All-in-one IQ toggle switches with high versatilities for fine-tuning of transgene expression in mammalian cells and tissues

The transgene toggling device is recognized as a powerful tool for gene- and cell-based biological research and precision medicine. However, many of these devices often operate in binary mode, exhibit unacceptable leakiness, suffer from transgene silencing, show cytotoxicity, and have low potency. H...

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Veröffentlicht in:Molecular therapy. Methods & clinical development 2024-03, Vol.32 (1), p.101202-101202, Article 101202
Hauptverfasser: Hong, Jeongkwan, Sohn, Kyung-Cheol, Park, Hye-Won, Jeon, Hyoeun, Ju, Eunjin, Lee, Jae-Geun, Lee, Jeong-Soo, Rho, Jaerang, Hur, Gang Min, Ro, Hyunju
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Sprache:eng
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Zusammenfassung:The transgene toggling device is recognized as a powerful tool for gene- and cell-based biological research and precision medicine. However, many of these devices often operate in binary mode, exhibit unacceptable leakiness, suffer from transgene silencing, show cytotoxicity, and have low potency. Here, we present a novel transgene switch, SIQ, wherein all the elements for gene toggling are packed into a single vector. SIQ has superior potency in inducing transgene expression in response to tebufenozide compared with the Gal4/UAS system, while completely avoiding transgene leakiness. Additionally, the ease and versatility of SIQ make it possible with a single construct to perform transient transfection, establish stable cell lines by targeting a predetermined genomic locus, and simultaneously produce adenovirus for transduction into cells and mammalian tissues. Furthermore, we integrated a cumate switch into SIQ, called SIQmate, to operate a Boolean AND logic gate, enabling swift toggling-off of the transgene after the removal of chemical inducers, tebufenozide and cumate. Both SIQ and SIQmate offer precise transgene toggling, making them adjustable for various researches, including synthetic biology, genome engineering, and therapeutics. [Display omitted] Hong and colleagues developed novel transgene toggle switches by intermingling all the prerequisite elements into a single vector. The system designated as SIQ could be used for transient transgene induction, establishing stable cell lines, and producing adenovirus for infection into rodent tissues and cells which are highly recalcitrant for conventional transfection experiments.
ISSN:2329-0501
2329-0501
DOI:10.1016/j.omtm.2024.101202