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<h1>Optogenetic</h1> | <h1>Optogenetic</h1> | ||
− | <div class=text2><div class=text2left><h4>Membrane photosensor</h4><ul><li></li></li></div> | + | <div class=text2><div class=text2left><h4>Membrane photosensor</h4><ul><li> PHA production under two light AND-gate.</li><li> Characterisation of slow growth in multi-plasmid system. <li> Chacterisation of AND-gate using transmembrane photoreceptors.</li></ul></li></li></div> |
<div class=text2right><h4>Optics</h4><ul><li> Results confirm the feasibility of achieving a high targeting resolution at significant length within the gel medium.</li></ul></div></div> | <div class=text2right><h4>Optics</h4><ul><li> Results confirm the feasibility of achieving a high targeting resolution at significant length within the gel medium.</li></ul></div></div> | ||
<h1>Biomaterial</h1> | <h1>Biomaterial</h1> |
Revision as of 02:13, 2 November 2017
RESULTS
Optogenetic
Membrane photosensor
- PHA production under two light AND-gate.
- Characterisation of slow growth in multi-plasmid system.
- Chacterisation of AND-gate using transmembrane photoreceptors.
Optics
- Results confirm the feasibility of achieving a high targeting resolution at significant length within the gel medium.
Biomaterial
Calcium Carbonate
- Coral acid-rich proteins(CARP1-CARP4) were implemented into the expression vector and transformed into Escherichia coli BL21.
- Right size proteins were expressed and checked for calcium carbonate precipitation ability.
Polysilicate
- Characterized a biobrick from iGEM Pasteur
PHA
- Improved the characterization of part BBa_K1149051 using flow cytometry to better quantify P3HB production in E. coli.
RNA organelle
- RNA organelle was shown to decrease background expression of GFP, giving evidence to our model.
- The RNA organelle was long-living, as it was observed to irreversible and stable in culture 20h after induction.
Logic Gate & Photo-Caging
- Successful testing in cell-free system with Dronpa.
- Found evidence that Dronpa "sticks" the repressors to DNA.