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[抗对虾白斑综合征病毒单链可变区片段P1D3抗体在毕赤酵母中的表达]

[Expression of single chain fragment variable P1D3 antibody against shrimp white spot syndrome virus in Pichia pastoris].

作者信息

Yang Yi, Zhang Min, Yuan Li, Zhang Xiao-Hua, Dai He-Ping

机构信息

Institution of Hydrobiology, Chinese Academy of Sciences, Wuhan 430072, China.

出版信息

Sheng Wu Gong Cheng Xue Bao. 2006 Nov;22(6):973-8.

Abstract

White spot syndrome virus (WSSV) is a major pathogen in aquaculture penaeid shrimp, which caused catastrophic economic losses in the worldwide. No adequate treatments against WSSV are available. In order to study infection mechanism of WSSV, a phage display scFv cDNA library against WSSV was constructed and a neutralizing antibody of scFv P1D3 was selected in our lab previously. In this study, scFv P1D3 was expressed successfully in yeast. Firstly, the original expression vector of P1D3, M13 phagmid, was used as a template to design primers with restriction sites of SnaB I and EcoR I . Then the gene of P1D3 was amplified by PCR. After digested by SnaB I and EcoR I , the fragment of scFv P1D3 with E-tag was inserted into yeast and E. coli shuttle plasmid pPIC9k. The recombinant plasmid pPIC9k-scFv P1D3-Etag was linearized with Bgl II and then transformed into Pichia pastoris GS115 by electroporation. Positive clones were selected and verified by PCR and DNA sequencing. The scFv PID3 was induced to express in yeast by methanol. The results of ELISA demonstrate that scFv P1D3 expressed in yeast still has high specificity to bind on WSSV and the binding activity is higher than that expressed in E. coli TG1. After several optimizing experiments, the results show that the expression amount of scFv P1D3 can reach to 302 mg/L in yeast culture supernatant. This experiment has offered a new source of antibody for the researches on passive immunology for shrimp.

摘要

白斑综合征病毒(WSSV)是水产养殖对虾中的一种主要病原体,在全球范围内造成了巨大的经济损失。目前尚无针对WSSV的有效治疗方法。为了研究WSSV的感染机制,我们实验室构建了一个针对WSSV的噬菌体展示单链抗体可变区(scFv)cDNA文库,并筛选出了具有中和活性的单链抗体scFv P1D3。在本研究中,scFv P1D3在酵母中成功表达。首先,以P1D3的原始表达载体M13噬菌粒为模板,设计带有SnaB I和EcoR I酶切位点的引物,通过PCR扩增P1D3基因。经SnaB I和EcoR I双酶切后,将带有E标签的scFv P1D3片段插入酵母和大肠杆菌穿梭质粒pPIC9k中。重组质粒pPIC9k-scFv P1D3-Etag经Bgl II线性化后,通过电穿孔法转化入毕赤酵母GS115中。通过PCR和DNA测序筛选并验证阳性克隆。用甲醇诱导酵母表达scFv PID3。ELISA结果表明,酵母中表达的scFv P1D3对WSSV仍具有高特异性结合能力,且结合活性高于在大肠杆菌TG1中表达的scFv P1D3。经过多次优化实验,结果显示scFv P1D3在酵母培养上清中的表达量可达302 mg/L。本实验为对虾被动免疫研究提供了新的抗体来源。

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