首页> 外文期刊>Journal of applied microbiology >Cloning and expression of gene encoding the thermostable direct hemolysin from Vibrio alginolyticus strain HY9901, the causative agent of vibriosis of crimson snapper (Lutjanus erythopterus)
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Cloning and expression of gene encoding the thermostable direct hemolysin from Vibrio alginolyticus strain HY9901, the causative agent of vibriosis of crimson snapper (Lutjanus erythopterus)

机译:海藻弧菌HY9901菌株(深红色鲷鱼弧菌病的致病因子)的热稳定直接溶血素基因的克隆与表达

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Aims: The main aims of this study were to clone and express complete open reading frame (ORF) of thermostable direct haemolysin gene (tdh) from Vibrio alginolyticus strain HY9901 in Escherichia coli, and further evaluate the virulence of expressed TDH on mouse and crimson snapper. Methods and Results: A 410 bp internal fragment of the tdh gene was amplified by touchdown PCR with designed primers. Then its unknown flanking sequences of the 5'- and 3'-ends were finally characterized by inverse PCR and nested PCR. Sequence analysis showed that the tdh gene contain 570 bp ORF which encoded 189 amino acids. The deduced amino acid sequence of the ORF was in significant homology with several Vibrio TDH. The product that the tdh gene expressed in E. coli was purified by Ni(2+)-IDA Sepharose affinity column. The activity of purified TDH was 4651 U mg(-1) protein by hide powder azure digestion. The lethal toxicity test showed that LD(50) values of the purified TDH were 5.68 and 8.34 mug TDH g(-1) body weight for mouse and crimson snapper, respectively. Conclusions: The complete ORF of tdh gene was obtained by touchdown PCR, inverse PCR and nested PCR. The ORF was perfectly expressed in E. coli. The activity and toxicity assays showed that the N-terminal signal peptide was essential to autocatalyse and fold correctly to obtain the activity and toxicity in the purified TDH. The Native-PAGE analysis showed that the activated tdh gene expressed in E. coli was a dimer with two identical subunits. Significance and Impact of the Study: This study demonstrates that the expressed activated TDH can produce the toxicity protein determined on mouse and fish, which will lead to better understandings of the identifying virulence factor that could be considered as a candidate antigen for vaccine and a diagnostic tool for vibriosis. Its use as an immunizing antigen might prevent the ability of V. alginolyticus to infect the marine aquatic animals, as a complementary measure to tick control and appropriate management in countries affected by vibriosis.
机译:目的:本研究的主要目的是在大肠杆菌中克隆和表达来自解藻弧菌HY9901菌株的热稳定直接溶血素基因(tdh)的完整开放阅读框(ORF),并进一步评估表达的TDH对小鼠和深红鲷鱼的毒性。方法和结果:通过设计的引物的达阵PCR扩增了tdh基因的410 bp内部片段。然后通过反向PCR和巢式PCR最终鉴定了其未知的5'和3'末端侧翼序列。序列分析表明,tdh基因含有570 bp的ORF,编码189个氨基酸。推导的ORF氨基酸序列与几个弧菌TDH具有显着同源性。通过Ni(2 +)-IDA Sepharose亲和柱纯化在大肠杆菌中表达的tdh基因。通过生皮粉天蓝色消化,纯化的TDH的活性为4651 U mg(-1)蛋白。致命毒性测试表明,对于小鼠和深红色鲷鱼,纯化的TDH的LD(50)值分别为5.68和8.34马克杯TDH g(-1)体重。结论:通过着陆PCR,反向PCR和巢式PCR获得了tdh基因的完整ORF。 ORF在大肠杆菌中完美表达。活性和毒性试验表明,N末端信号肽对于自动催化和正确折叠以在纯化的TDH中获得活性和毒性至关重要。 Native-PAGE分析表明,在大肠杆菌中表达的激活的tdh基因是具有两个相同亚基的二聚体。该研究的意义和影响:该研究表明,表达的活化TDH可以产生在小鼠和鱼类上测定的毒性蛋白,这将使人们更好地认识可鉴定的毒力因子,可以将其视为疫苗和诊断的候选抗原。弧菌病的工具。将其用作免疫抗原可能会阻止溶藻弧菌感染海洋水生动物的能力,以此作为在受弧菌病影响的国家进行tick控制和适当管理的补充措施。

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