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A vector design that allows fast and convenient production of differently tagged proteins. | LitMetric

AI Article Synopsis

  • Recombinant-tagged proteins are valuable in research and clinical applications, but creating different tagged versions of the same protein can be complicated and time-consuming due to complex cloning processes.
  • This study introduces a novel vector system that streamlines the production of various tagged protein variants using a single DNA fragment and multiple ready-to-use vectors, each equipped with a different tag.
  • The expression system is validated by successfully producing a functional anti-GD2 Fab fragment that can be tagged with biotin, polyhistidine, or both, demonstrating that the protein functions effectively with these tags.

Article Abstract

Recombinant-tagged proteins have a widespread use in experimental research as well as in clinical diagnostic and therapeutic approaches. Well-stocked sets of differently tagged variants of a same protein would be of great help. However, the construction of differently tagging vectors is a demanding task since cloning procedures need several tailored DNA inserts. In this study, we describe a novel vector system that allows a cost- and time-effective production of differently tagged variants of a same protein by using the same DNA fragment and a set of vectors each carrying a different tag. The design of these expression vectors is based on an intronic region that becomes functional upon cloning the insert sequence, splicing of which attaches a certain tag to the protein termini. This strategy allows for the cloning of the fragment that codes for the protein of interest, without any further modification, into different vectors, previously built and ready-to-use, each carrying a tag that will be joined to the protein. Proof of principle for our expression system, presented here, is shown through the production of a functional anti-GD2 Fab fragment tagged with biotin or polyhistidine, or a combination of both, followed by the demonstration of the functional competencies of both the protein and the tags.

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Source
http://dx.doi.org/10.1007/s12033-011-9469-4DOI Listing

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