Team:Cambridge

From 2011.igem.org

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       <p>We wanted to know whether the iGEM has had any effect on it's previous contestants.</p>
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       <p>To this end, we conducted a number of interviews with previous iGEMmers, as well as conducting a simple poll of previous contestants.</p>
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       <p>To this end, we conducted a number of interviews with previous iGEMmers, as well as conducting a simple poll of past contestants.</p>
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Revision as of 17:20, 15 September 2011

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OVERVIEW
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Abstract

We investigated the properties of a novel yet under-researched group of proteins called reflectins.

Reflectins are interesting because of their self-organising properties, which cause them to produce dynamic structural colour.

We expressed codon-optimised reflectin in E.Coli, and observed the protein's in vivo and in vitro effects.

Structural Colour

Nature’s colours don’t just come from pigments, but from structure too.

Cephalopods camouflage themselves using intracellular structures made from reflectins.

These are the only known proteinaceous structures to exhibit structural colour. They are inspiring a new class of responsive optical materials.

Image 1
Image 2
Image 3

Impact of iGEM

We wanted to know whether the iGEM has had any effect on its previous contestants.

To this end, we conducted a number of interviews with previous iGEMmers, as well as conducting a simple poll of past contestants.

Tools

We used Gibson Assembly instead exclusively for construct assembly during the competition, allowing us to assemble plasmids faster and with greater ease than would be possible using standard techniques.

We contributed to a collection of software tools called Gibthon (initiated by Cambridge iGEM 2010), which aids the design of primers for Gibson assembly.