In silico analysis and recombinant expression of BamA protein as a universal vaccine against Escherichia coli in mice

文献类型: 外文期刊

第一作者: Guan, Qingfeng

作者: Guan, Qingfeng;Wang, Xiao;Wang, Xiumin;Teng, Da;Wang, Jianhua;Guan, Qingfeng;Wang, Xiao;Wang, Xiumin;Teng, Da;Wang, Jianhua

作者机构:

关键词: BamA;E. coli;Recombinant expression;Epitope;Vaccine

期刊名称:APPLIED MICROBIOLOGY AND BIOTECHNOLOGY ( 影响因子:4.813; 五年影响因子:4.697 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: Colibacillosis, caused by pathogenic Escherichia coli, is a common disease in animals and human worldwide with extensive losses in breeding industry and with millions of people death annually. There is thus an urgent need for the development of universal vaccines against colibacillosis. In this study, the BamA protein was analyzed in silico for sequence homology, physicochemical properties, allergenic prediction, and epitopes prediction. The BamA protein (containing 286 amino acids) clusters in E. coli were retrieved in UniProtKB database, in which 81.7 % sequences were identical (Uniref entry A7ZHR7), and sequences with 94.82 % identity were above 93.4 %. Moreover, BamA was highly conserved among Salmonella and Shigella and has no allergenicity to mice and human. The epitopes of BamA were located principally in periplasm and extracellular domain. Surf_Ag_VNR domain (at position 448-810 aa) of BamA was expressed, purified, and then used for immunization of mice. Titers of the rBamA sera were 1:736,000 and 1:152,000 against rBamA and E. coli and over 1:27,000 against Salmonella and Shigella. Opsonophagocytosis result revealed that the rBamA sera strengthened the phagocytic activity of neutrophils against E. coli. The survival rate of mice vaccinated with rBamA and PBS was 80 and 20 %, respectively. These data indicated that BamA could serve as a promising universal vaccine candidate for the development of a protective subunit vaccine against bacterial infection. Thus, the above protocol would provide more feasible technical clues and choices for available control of pathogenic E. coli, Salmonella, and Shigella.

分类号: Q939.9`Q81

  • 相关文献

[1]A multivalent killed whole-cell vaccine induces effective protection against Edwardsiella tarda and Vibrio anguillarum. Sun, Yun,Sun, Li,Liu, Chun-sheng,Sun, Yun.

[2]Comparative study of the immune effect of an Edwardsiella tarda antigen in two forms: Subunit vaccine vs DNA vaccine. Sun, Yun,Sun, Li,Sun, Yun,Liu, Chun-Sheng.

[3]Contribution of bovine lactoferrin inter-lobe region to iron binding stability and antimicrobial activity against Staphylococcus aureus. Bai, Xuejing,Teng, Da,Tian, Zigang,Zhu, Yanping,Yang, Yalin,Wang, Jianhua,Bai, Xuejing,Teng, Da,Tian, Zigang,Zhu, Yanping,Yang, Yalin,Wang, Jianhua.

[4]Eukaryotic expression and antimicrobial spectrum determination of the peptide tachyplesin II. Xu, Feng,Meng, Kun,Wang, Ya-Ru,Lu, Hui-Ying,Yang, Pei-Long,Yao, Bin,Xu, Feng,Wu, Ning-Feng,Fan, Yun-Liu.

[5]The recombinant serine protease XAoz1 of Arthrobotrys oligospora exhibits potent nematicidal activity against Caenorhabditis elegans and Haemonchus contortus. Wang Junwei,Meng Qingling,Qiao Jun,Wang Weisheng,Chen Shuangqing,Zhao Chunguang,Chen Chuangfu,Luo Jianxun.

[6]Modification and characterization of a new recombinant marine antimicrobial peptide N2. Yang, Na,Feng, Xingjun,Wang, Xiumin,Teng, Da,Mao, Ruoyu,Hao, Ya,Zong, Lifen,Wang, Jianhua,Yang, Na,Wang, Xiumin,Teng, Da,Mao, Ruoyu,Hao, Ya,Zong, Lifen,Wang, Jianhua. 2016

[7]Recombinant production of the antimicrobial peptide NZ17074 in Pichia pastoris using SUMO3 as a fusion partner. Wang, X. J.,Wang, X. M.,Teng, D.,Zhang, Y.,Mao, R. Y.,Wang, J. H.,Wang, X. J.,Wang, X. M.,Teng, D.,Zhang, Y.,Mao, R. Y.,Wang, J. H..

[8]Production of Bacteriocin E50-52 by Small Ubiquitin-Related Modifier Fusion in Escherichia coli. Wang, Qing,Fu, Wenjuan,Ma, Qingshan,Yu, Zhanqiao,Zhang, Rijun. 2013

[9]Design and high-level expression of a hybrid antimicrobial peptide LF15-CA8 in Escherichia coli. Feng, Xing-Jun,Xing, Li-Wei,Liu, Di,Song, Xue-Ying,Li, Jing,Xu, Wen-Shan,Liu, Chun-Long,Li, Zhong-Qiu. 2014

[10]Molecular characters and recombinant expression of the carboxylesterase gene of the meadow moth Loxostege sticticalis L. (Lepidoptera: Pyralidae). Zhong, Tao,Li, Ke-Bin,Cao, Ya-Zhong,Guo, Wei,Wei, Zhao-Jun. 2011

[11]Recombinant expressions of sweet plant protein mabinlin II in Escherichia coli and food-grade Lactococcus lactis. Gu, Wenliang,Xia, Qiyu,Fu, Shaoping,Guo, Jianchun,Yao, Jing,Hu, Xinwen.

[12]High-Yield Recombinant Expression of the Chicken Antimicrobial Peptide Fowlicidin-2 in Escherichia coli. Feng, Xingjun,Xu, Wenshan,Qu, Pei,Li, Xiaochong,Xing, Liwei,Liu, Di,Jiao, Jian,Wang, Jue,Li, Zhongqiu,Liu, Chunlong,Liu, Chunlong.

[13]Accurate assessment of antibiotic susceptibility and screening resistant strains of a bacterial population by linear gradient plate. Jin JianLing,Gao PeiJi,Liu YuQing,Li JingRan,Du JiaFa,Hu Ming,Bai Hua,Qi Jing,Gao Chao,Wei TianTian,Su Hong,Li JingRan,Gao Chao,Wei TianTian. 2011

[14]Prevalence and characteristics of rmtB and qepA in Escherichia coli isolated from diseased animals in China. Deng, Yu-Ting,Zeng, Zhen-Ling,Tian, Wei,Yang, Tong,Liu, Jian-Hua,Deng, Yu-Ting. 2013

[15]UV-C inactivation of Escherichia coli and dose uniformity on apricot fruit in a commercial setting. Yan, Ruixiang,Gurtler, Joshua,Sites, Joseph,Fan, Xuetong,Mattheis, James,Yan, Ruixiang. 2014

[16]Accumulation of antibiotics and heavy metals in meat duck deep litter and their role in persistence of antibiotic-resistant Escherichia coli in different flocks on one duck farm. Zhang, X. T.,Ji, X.,Zou, X. T.,Yao, W.,Lin, Y.,Zhao, W.,Shi, Z. D.,Gu, H. R.,Gong, J. S..

[17]Antibacterial effect of metallic glasses. Lin Bao,Bian XiuFang,Mu Ren,Yang LiFu. 2012

[18]Combination of Sodium Chlorite and Calcium Propionate Reduces Enzymatic Browning and Microbial Population of Fresh-Cut "Granny Smith" Apples. Fan, Xuetong,Guan, Wenqiang. 2010

[19]Co-prevalance of PMQR and 16S rRNA methylase genes in clinical Escherichia coli isolates with high diversity of CTX-M from diseased farmed pigeons. Yang, Ling,Yang, Lei,Zhang, Wen-Hui,Ren, Si-Qi,Liu, Ya-Hong,Zeng, Zhen-Ling,Jiang, Hong-Xia,Lu, Dian-Hong,Zhang, Wen-Hui.

[20]Generation of Newly Discovered Resistance Gene mcr-1 Knockout in Escherichia coli Using the CRISPR/Cas9 System. Sun, Lichang,He, Tao,Zhang, Lili,Pang, Maoda,Zhou, Yan,Bao, Hongduo,Wang, Ran,Zhang, Qiaoyan.

作者其他论文 更多>>