Team:KULeuven/Abstract
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The main idea is to synthesize a molecule 'X' and at the same time measure the concentration of this molecule outside the cell in order to keep the concentration constant. This concentration can then be modulated using light intensity. This creates a controll system with feedback from the concentration. | The main idea is to synthesize a molecule 'X' and at the same time measure the concentration of this molecule outside the cell in order to keep the concentration constant. This concentration can then be modulated using light intensity. This creates a controll system with feedback from the concentration. | ||
- | For proof of concept the molecule 'X' is set to be vanillin. | + | For proof of concept the molecule 'X' is set to be vanillin. Vanillin will be synthesized and can freely diffuse out of the cell. The concentration outside the cell is measured with a vanillin receptor. |
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how we'll control the concentration | how we'll control the concentration | ||
<html></center></html> | <html></center></html> | ||
- | + | =Biobricks= | |
<html><center></html> | <html><center></html> | ||
all the parts we are planning on using/making: | all the parts we are planning on using/making: |
Revision as of 14:29, 15 July 2009
Essencia Coli
The main idea is to synthesize a molecule 'X' and at the same time measure the concentration of this molecule outside the cell in order to keep the concentration constant. This concentration can then be modulated using light intensity. This creates a controll system with feedback from the concentration.
For proof of concept the molecule 'X' is set to be vanillin. Vanillin will be synthesized and can freely diffuse out of the cell. The concentration outside the cell is measured with a vanillin receptor.
Biobricks
the ribokey controlled by the blue light receptor
Vanillinsynthesis with ribolock in front.
Vanillin receptor.
Antikey that is produced when the vanillin concentration reaches high levels.
to be constructed