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  4. A red/far-red light-responsive bi-stable toggle switch to control gene expression in mammalian cells
 
research article

A red/far-red light-responsive bi-stable toggle switch to control gene expression in mammalian cells

Mueller, Konrad
•
Engesser, Raphael
•
Metzger, Stephanie
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2013
Nucleic Acids Research

Growth and differentiation of multicellular systems is orchestrated by spatially restricted gene expression programs in specialized subpopulations. The targeted manipulation of such processes by synthetic tools with high-spatiotemporal resolution could, therefore, enable a deepened understanding of developmental processes and open new opportunities in tissue engineering. Here, we describe the first red/far-red light-triggered gene switch for mammalian cells for achieving gene expression control in time and space. We show that the system can reversibly be toggled between stable on- and off-states using short light pulses at 660 or 740 nm. Red light-induced gene expression was shown to correlate with the applied photon number and was compatible with different mammalian cell lines, including human primary cells. The light-induced expression kinetics were quantitatively analyzed by a mathematical model. We apply the system for the spatially controlled engineering of angiogenesis in chicken embryos. The system's performance combined with cell- and tissue-compatible regulating red light will enable unprecedented spatiotemporally controlled molecular interventions in mammalian cells, tissues and organisms.

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Type
research article
DOI
10.1093/nar/gkt002
Web of Science ID

WOS:000318167900004

Author(s)
Mueller, Konrad
Engesser, Raphael
Metzger, Stephanie
Schulz, Simon
Kaempf, Michael M.
Busacker, Moritz
Steinberg, Thorsten
Tomakidi, Pascal
Ehrbar, Martin
Nagy, Ferenc
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Date Issued

2013

Publisher

Oxford University Press

Published in
Nucleic Acids Research
Volume

41

Issue

7

Start page

e77

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
SV  
Available on Infoscience
October 1, 2013
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/95128
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