Synthetic Crossfeeding Cocultures in Yeast: Computational Model of Autoregulation and Design of a Tryptophan Export Device

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Synthetic Crossfeeding Cocultures in Yeast: Computational Model of Autoregulation and Design of a Tryptophan Export Device is …
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scholarly articleQ13442814

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P356DOI10.1155/2015/178514

P2093author name stringAlejandro Colman-Lerner
Luciano Gastón Morosi
Alan Bush
Alejandro Daniel Nadra
Alicia Grande
Germán Sabio
Mario Rugiero
Verónica Parasco
P2860cites workDynamics in the mixed microbial concourseQ37814778
Trojan peptides: the penetratin system for intracellular deliveryQ47721580
Oscillating microbial dynamics driven by small populations, limited nutrient supply and high death rates.Q54329374
Using Cell-ID 1.4 with R for microscope-based cytometry.Q55128202
Tryptophan zippers: Stable, monomeric  -hairpinsQ27631564
Getting started with yeastQ29618025
A quantitative estimation of the global translational activity in logarithmically growing yeast cellsQ33377265
A programmable Escherichia coli consortium via tunable symbiosisQ34221950
Auxotrophic yeast strains in fundamental and applied research.Q34614381
Characterisation of cell-penetrating peptide-mediated peptide deliveryQ35049077
Synthetic cooperation in engineered yeast populationsQ35629292
Selection-induced mutations occur in yeastQ37001654
P275copyright licenseCreative Commons Attribution 3.0 UnportedQ14947546
P6216copyright statuscopyrightedQ50423863
P921main subjectcomputational modelQ1122506
P304page(s)1-10
P577publication date2015-01-01
P1476titleSynthetic Crossfeeding Cocultures in Yeast: Computational Model of Autoregulation and Design of a Tryptophan Export Device
P478volume2015

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