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Expression, purification, and characterization of thermolabile hemolysin (TLH) from Vibrio alginolyticus

机译:溶藻弧菌热不稳定性溶血素(TLH)的表达,纯化和鉴定

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摘要

Hemolysin is a putative pathogenicity factor in many bacterial pathogens. In this study, a DNA fragment containing the open reading frame (1254 bp) of the thermolabile hemolysin gene (tlh) from Vibrio alginolyticus V05 was amplified and cloned into the expression plasmid pET-24d(+). The deduced amino acid sequence of the thermolabile hemolysin (TLH) shared 94 and 83% identity with the lecithin-dependent hemolysin (LDH)/TLH of V. parahaemolyticus and V. harveyi thermolabile hemolysin (VHH), respectively. The sequence analysis also indicated that it contained a GDSL lipase domain like VHH. The recombinant protein with a predicted molecular mass of 47.2 kDa was expressed in the Escherichia coli strain BL21 (DE3) as a His-tag fused protein. TLH purified by the nickel-nitrilotriacetic acid (Ni-NTA) His-Bind Resin method showed phospholipase activity on an egg yolk emulsion plate and hemolytic activity against flounder erythrocytes with a specific activity of 18 hemolytic units mu g(-1). The addition of divalent cations at different concentrations decreased hemolytic activity of the purified TLH, but monavalent cations did not affect hemolytic activity. The hemolytic activity of TLH was also markedly inhibited by protein modification reagents, i.e. beta-mercaptoethanol, phenylmethylsulfonyl fluoride, and 5,5'-dithio-bis(2-nitrobenzoic acid). Moreover, TLH was toxic to zebrafish when injected intraperitoneally, with a median lethal dose (LD50) of 0.8 mu g protein g(-1) fish. This work shows that TLH could potentially be developed as a vaccine and used as a diagnostic tool for vibriosis.
机译:溶血素是许多细菌病原体中的假定致病因素。在该研究中,扩增了包含来自溶藻弧菌V05的不耐热溶血素基因(tlh)的开放阅读框(1254 bp)的DNA片段,并将其克隆到表达质粒pET-24d(+)中。推导的不耐热溶血素(TLH)的氨基酸序列分别与副溶血弧菌和哈维伊不耐热溶血素(VHH)的卵磷脂依赖性溶血素(LDH)/ TLH具有94%和83%的同一性。序列分析还表明它含有一个GDSL脂肪酶结构域,如VHH。预测分子量为47.2 kDa的重组蛋白在大肠杆菌BL21(DE3)中表达为His-tag融合蛋白。用镍-亚硝酸三乙酸(Ni-NTA)His-Bind Resin方法纯化的TLH在蛋黄乳剂板上显示磷脂酶活性,并且对比目鱼红细胞具有溶血活性,比活性为18个溶血单位μg(-1)。添加不同浓度的二价阳离子会降低纯化的TLH的溶血活性,但单价阳离子不会影响溶血活性。 TLH的溶血活性也被蛋白质修饰剂,即β-巯基乙醇,苯基甲基磺酰氟和5,5'-二硫代-双(2-硝基苯甲酸)抑制。此外,当腹膜内注射时,TLH对斑马鱼有毒,中位致死剂量(LD50)为0.8μg蛋白g(-1)鱼。这项工作表明TLH可以作为疫苗开发,并可以作为弧菌病的诊断工具。

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