
[7] KIER,undefined
[8] 71–2 Jang-dong,undefined
[9] Yusong-gu,undefined
[10] Taejon 305–343,undefined
[11] Korea,undefined
[12] Department of Biological Sciences,undefined
[13] Korea Advanced Institute of Science and Technology,undefined
[14] 373–1 Kusong-dong,undefined
[15] Yusong-gu,undefined
[16] Taejon 305–701,undefined
[17] Korea,undefined
来源
Applied Microbiology and Biotechnology | 2002年 / 58卷
关键词
Disulfide Bond; Antimicrobial Peptide; Monomeric Unit; Charge Neutralization; Fusion Peptide;
D O I
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中图分类号
学科分类号
摘要
The tandem multimeric expression of various peptides has been explored by many researchers. However, expression levels have usually not been proportional to the degree of multimerization. To increase the expression level in Escherichia coli of tandem multimers of a cationic antimicrobial peptide, buforin II, fused to an anionic peptide, we studied the effect of the DEAD-box protein and the trxB mutant on the expression of tandem multimers. An expression vector with a tac promoter was more effective in directing multimeric expression than one with a T7 promoter. The expression level of large multimers was substantially increased with the tac promoter, possibly through stabilization of long transcripts by synchronization of transcription and translation. Coexpression of the DEAD-box protein, an RNA-binding protein, with the T7 expression system increased the expression level of multimers, especially large multimers, due to protection of the long RNA transcripts. In addition, the use of the trxB mutant also enhanced the expression level of tandem multimers, which contain two cysteine residues at both ends of the monomeric unit. It seems that disulfide bonds formed in the multimers in the trxB mutant might help efficient charge neutralization for inclusion body formation of the multimers, resulting in enhancement of expression. Our results show that the expression of multimers can be improved through the stabilization of the long transcripts by the DEAD-box protein or the expression, under an oxidizing environment, of the trxB mutant in which covalent cross-links through disulfide bonds facilitate inclusion body formation of the multimeric fusion peptide.
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页码:790 / 796
页数:6
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