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The two most commonly used inducible expression systems for research of eukaryote cell biology are named Tet-Off and Tet-On. [3] The Tet-Off system for controlling expression of genes of interest in mammalian cells was developed by Professors Hermann Bujard [] and Manfred Gossen at the University of Heidelberg and first published in 1992.
Vectors used for E. coli expression can be used in this system although specifically designed vectors for this system are also available. Eukaryotic cell extracts may also be used in other cell-free systems, for example, the wheat germ cell-free expression systems. [41] Mammalian cell-free systems have also been produced. [42]
An expression system is a system specifically designed for the production of a gene product of choice. This is normally a protein although may also be RNA, such as tRNA or a ribozyme . An expression system consists of a gene, normally encoded by DNA , and the molecular machinery required to transcribe the DNA into mRNA and translate the mRNA ...
The GAL4/UAS system is an example of both an inducible and repressible system. Gal4 binds an upstream activation sequence (UAS) to activate the transcription of the GAL1/GAL7/GAL10 cassette. On the other hand, a MIG1 response to the presence of glucose can inhibit GAL4 and therefore stop the expression of the GAL1/GAL7/GAL10 cassette. [42]
A version called mPB was created by optimizing codon usage for mammalian (mouse) with a 20x increase in activity, [9] and further mutation screening generated hyPB with 10x the activity of mPB. [10] PiggyBac system have been successfully employed to express large genetic sequences, such as a doxycicline-inducible CRISPR interference system. [11]
The GAL4-UAS system is a biochemical method used to study gene expression and function in organisms such as the fruit fly. It is based on the finding by Hitoshi Kakidani and Mark Ptashne, [ 1 ] and Nicholas Webster and Pierre Chambon [ 2 ] in 1988 that Gal4 binding to UAS sequences activates gene expression.
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