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Abstract
Tight control over protein degradation is a fundamental requirement for cells to respond rapidly to various stimuli and adapt to a fluctuating environment. Here we develop a versatile, easy-to-handle library of destabilizing tags (degrons) for the precise regulation of protein expression profiles in mammalian cells by modulating target protein half-lives in a predictable manner. Using the well-established tetracycline gene-regulation system as a model, we show that the dynamics of protein expression can be tuned by fusing appropriate degron tags to gene regulators. Next, we apply this degron library to tune a synthetic pulse-generating circuit in mammalian cells. With this toolbox we establish a set of pulse generators with tailored pulse lengths and magnitudes of protein expression. This methodology will prove useful in the functional roles of essential proteins, fine-tuning of gene-expression systems, and enabling a higher complexity in the design of synthetic biological systems in mammalian cells.
One method of controlling protein degradation is through the use of degrons. Here the authors present a toolbox of characterised degrons as a library to fine-tune biological gene-expression systems. Its application is demonstrated by a set of tunable synthetic pulse generators in mammalian cells.
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Details
; Lang, Moritz 3 ; Fussenegger, Martin 4
1 ETH Zürich, Department of Biosystems Science and Engineering, Basel, Switzerland (GRID:grid.5801.c) (ISNI:0000 0001 2156 2780)
2 Cilag AG, Schaffhausen, Switzerland (GRID:grid.5801.c)
3 Institute of Science and Technology Austria, Klosterneuburg, Austria (GRID:grid.33565.36) (ISNI:0000000404312247)
4 ETH Zürich, Department of Biosystems Science and Engineering, Basel, Switzerland (GRID:grid.5801.c) (ISNI:0000 0001 2156 2780); University of Basel, Faculty of Science, Basel, Switzerland (GRID:grid.6612.3) (ISNI:0000 0004 1937 0642)




