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<h4>BBa_K2657005: Improved sYFP2 Phytobrick</h4> | <h4>BBa_K2657005: Improved sYFP2 Phytobrick</h4> | ||
− | <p>BBa_K2657005 is an improved version of the Biobrick BBa_K864100, which is the coding sequence for super yellow fluorescent protein (sYFP2). We increased the evolutionary stability of the sequence by removing the mutational hotspot. Originally, BBa_K864100, contained a | + | <p>BBa_K2657005 is an improved version of the Biobrick BBa_K864100, which is the coding sequence for super yellow fluorescent protein (sYFP2). We increased the evolutionary stability of the sequence by removing the mutational hotspot. Originally, BBa_K864100, contained a palindromic sequence. Palindromes in the DNA cause potential hairpins, which prevents RNA polymerase from translating the DNA correctly. We then designed primers that added BsmBI and BsaI restriction sites to the sequence and inserted it into PhytoBrick universal acceptor, BBa_P10500, via BsmBI assembly. This created a Phytobrick that functions in Golden Gate Assembly reactions, which is useful due to its strong fluorescent character.<a href = "http://parts.igem.org/Part:BBa_K2657005">Link to Part Page</a>.</p> |
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Revision as of 00:34, 17 October 2018
Parts
Overall, we submitted five Phytobricks
Basic Parts
BBa_K2657001: Tetracycline Resistance Gene
When observing the parts registry, we found that no tetracycline resistance gene had Phytobrick compatibility. Using primers, we added proper MoClo standard overhangs to each part as well as providing it the proper restriction sites — BsaI and BsmBI sites. The PCR products containing these overhangs were incorporated into the Universal Acceptor backbone, BBa_P10500, which is a modified pSB1C3 backbone. Link to Part Page
BBa_K2657002: Rp4 Origin of Transfer
At the same time while looking over the parts registry, we found no origin of transfer with Phytobrick overhangs. Using the same techniques that were used to make the TetR Phytobrick, we created a the Rp4 Phytobrick, which is a level 0 OriT Phytobrick.Link to Part Page. Here is also an example of the Rp4 part used in conjugation Link
BBa_K2657003: Red Chromoprotein Phytobrick
In order to improve a part already in the Biobrick Regisry, we chose the Red Chromoprotein-expressing, BBa_E1010. We then designed primers that added BsmBI and BsaI restriction sites to the sequence and inserted it into PhytoBrick universal acceptor, BBa_P10500, via BsmBI assembly. This created a Phytobrick that functions in Golden Gate Assembly reactions.Link to Part Page.
Improved Parts
BBa_K2657004: Red Chromoprotein with Strong Promoter cp25
For this improvement, we took BBa_E1010 (RCP) and added the synthetic, strong constitutive promoter, CP25 which functions in a broad range of organisms. This will increase the expression of the RCP. We also made the sequence golden gate compatible by inserting the sequence into the PhytoBrick Universal Acceptor, BBa_P10500. By linking a Promoter/RBS with a coding sequence, the transformation efficiency of Golden Gate Assembly reactions will increase since the number of parts in the assembly will be reduced. This will also allow BBa_E1010 to be a more useful selective marker as it usually requires one or two days to express and expresses weakly in its current form.Link to Part Page.
BBa_K2657005: Improved sYFP2 Phytobrick
BBa_K2657005 is an improved version of the Biobrick BBa_K864100, which is the coding sequence for super yellow fluorescent protein (sYFP2). We increased the evolutionary stability of the sequence by removing the mutational hotspot. Originally, BBa_K864100, contained a palindromic sequence. Palindromes in the DNA cause potential hairpins, which prevents RNA polymerase from translating the DNA correctly. We then designed primers that added BsmBI and BsaI restriction sites to the sequence and inserted it into PhytoBrick universal acceptor, BBa_P10500, via BsmBI assembly. This created a Phytobrick that functions in Golden Gate Assembly reactions, which is useful due to its strong fluorescent character.Link to Part Page.
<groupparts>iGEM18 Austin_UTexas</groupparts>