Team:SJTU-BioX-Shanghai
From 2012.igem.org
Line 22: | Line 22: | ||
| | | | ||
==About of Our Team == | ==About of Our Team == | ||
+ | [[Image:SJTU-BioX-Shanghai_logo.png|right|250px]] | ||
Our team consists of 11 members, who are all junior students of Shanghai Jiao Tong University. | Our team consists of 11 members, who are all junior students of Shanghai Jiao Tong University. | ||
Most of us came from School of Life Sciences and Biotechnology. | Most of us came from School of Life Sciences and Biotechnology. | ||
Line 29: | Line 30: | ||
===Team Members=== | ===Team Members=== | ||
- | + | <br/> | |
- | + | <br/> | |
- | + | ||
== Description of Our Project == | == Description of Our Project == | ||
Line 45: | Line 45: | ||
##Divergent biochemical pathways commonly exist in all types of organisms, but it is extremely hard to artificially control and switch the directions of these reactions. | ##Divergent biochemical pathways commonly exist in all types of organisms, but it is extremely hard to artificially control and switch the directions of these reactions. | ||
- | ===What to do | + | ===What to do=== |
We aim to attach enzymes involved in certain reactions to membrane proteins in order to fulfill goals stated below: | We aim to attach enzymes involved in certain reactions to membrane proteins in order to fulfill goals stated below: | ||
Line 75: | Line 75: | ||
Divergent biochemical pathways commonly exist in all types of organisms, and most of those reactions are stringently and internally controlled. However, it is extremely hard to artificially control and switch the directions of these reactions. Usually there are two different products produced in divergent reactions. Sometimes we want one product, and sometimes we want the other. Using our designed device, we can change the direction by introducing different extracellular signals. | Divergent biochemical pathways commonly exist in all types of organisms, and most of those reactions are stringently and internally controlled. However, it is extremely hard to artificially control and switch the directions of these reactions. Usually there are two different products produced in divergent reactions. Sometimes we want one product, and sometimes we want the other. Using our designed device, we can change the direction by introducing different extracellular signals. | ||
+ | [[Image:SJTU-BioX-Shanghai_team.png|right|frame|Your team picture]] | ||
- | |||
- | |||
- | |||
- | |||
|} | |} | ||
Revision as of 01:51, 10 July 2012
About of Our TeamOur team consists of 11 members, who are all junior students of Shanghai Jiao Tong University. Most of us came from School of Life Sciences and Biotechnology. We are working, living and studying like a whole family. We were discussing our project and performing most of experiments in Bio-X institute of SJTU. Team Members
Description of Our ProjectMembrane WorkshopOur slogan: Cluster makes it faster; interaction alters the direction Motivation:
What to doWe aim to attach enzymes involved in certain reactions to membrane proteins in order to fulfill goals stated below:
Membrane Engine (Accelerator)As there is no compartment in prokaryotic cells, enzymes involved in a biochemical pathway diffuse all over the cytoplasm. Intermediates generated from one enzyme cannot be passed efficiently to the next due to spatial obstacles. However, if we attach those enzymes to engineered membrane proteins which assemble together, the reactions are going to proceed much faster. Why do we attach enzymes to interacting protein domains and ligands that assemble together?
Why do we localize the enzymes to the membrane?
Membrane SwitchNow that we have built a device that can speed up a biological pathway. Our next goal is to control the pathway better---- to switch the direction of certain reactions, as shown in figure 3. Divergent biochemical pathways commonly exist in all types of organisms, and most of those reactions are stringently and internally controlled. However, it is extremely hard to artificially control and switch the directions of these reactions. Usually there are two different products produced in divergent reactions. Sometimes we want one product, and sometimes we want the other. Using our designed device, we can change the direction by introducing different extracellular signals. |
Home | Team | Official Team Profile | Project | Parts Submitted to the Registry | Modeling | Notebook | Safety | Attributions |
---|