Tokyo Alliance: Significance
From 2006.igem.org
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* Expansion of '''inducer library'''. | * Expansion of '''inducer library'''. | ||
- | One of the biggest problem in Synthetic Biology is only a few numbers of inducer of transcriptional regulators. | + | :One of the biggest problem in Synthetic Biology is only a few numbers of inducer of transcriptional regulators. |
* Diverse '''regulatory region library''' by '''Systematic design/construction''' | * Diverse '''regulatory region library''' by '''Systematic design/construction''' | ||
- | [[Image:significance1.jpg|500px|]] | + | :[[Image:significance1.jpg|500px|]] |
- | As | + | :As long as we use previous iGEM methods, it is arduous to construct regulatory regions to which multiple transcriptional regulators bind. |
+ | :[[Image:significance2.jpg|500px|]] | ||
- | + | :Combinatorial rewiring of these parts allows replacing regulators. | |
- | + | :For example, if so, we can replace the regulator binding sites between -10 and RBS. | |
+ | |||
+ | |||
+ | '''See our [[Tokyo_Alliance:_Conclusion#Construction_Family_Tree |Construction Family Tree]] (Results Page) !''' |
Latest revision as of 13:04, 1 November 2006
Our contributions to the iGEM and SynBio World
- Expansion of inducer library.
- One of the biggest problem in Synthetic Biology is only a few numbers of inducer of transcriptional regulators.
- Diverse regulatory region library by Systematic design/construction
- As long as we use previous iGEM methods, it is arduous to construct regulatory regions to which multiple transcriptional regulators bind.
- Combinatorial rewiring of these parts allows replacing regulators.
- For example, if so, we can replace the regulator binding sites between -10 and RBS.
See our Construction Family Tree (Results Page) !