Team:Cambridge/Project/Amplification

From 2009.igem.org

(Difference between revisions)
(Introduction)
(Introduction)
Line 14: Line 14:
'''Cambridge iGEM 2007'''
'''Cambridge iGEM 2007'''
-
The Cambridge 2007 iGEM team developed a Pops amplifier system using phage activators and promoters.  The system works by using a Pops input to make an activator protein, as shown in the diagram from their wiki below, which then binds to a promoter and generates a Pops output.   
+
The Cambridge 2007 iGEM team developed a PoPS amplifier system using phage activators and promoters.  The system works by using a PoPS input to make an activator protein, as shown in the diagram from their wiki below, which then binds to a promoter and generates a Pops output.   
[[Image:amplifier07.jpg]]
[[Image:amplifier07.jpg]]
-
In order to quantify the ratio between POPs in and POPs out, the team built the following construction on the high copy plasmid pSB1A2, with mRFP and GFP as Pops reporters and 15 total combinations of different activators and reporters.
+
In order to quantify the ratio between PoPS in and PoPS out, the team built the following construction on the high copy plasmid pSB1A2, with mRFP and GFP as PoPS reporters and 15 total combinations of different activators and reporters.
[[Image:construction07.jpg]]
[[Image:construction07.jpg]]

Revision as of 14:52, 4 August 2009


A Reliable Amplification System

Introduction

Cambridge iGEM 2007

The Cambridge 2007 iGEM team developed a PoPS amplifier system using phage activators and promoters. The system works by using a PoPS input to make an activator protein, as shown in the diagram from their wiki below, which then binds to a promoter and generates a Pops output.

Amplifier07.jpg


In order to quantify the ratio between PoPS in and PoPS out, the team built the following construction on the high copy plasmid pSB1A2, with mRFP and GFP as PoPS reporters and 15 total combinations of different activators and reporters.

Construction07.jpg


They successfully quantified the Pops amplification factors for each activator/promoter combination after arabinose induction.

Further work - Cambridge iGEM 2009

However, after data analysis they pointed out one phenomena that required further investigation:

1. Cultures transformed with the amplifier constructs showed reduced growth which increased in severity with increased arabinose induction. It was suspected that the activators were toxic to the cells at high concentrations.

The Cambridge 2009 iGEM team hopes to debug this system by concentrating on these two problems.

Project

Starting off with 2007

We began by recreating the 2007 team's data to see if we would encounter the same problems.

Experiments

Results