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10.1021/acssynbio.7b00077

http://scihub22266oqcxt.onion/10.1021/acssynbio.7b00077
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C5693606!5693606!28763188
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suck abstract from ncbi


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pmid28763188      ACS+Synth+Biol 2017 ; 6 (11): 2056-66
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  • A tug-of-war mechanism for pattern formation in a genetic network #MMPMID28763188
  • Gomez MM; Arcak M
  • ACS Synth Biol 2017[Nov]; 6 (11): 2056-66 PMID28763188show ga
  • Synthesizing spatial patterns with genetic networks is an ongoing challenge in synthetic biology. A successful demonstration of pattern formation would imply a better understanding of systems in the natural world and advance applications in synthetic biology. In developmental systems, transient patterning may suffice in order to imprint instructions for long-term development. In this paper we show that transient but persistent patterns can emerge from a realizable synthetic gene network based on a toggle switch. We show that a bistable system incorporating diffusible molecules can generate patterns that resemble Turing patterns but are distinctly different in the underlying mechanism: diffusion of mutually inhibiting molecules creates a prolonged ?tug-of-war? between patches of cells at opposing bistable states. The patterns are transient but longer wavelength patterns persist for extended periods of time. Analysis of a representative small scale model implies the eigenvalues of the persistent modes are just above the threshold of stability. The results are verified through simulation of biologically relevant models.
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