Resource competition can be the cause of unintended coupling between co-expressed genetic constructs. Here the authors quantify the resource load imposed by different mammalian genetic components to identify construct designs with increased performance and reduced resource footprint.Resource competition can be the cause of unintended coupling between co-expressed genetic constructs. Here we report the quantification of the resource load imposed by different mammalian genetic components and identify construct designs with increased performance and reduced resource footprint. We use these to generate improved synthetic circuits and optimise the co-expression of transfected cassettes, shedding light on how this can be useful for bioproduction and biotherapeutic applications. This work provides the scientific community with a framework to consider resource demand when designing mammalian constructs to achieve robust and optimised gene expression.

Di Blasi, R., Pisani, M., Tedeschi, F., Marbiah, M.M., Polizzi, K., Furini, S., et al. (2023). Resource-aware construct design in mammalian cells. NATURE COMMUNICATIONS, 14(1), 1-10 [10.1038/s41467-023-39252-4].

Resource-aware construct design in mammalian cells

Furini, Simone;
2023

Abstract

Resource competition can be the cause of unintended coupling between co-expressed genetic constructs. Here the authors quantify the resource load imposed by different mammalian genetic components to identify construct designs with increased performance and reduced resource footprint.Resource competition can be the cause of unintended coupling between co-expressed genetic constructs. Here we report the quantification of the resource load imposed by different mammalian genetic components and identify construct designs with increased performance and reduced resource footprint. We use these to generate improved synthetic circuits and optimise the co-expression of transfected cassettes, shedding light on how this can be useful for bioproduction and biotherapeutic applications. This work provides the scientific community with a framework to consider resource demand when designing mammalian constructs to achieve robust and optimised gene expression.
2023
Di Blasi, R., Pisani, M., Tedeschi, F., Marbiah, M.M., Polizzi, K., Furini, S., et al. (2023). Resource-aware construct design in mammalian cells. NATURE COMMUNICATIONS, 14(1), 1-10 [10.1038/s41467-023-39252-4].
Di Blasi, Roberto; Pisani, Mara; Tedeschi, Fabiana; Marbiah, Masue M; Polizzi, Karen; Furini, Simone; Siciliano, Velia; Ceroni, Francesca
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/952701
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