4.4 Review

T4 bacteriophage as a phage display platform

期刊

ARCHIVES OF MICROBIOLOGY
卷 196, 期 7, 页码 473-479

出版社

SPRINGER
DOI: 10.1007/s00203-014-0989-8

关键词

Bacteriophages; Phage display; Vaccine design; T4 phage; Hoc protein; Soc protein

资金

  1. Shota Rustaveli National Science Foundation [YS/36/7-240/13]
  2. Polish Ministry of Science and Higher Education/National Science Centre [NN 401 147539]

向作者/读者索取更多资源

Analysis of molecular events in T4-infected Escherichia coli has revealed some of the most important principles of biology, including relationships between structures of genes and their products, virus-induced acquisition of metabolic function, and morphogenesis of complex structures through sequential gene product interaction rather than sequential gene activation. T4 bacteriophages and related strains were applied in the first formulations of many fundamental biological concepts. These include the unambiguous recognition of nucleic acids as the genetic material, the definition of the gene by fine-structure mutation, recombinational and functional analyses, the demonstration that the genetic code is triplet, the discovery of mRNA, the importance of recombination and DNA replications, light-dependent and light-independent DNA repair mechanisms, restriction and modification of DNA, self-splicing of intron/exon arrangement in prokaryotes, translation bypassing and others. Bacteriophage T4 possesses unique features that make it a good tool for a multicomponent vaccine platform. Hoc/Soc-fused antigens can be assembled on the T4 capsid in vitro and in vivo. T4-based phage display combined with affinity chromatography can be applied as a new method for bacteriophage purification. The T4 phage display system can also be used as an attractive approach for cancer therapy. The data show the efficient display of both single and multiple HIV antigens on the phage T4 capsid and offer insights for designing novel particulate HIV or other vaccines that have not been demonstrated by other vector systems.

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