Team:ETHZ Basel/Project/Movie

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<div class="center"><div class="thumb tnone"><div class="thumbinner" style="width:902px;">
<div class="center"><div class="thumb tnone"><div class="thumbinner" style="width:902px;">
<iframe title="YouTube video player" class="youtube-player" type="text/html" width="900" height="705" src="http://www.youtube.com/embed/XoWI-fxdo74?hd=1" frameborder="0"></iframe>
<iframe title="YouTube video player" class="youtube-player" type="text/html" width="900" height="705" src="http://www.youtube.com/embed/XoWI-fxdo74?hd=1" frameborder="0"></iframe>
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<div class="thumbcaption"><div class="magnify"><a href="http://www.youtube.com/watch?v=XoWI-fxdo74" class="external" title="Enlarge"><img src="/wiki/skins/common/images/magnify-clip.png" width="15" height="11" alt="" /></a></div><b>Project overview of E. lemming.</b> The core idea of E. lemming is to control chemotaxis of <i>E. coli</i> by means of light! We'll realize this by hijacking and perturbing the tumbling / directed flagellar movement apparatus. By coupling directed flagellar movement regulating proteins to a novel synthetic light-sensitive spatial localization system, their activity can be controlled reversibly.</div></div></div></div>  
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<div class="thumbcaption"><div class="magnify"><a href="http://www.youtube.com/watch?v=XoWI-fxdo74?hd=1" class="external" title="Enlarge"><img src="/wiki/skins/common/images/magnify-clip.png" width="15" height="11" alt="" /></a></div><b>Project overview of E. lemming.</b> The core idea of E. lemming is to control chemotaxis of <i>E. coli</i> by means of light! We'll realize this by hijacking and perturbing the tumbling / directed flagellar movement apparatus. By coupling directed flagellar movement regulating proteins to a novel synthetic light-sensitive spatial localization system, their activity can be controlled reversibly.</div></div></div></div>  
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Revision as of 11:55, 8 October 2010

Introduction

Project overview of E. lemming. The core idea of E. lemming is to control chemotaxis of E. coli by means of light! We'll realize this by hijacking and perturbing the tumbling / directed flagellar movement apparatus. By coupling directed flagellar movement regulating proteins to a novel synthetic light-sensitive spatial localization system, their activity can be controlled reversibly.