Team:PKU Beijing/Parts Characterization
From 2009.igem.org
Spring zhq (Talk | contribs) (→Characterization of the inducible promoters) |
Spring zhq (Talk | contribs) (→Characterization of the AND Gate Parts) |
||
Line 16: | Line 16: | ||
==='''Characterization of the AND Gate Parts'''=== | ==='''Characterization of the AND Gate Parts'''=== | ||
- | [[Image:PKU_AND_Gate_Mechanism.png| | + | [[Image:PKU_AND_Gate_Mechanism.png|340px|left|thumb|Fig1. '''The mechanism of the AND Gate''' J Christopher Anderson, Christopher A Voigt and Adam P Arkin (2007) ''Environmental signal integration by a modular AND gate'' '''Molecular Systems Biology 3:133''']] [[Image: PKU_2K_AND_Gate.png|350px|right]] |
<br><br> | <br><br> | ||
Our AND Gate is designed by J. Anderson, C. Voigt and A. Arkin (Molecular Systems Biology 3:133, 2007). We reconstructed the AND gate according to the principle of standard assembly, and finally greatly improved its efficiency. The AND gate senses small molecules as inputs and integrates the signals to activate T7 promoter, so as to trigger the expression of downstream gene. Different promoters are used to drive the expression of T7ptag and SupD tRNA to make this AND Gate. It really needs a great amount of work in order to find one qualified AND Gate out of tens of AND Gates. The figure on the top left demonstrates the mechanism of our AND Gate. The figure on the top right denotes one of the best AND Gates we achieved in the summer. These two AND Gate parts have been well characterized. | Our AND Gate is designed by J. Anderson, C. Voigt and A. Arkin (Molecular Systems Biology 3:133, 2007). We reconstructed the AND gate according to the principle of standard assembly, and finally greatly improved its efficiency. The AND gate senses small molecules as inputs and integrates the signals to activate T7 promoter, so as to trigger the expression of downstream gene. Different promoters are used to drive the expression of T7ptag and SupD tRNA to make this AND Gate. It really needs a great amount of work in order to find one qualified AND Gate out of tens of AND Gates. The figure on the top left demonstrates the mechanism of our AND Gate. The figure on the top right denotes one of the best AND Gates we achieved in the summer. These two AND Gate parts have been well characterized. |
Revision as of 17:30, 21 October 2009
|
||||||||||||||
|
||||||||||||||