The food additive vanillic acid controls transgene expression in mammalian cells and mice

Пищeвая добавка ванилиновая кислота контролирует экспрессию трансгенов в клетках млекопитающих и мышах
Marc Gitzinger, Christian Kemmer, David A. Fluri, Marie Daoud El‐Baba, Wilfried Weber, Martin Fussenegger
2011-12-19

diet-controlled gene therapyinducible transcription controlmammalian cellstransgene expressionvanillic acid
Trigger-inducible transcription-control devices that reversibly fine-tune transgene expression in response to molecular cues have significantly advanced the rational reprogramming of mammalian cells. When designed for use in future gene- and cell-based therapies the trigger molecules have to be carefully chosen in order to provide maximum specificity, minimal side-effects and optimal pharmacokinetics in a mammalian organism. Capitalizing on control components that enable Caulobacter crescentus to metabolize vanillic acid originating from lignin degradation that occurs in its oligotrophic freshwater habitat, we have designed synthetic devices that specifically adjust transgene expression in mammalian cells when exposed to vanillic acid. Even in mice transgene expression was robust, precise and tunable in response to vanillic acid. As a licensed food additive that is regularly consumed by humans via flavoured convenience food and specific fresh vegetable and fruits, vanillic acid can be considered as a safe trigger molecule that could be used for diet-controlled transgene expression in future gene- and cell-based therapies.
1
Synthetic transcription-control devices based on Caulobacter crescentus components regulate transgene expression in mammalian cells in response to vanillic acid.
2
The system uses vanillic acid, a licensed and regularly consumed food additive, as a potentially safe trigger for mammalian transgene regulation.
3
Vanillic acid induces transgene expression with robust, precise, and tunable control in mice.
4
Vanillic-acid-responsive devices may enable diet-controlled transgene expression for future gene- and cell-based therapies.

Vanillic acid-inducible transgene-expression systems in mammalian cells and mice

Specificity, robustness, precision, tunability, and diet-controlled regulation of transgene expression in response to vanillic acid

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2011-12-19
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Marc Gitzinger
Christian Kemmer
David A. Fluri
Marie Daoud El‐Baba
Wilfried Weber
Martin Fussenegger
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