Difference between revisions of "Team:Edinburgh/Composite Part"
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<h4 class="panel-title"> | <h4 class="panel-title"> | ||
− | <a data-toggle="collapse" data-parent="#accordion" href="#collapseOne"> | + | <a data-toggle="collapse" data-parent="#accordion" href="#collapseOne">mRFP driven by LacI promoter (BBa_K1615090)</a> |
</h4> | </h4> | ||
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<div class="panel-body"> | <div class="panel-body"> | ||
− | <p> | + | <p>mRFP (BBa_K1615089) driven by the IPTG inducible PLlac 0-1 promoter (BBa_K314103). This allows the <i>mRFP</i> gene to express mRFP when induced with IPTG. |
+ | </p> | ||
</div> | </div> | ||
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<h4 class="panel-title"> | <h4 class="panel-title"> | ||
− | <a data-toggle="collapse" data-parent="#accordion" href="#collapseTwo"> | + | <a data-toggle="collapse" data-parent="#accordion" href="#collapseTwo">CBDcenA+Linker fused to mRFP in RFC25 (BBa_K1615091)</a> |
</h4> | </h4> | ||
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<div class="panel-body"> | <div class="panel-body"> | ||
− | <p> | + | <p>mRFP (BBa_K1615089) fused to the C terminal of CBDcenA + C-terminal linker (BBa_K1321339) in RFC25. If folded properly, this allows mRFP to fluoresce while immobilised on cellulose. |
+ | <br> | ||
+ | <img src="https://static.igem.org/mediawiki/2015/2/20/CBD_RFP_folding.jpeg"> | ||
+ | <br> | ||
+ | To test the RFP folding when fused to a CBD we placed 200µL of crude cell lysate in a 96 well plate and observed the fluorescence under a blue light transilluminator. | ||
+ | |||
+ | </p> | ||
</div> | </div> | ||
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<h4 class="panel-title"> | <h4 class="panel-title"> | ||
− | <a data-toggle="collapse" data-parent="#accordion" href="#collapseThree"> | + | <a data-toggle="collapse" data-parent="#accordion" href="#collapseThree">mRFP fused to CBDcenA+Linker in RFC25 (BBa_K16150092)</a> |
</h4> | </h4> | ||
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<div class="panel-body"> | <div class="panel-body"> | ||
− | <p> | + | <p>mRFP (BBa_K1615089) fused to the N terminal of CBDcenA + C terminal linker (BBa_K1321339) in RFC25. If folded properly, this allows mRFP to fluoresce while immobilised on cellulose. |
+ | </p> | ||
</div> | </div> | ||
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</div> | </div> | ||
+ | <div class="panel panel-default"> | ||
− | + | <div class="panel-heading"> | |
− | + | ||
− | + | ||
− | + | ||
+ | <h4 class="panel-title"> | ||
+ | |||
+ | <a data-toggle="collapse" data-parent="#accordion" href="#collapseThree">mRFP fused to CBDcenA+Linker in RFC25 (BBa_K16150092)</a> | ||
+ | |||
+ | </h4> | ||
+ | |||
+ | </div> | ||
+ | |||
+ | <div id="collapseThree" class="panel-collapse collapse"> | ||
+ | |||
+ | <div class="panel-body"> | ||
+ | |||
+ | <p>mRFP (BBa_K1615089) fused to the N terminal of CBDcenA + C terminal linker (BBa_K1321339) in RFC25. If folded properly, this allows mRFP to fluoresce while immobilised on cellulose. | ||
+ | <br> | ||
+ | <br> | ||
+ | <img src="https://static.igem.org/mediawiki/2015/2/20/CBD_RFP_folding.jpeg"> | ||
+ | <br> | ||
+ | <br> | ||
+ | We tested the dissociation of this part on Whatman 54 using isostandard chads. This involved incubating the chads in the crude cell lysate for 10 minutes and then washing them with PBS for various periods time to test the binding affinity of this CBD. | ||
+ | <br> | ||
+ | <br> | ||
+ | We tested the dissociation of this part on Whatman 54 using isostandard chads. This involved incubating the chads in the crude cell lysate for 10 minutes and then washing them with PBS for various periods time to test the binding affinity of this CBD. | ||
+ | |||
+ | </p> | ||
+ | |||
+ | </div> | ||
+ | |||
+ | </div> | ||
+ | |||
+ | </div> | ||
+ | |||
+ | </div> | ||
+ | </div> | ||
+ | <div class="panel panel-default"> | ||
+ | |||
+ | <div class="panel-heading"> | ||
+ | |||
+ | <h4 class="panel-title"> | ||
+ | |||
+ | <a data-toggle="collapse" data-parent="#accordion" href="#collapseThree">Linker +dCBD fused to mRFP in RFC25 (BBa_K1615093) | ||
+ | </a> | ||
+ | |||
+ | </h4> | ||
+ | |||
+ | </div> | ||
+ | |||
+ | <div id="collapseThree" class="panel-collapse collapse"> | ||
+ | |||
+ | <div class="panel-body"> | ||
+ | |||
+ | <p>mRFP (BBa_K1615089) fused to the C terminal of dCBD + N terminal linker (BBa_K1321340). If folded properly, this allows mRFP to fluoresce while immobilised on cellulose. | ||
+ | <br> | ||
+ | <br> | ||
+ | <img src="https://static.igem.org/mediawiki/2015/2/20/CBD_RFP_folding.jpeg"> | ||
+ | <br> | ||
+ | To test the RFP folding when fused to a CBD we placed 200µL of crude cell lysate in a 96 well plate and observed the fluorescence under a blue light transilluminator. | ||
+ | </p> | ||
+ | |||
+ | </div> | ||
+ | |||
+ | </div> | ||
+ | |||
+ | </div> | ||
+ | |||
+ | </div> | ||
+ | </div> | ||
</body> | </body> | ||
</html> | </html> |
Revision as of 03:45, 19 September 2015
Heroin Esterase
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Morphine-6-Dehydrogenase
HTML stands for HyperText Markup Language. HTML is the main markup language for describing the structure of Web pages. Learn more.
Bootstrap is a powerful front-end framework for faster and easier web development. It is a collection of CSS and HTML conventions. Learn more.
CSS stands for Cascading Style Sheet. CSS allows you to specify various style properties for a given HTML element such as colors, backgrounds, fonts etc. Learn more.
Monoamine Oxidase A
HTML stands for HyperText Markup Language. HTML is the main markup language for describing the structure of Web pages. Learn more.
Bootstrap is a powerful front-end framework for faster and easier web development. It is a collection of CSS and HTML conventions. Learn more.
CSS stands for Cascading Style Sheet. CSS allows you to specify various style properties for a given HTML element such as colors, backgrounds, fonts etc. Learn more.
Laccase
HTML stands for HyperText Markup Language. HTML is the main markup language for describing the structure of Web pages. Learn more.
Bootstrap is a powerful front-end framework for faster and easier web development. It is a collection of CSS and HTML conventions. Learn more.
CSS stands for Cascading Style Sheet. CSS allows you to specify various style properties for a given HTML element such as colors, backgrounds, fonts etc. Learn more.
mRFP
mRFP (BBa_K1615089) driven by the IPTG inducible PLlac 0-1 promoter (BBa_K314103). This allows the mRFP gene to express mRFP when induced with IPTG.
mRFP (BBa_K1615089) fused to the C terminal of CBDcenA + C-terminal linker (BBa_K1321339) in RFC25. If folded properly, this allows mRFP to fluoresce while immobilised on cellulose.
To test the RFP folding when fused to a CBD we placed 200µL of crude cell lysate in a 96 well plate and observed the fluorescence under a blue light transilluminator.
mRFP (BBa_K1615089) fused to the N terminal of CBDcenA + C terminal linker (BBa_K1321339) in RFC25. If folded properly, this allows mRFP to fluoresce while immobilised on cellulose.
mRFP (BBa_K1615089) fused to the N terminal of CBDcenA + C terminal linker (BBa_K1321339) in RFC25. If folded properly, this allows mRFP to fluoresce while immobilised on cellulose.
We tested the dissociation of this part on Whatman 54 using isostandard chads. This involved incubating the chads in the crude cell lysate for 10 minutes and then washing them with PBS for various periods time to test the binding affinity of this CBD.
We tested the dissociation of this part on Whatman 54 using isostandard chads. This involved incubating the chads in the crude cell lysate for 10 minutes and then washing them with PBS for various periods time to test the binding affinity of this CBD.
mRFP (BBa_K1615089) fused to the C terminal of dCBD + N terminal linker (BBa_K1321340). If folded properly, this allows mRFP to fluoresce while immobilised on cellulose.
To test the RFP folding when fused to a CBD we placed 200µL of crude cell lysate in a 96 well plate and observed the fluorescence under a blue light transilluminator.