Haynes Lab: Difference between revisions
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* '''Synthetic chromatin for human cell differentiation''' - Behzad Damadzadeh | * '''Synthetic chromatin for human cell differentiation''' - Behzad Damadzadeh | ||
* '''Microbial communication with synthetic quorum sensing''' - Rene Davis | * '''Microbial communication with synthetic quorum sensing''' - Rene Davis | ||
* '''Engineering epigenetic transcription factors''' - | * '''Engineering epigenetic transcription factors''' - Cameron Gardner (FURI) | ||
* '''Protein-DNA fusions in living microbes''' - Ryan Muller (SOLUR) | * '''Protein-DNA fusions in living microbes''' - Ryan Muller (SOLUR) | ||
* '''Synthetic chromatin and UV-damage''' - Brendan Fries (SOLUR) | * '''Synthetic chromatin and UV-damage''' - Brendan Fries (SOLUR) | ||
* '''K-12 mammalian cell synthetic biology with Open-PCR and a single drop fluorimeter''' - Alfonso Rivera-Passapera and Zazu Moloi (SynBERC) | * '''K-12 mammalian cell synthetic biology with Open-PCR and a single-drop fluorimeter''' - Alfonso Rivera-Passapera and Zazu Moloi (SynBERC) | ||
* '''Synthetic chromatin for pancreatic cell development''' - David Barclay (FURI) | |||
</div> | </div> | ||
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* [http://openwetware.org/wiki/User:Behzad_Damadzadeh/Notebook/PcTF_Subcloning_in_E-coli Behzad] | * [http://openwetware.org/wiki/User:Behzad_Damadzadeh/Notebook/PcTF_Subcloning_in_E-coli Behzad] | ||
* [http://openwetware.org/wiki/Haynes_Lab:Notebook/Engineering_PC-TFs Brady] | * [http://openwetware.org/wiki/Haynes_Lab:Notebook/Engineering_PC-TFs Brady] | ||
* | * [http://openwetware.org/wiki/User:David_Barclay/Notebook David Barclay] | ||
* [http://openwetware.org/wiki/Haynes_Lab:Notebook/Heathers_Lab_Notebook Heather] | * [http://openwetware.org/wiki/Haynes_Lab:Notebook/Heathers_Lab_Notebook Heather] | ||
* [http://openwetware.org/wiki/Haynes_Lab:Notebook/Jan Jan] | * [http://openwetware.org/wiki/Haynes_Lab:Notebook/Jan Jan] |
Revision as of 10:00, 13 December 2013
Our group uses synthetic, systems, and quantitative biology to engineer useful gene and protein-based biological devices and to deepen our understanding of molecular cell biology. We operate biological devices primarily in human/ mammalian cells. Accelerating the pace of therapeutic technologies (such as tissue regeneration and customizable protein-based drugs) via modular design is the grand challenge that shapes our research plans.
CURRENT PROJECTS
- Synthetic chromatin for human cell differentiation - Behzad Damadzadeh
- Microbial communication with synthetic quorum sensing - Rene Davis
- Engineering epigenetic transcription factors - Cameron Gardner (FURI)
- Protein-DNA fusions in living microbes - Ryan Muller (SOLUR)
- Synthetic chromatin and UV-damage - Brendan Fries (SOLUR)
- K-12 mammalian cell synthetic biology with Open-PCR and a single-drop fluorimeter - Alfonso Rivera-Passapera and Zazu Moloi (SynBERC)
- Synthetic chromatin for pancreatic cell development - David Barclay (FURI)
Lab Notebooks - Active
Lab Notebooks - Archived