Artificial cell-cell communication in yeast Saccharomyces cerevisiae using signaling elements from Arabidopsis thaliana
- 20 November 2005
- journal article
- research article
- Published by Springer Nature in Nature Biotechnology
- Vol. 23 (12) , 1551-1555
- https://doi.org/10.1038/nbt1162
Abstract
The construction of synthetic cell-cell communication networks can improve our quantitative understanding of naturally occurring signaling pathways and enhance our capabilities to engineer coordinated cellular behavior in cell populations. Towards accomplishing these goals in eukaryotes, we developed and analyzed two artificial cell-cell communication systems in yeast. We integrated Arabidopsis thaliana signal synthesis and receptor components with yeast endogenous protein phosphorylation elements and new response promoters. In the first system, engineered yeast 'sender' cells synthesize the plant hormone cytokinin, which diffuses into the environment and activates a hybrid exogenous/endogenous phosphorylation signaling pathway in nearby engineered yeast 'receiver' cells. For the second system, the sender network was integrated into the receivers under positive-feedback regulation, resulting in population density-dependent gene expression (that is, quorum sensing). The combined experimental work and mathematical modeling of the systems presented here can benefit various biotechnology applications for yeast and higher level eukaryotes, including fermentation processes, biomaterial fabrication and tissue engineering.Keywords
This publication has 36 references indexed in Scilit:
- Saccharomyces cerevisiae Histidine Phosphotransferase Ypd1p Shuttles between the Nucleus and Cytoplasm for SLN1 -Dependent Phosphorylation of Ssk1p and Skn7pEukaryotic Cell, 2003
- Osmotic Stress Signaling and Osmoadaptation in YeastsMicrobiology and Molecular Biology Reviews, 2002
- The Eukaryotic Two-Component Histidine Kinase Sln1p RegulatesOCH1via the Transcription Factor, Skn7pMolecular Biology of the Cell, 2002
- CYTOKININMETABOLISM ANDACTIONAnnual Review of Plant Biology, 2001
- The Arabidopsis Sensor His-kinase, AHK4, Can Respond to CytokininsPlant and Cell Physiology, 2001
- Identification of CRE1 as a cytokinin receptor from ArabidopsisNature, 2001
- Destabilized green fluorescent protein for monitoring dynamic changes in yeast gene expression with flow cytometryYeast, 2000
- Zero Background Yeast Reporter PlasmidsGene, 2000
- The yeast histidine protein kinase, Sln1p, mediates phosphotransfer to two response regulators, Ssk1p and Skn7pThe EMBO Journal, 1998
- A two-component system that regulates an osmosensing MAP kinase cascade in yeastNature, 1994