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丝状噬菌体fd中“88型”基因稳定肽展示载体的合理设计。

The rational design of a 'type 88' genetically stable peptide display vector in the filamentous bacteriophage fd.

作者信息

Enshell-Seijffers D, Smelyanski L, Gershoni J M

机构信息

Department of Cell Research and Immunology, George S. Wise Faculty of Life Sciences, Tel Aviv University, Tel Aviv 69978, Israel.

出版信息

Nucleic Acids Res. 2001 May 15;29(10):E50-0. doi: 10.1093/nar/29.10.e50.

Abstract

Filamentous bacteriophages are particularly efficient for the expression and display of combinatorial random peptides. Two phage proteins are often employed for peptide display: the infectivity protein, PIII, and the major coat protein, PVIII. The use of PVIII typically requires the expression of two pVIII genes: the wild-type and the recombinant pVIII gene, to generate mosaic phages. 'Type 88' vectors contain two pVIII genes in one phage genome. In this study a novel 'type 88' expression vector has been rationally designed and constructed. Two factors were taken into account: the insertion site and the genetic stability of the second pVIII gene. It was found that selective deletion of recombinant genes was encountered when inserts were cloned into either of the two non-coding regions of the phage genome. The deletions were independent of recA yet required a functional F-episome. Transcription was also found to be a positive factor for deletion. Taking the above into account led to the generation of a novel vector, designated fth1, which can be used to express recombinant peptides as pVIII chimeric proteins in mosaic bacteriophages. The fth1 vector is not only genetically stable but also of high copy number and produces high titers of recombinant phages.

摘要

丝状噬菌体对于组合随机肽的表达和展示特别有效。通常使用两种噬菌体蛋白进行肽展示:感染性蛋白PIII和主要衣壳蛋白PVIII。使用PVIII通常需要表达两个pVIII基因:野生型和重组pVIII基因,以产生嵌合噬菌体。“88型”载体在一个噬菌体基因组中包含两个pVIII基因。在本研究中,合理设计并构建了一种新型的“88型”表达载体。考虑了两个因素:第二个pVIII基因的插入位点和遗传稳定性。发现当将插入片段克隆到噬菌体基因组的两个非编码区域中的任何一个时,会遇到重组基因的选择性缺失。这些缺失与recA无关,但需要功能性F附加体。转录也是缺失的一个积极因素。考虑到上述因素,产生了一种新型载体,命名为fth1,它可用于在嵌合噬菌体中作为pVIII嵌合蛋白表达重组肽。fth1载体不仅遗传稳定,而且拷贝数高,能产生高滴度的重组噬菌体。

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