Team:XMU-China/index2
From 2012.igem.org
Line 1: | Line 1: | ||
- | |||
<html xmlns="http://www.w3.org/1999/xhtml"> | <html xmlns="http://www.w3.org/1999/xhtml"> | ||
<head> | <head> | ||
Line 13: | Line 12: | ||
height:50px; | height:50px; | ||
z-index:4; | z-index:4; | ||
- | left: | + | left:0px; |
top:3px; | top:3px; | ||
padding-left:20px; | padding-left:20px; | ||
Line 27: | Line 26: | ||
height:115px; | height:115px; | ||
z-index:2; | z-index:2; | ||
- | left: | + | left: 0px; |
top: 55px; | top: 55px; | ||
} | } | ||
Line 39: | Line 38: | ||
z-index: 1; | z-index: 1; | ||
width: 900px; | width: 900px; | ||
- | left: | + | left: 145px; |
top: 55px; | top: 55px; | ||
display: table; | display: table; | ||
Line 49: | Line 48: | ||
height:100px; | height:100px; | ||
z-index:3; | z-index:3; | ||
- | left: | + | left:145px; |
top:80px; | top:80px; | ||
visibility:inherit; | visibility:inherit; | ||
Line 58: | Line 57: | ||
position: absolute; | position: absolute; | ||
width:840px; | width:840px; | ||
- | left: | + | left: 145px; |
top: 210px; | top: 210px; | ||
margin:30px; | margin:30px; |
Revision as of 09:03, 2 August 2012
The aim of this study is to construct a fluorescent digital display device of genetic circuits with synthetic logic gates. The finished device will display and switch numbers. Similar to electronic circuits, logic regulation operation in cells integrates the extracellular and intracellular signals. We assemble several pairs of promoters and their activators (or repressors) into computing building block of the circuit: PBAD-Arabinose,PcI-CI, and PtetR-TetR. These computation units act as genetic logic gates perform AND, OR and NOT gates function. In order to light up our digital numbers, we put Green Fluorescent Protein (GFP) in the downstream expression, which is ubiquitous in the field of biological signal protein. Considering that the common types of GFP usually tend to be very stable and hard to "quench", we choose unstable GFP to make our device reusable and convert in a fast speed. This unstable GFP is tagged with a C-terminal extension, which will be recognized and degraded by tail-specific proteases, leading to a short half-life and fast degradation of the protein. Degradation rate should be confined at a suitable range, otherwise the device would either have no light or take a long time to change numbers. |