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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Recombinant engineered phage-derived enzybiotic in Pichia pastoris X-33 as whole cell biocatalyst for effective biocontrol of Vibrio parahaemolyticus in aquaculture
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Recombinant engineered phage-derived enzybiotic in Pichia pastoris X-33 as whole cell biocatalyst for effective biocontrol of Vibrio parahaemolyticus in aquaculture

机译:重组工程噬菌体衍生的酶在Pichia Pastoris x-33中作为全细胞生物催化剂,用于水产养殖中的vibrio vibrio vibrio的生物控制

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Vibrio parahaemolyticus is a major seafood-borne pathogen causing significant economic losses in aquaculture systems. Therefore, application of phage encoded enzymes, particularly endolysin, as a newstrategy for effective biocontrol and therapeutic agent against bacterial diseases. In the present study, we synthesized endolysin gene (Vplys60) of bacteriophage qdv001 and biochemically characterized by expressing in Pichia pastoris X-33. In addition to, we also investigated the anti-biofilm and anti-vibriosis activity of Pichia-expressing Vplys60 against vibrio challenged in vivo aquaculture model, Artemia franciscana. The result indicated that the predicted molecular size of Pichia expressed Vplys60 was approximately 28 kDa as verified by SDS-PAGE and zymogram. Vplys60 manifested stable activity over broad range of pH (6-10), temperatures (37-75 degrees C) and salinity (100-600 mM NaCl). Biochemical and in silico analysis revealed that addition of calcium ion (Ca2+) enhanced the lytic activity of Vplys60 whereas other metal ions inhibited the activity. Additionally, calcium-dependent Vplys60 has showed a strong amidase activity by cleaving the peptidoglycan of V. parahaemolyticus. Our data also showed that Vplys60 (75 mu g/ml) significantly inhibits biofilm formation (91.6%) and significantly reduced the bacterial population. The in vivo challenge study showed enhanced survival rate in combination with reduced vibrio load in Artemia after administration of Pichia-expressing Vplys60. (C) 2019 Elsevier B.V. All rights reserved.
机译:Vibrio Parahaemolyticus是一种主要的海鲜传播的病原体,导致水产养殖系统中经济损失的显着经济损失。因此,噬菌体编码酶,特别是卵溶素,作为有效生物防治和治疗剂免受细菌疾病的新智略。在本研究中,我们合成了噬菌体QDV001的子宫素基因(VPLys60),并在Pichia Pastoris X-33中表达生物化学表征。除了,我们还研究了在体内水产养殖模型,Artemia Franciscana挑战的抗生物膜和抗振颤症的抗生物膜和抗振颤活动。结果表明,通过SDS-PAGE和Zymogram验证的Pichia的预测分子大约约为28kDa。 VPLys60在宽范围的pH(6-10),温度(37-75℃)和盐度(100-600mM NaCl)上表现出稳定的活性。生物化学和硅分析显示,添加钙离子(CA2 +)增强了VP1之间的裂解活性,而其他金属离子抑制活性。另外,钙依赖性Vplys60通过切割V. parahaemolyticus的肽聚糖而显示出强酰胺酶活性。我们的数据还表明,VPLys60(75μg/ ml)显着抑制生物膜形成(91.6%)并显着降低了细菌种群。体内挑战研究表明,在施用咪脂蛋白血管血症后,含有增强的存活率与降低的壁血症在施用粒子的血管血症之后。 (c)2019 Elsevier B.v.保留所有权利。

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