Difference between revisions of "Team:KAIT Japan"

Line 54: Line 54:
 
.nav ul{
 
.nav ul{
 
width:100%;
 
width:100%;
height:180px;
+
height:100px;
 
display:-moz-box;
 
display:-moz-box;
 
display:-webkit-box;
 
display:-webkit-box;
Line 91: Line 91:
 
.nav ul li a:hover{
 
.nav ul li a:hover{
 
width:150px;
 
width:150px;
height:150px;
+
height:130px;
 
line-height:150px;
 
line-height:150px;
 
font-size:24px;
 
font-size:24px;
Line 159: Line 159:
 
<br>
 
<br>
 
<h3><FONT size="11">Welcome to our Page!!</FONT></h3>
 
<h3><FONT size="11">Welcome to our Page!!</FONT></h3>
 
 
<div class="nav">
 
<div class="nav">
 
<ul>
 
<ul>
Line 173: Line 172:
 
<li><a href="https://2015.igem.org/Team:KAIT_Japan/Judge" id="judge">Judge</a></li>
 
<li><a href="https://2015.igem.org/Team:KAIT_Japan/Judge" id="judge">Judge</a></li>
 
</ul>
 
</ul>
 +
</div>
  
 
 
</div>
 
 
<p id="syoukai">
 
<p id="syoukai">
 
<br>
 
<br>

Revision as of 06:07, 8 September 2015


Welcome to our Page!!


Abstract

~Control protein activity by light~

our project is control protein activity by light.
controlling protein activity by light is important for analyzing protein function and controlling synthetic biology systems.However, previous methods require co factor or use toxic blue light.We need more usable method to control synthesized biological systems.
there is a noble method that doesn't require co factor and use toxic blue light.The method use mutant of a fluorescent protein, Dronpa.
We think this method solve previous problems and contribute controlling synthetic biology systems. But there is not enough quantitative data.So,we will exam and modify this method. After that, we will show light controlling biological system by using this method.