Difference between revisions of "Part:BBa K4491009"
Line 4: | Line 4: | ||
The part MegaT is composed of RBS B0032, mVenus and L3S2P21 terminator. The purpose of the part is to show the relative amount of a CDS. In our project, we hope to use a reporter protein to visualise the amount of feedback species X we have in the circuit. To avoid tagging the reporter protein directly onto X, we have decided to put in an RBS and a reporter (mVenus) right after X to visualise the amount of X. We are implementing JUMP assembly. However, JUMP assembly requires us to clone in 4 parts (usually the promoter, RBS, CDS and terminator) at the same time and does not allow polycistronic assemblies as is the case we have in our main project. Therefore, we need a way to design an operon to allow polycistronic assembly. | The part MegaT is composed of RBS B0032, mVenus and L3S2P21 terminator. The purpose of the part is to show the relative amount of a CDS. In our project, we hope to use a reporter protein to visualise the amount of feedback species X we have in the circuit. To avoid tagging the reporter protein directly onto X, we have decided to put in an RBS and a reporter (mVenus) right after X to visualise the amount of X. We are implementing JUMP assembly. However, JUMP assembly requires us to clone in 4 parts (usually the promoter, RBS, CDS and terminator) at the same time and does not allow polycistronic assemblies as is the case we have in our main project. Therefore, we need a way to design an operon to allow polycistronic assembly. | ||
+ | |||
+ | |||
+ | <html> | ||
+ | </p> | ||
+ | </html> | ||
+ | __TOC__ | ||
+ | |||
+ | {| style="color:black" cellpadding="6" cellspacing="1" border="2" align="right" | ||
+ | ! colspan="2" style="background:#FFBF00;"|DT54 | ||
+ | |- | ||
+ | |'''Function''' | ||
+ | |Reporter | ||
+ | |- | ||
+ | |'''Use in''' | ||
+ | |Bacteria | ||
+ | |- | ||
+ | |'''Chassis Tested''' | ||
+ | |E. coli | ||
+ | |- | ||
+ | |'''Abstraction Hierarchy''' | ||
+ | |Part | ||
+ | |- | ||
+ | |'''Related Device''' | ||
+ | |||
+ | |- | ||
+ | |'''RFC standard''' | ||
+ | |[https://parts.igem.org/Help:Assembly_standard_10 RFC10] & [https://parts.igem.org/Help:Assembly_standard_12 RFC12] & [https://parts.igem.org/Help:Assembly_standard_21 RFC21] & [https://parts.igem.org/Help:Assembly_standard_23 RFC23] & [https://parts.igem.org/Help:Assembly_standard_25 RFC25] & [https://parts.igem.org/Help:Assembly_standard_1000 RFC1000] compatible | ||
+ | |- | ||
+ | |'''Backbone''' | ||
+ | |pJUMP18-Uac<br> | ||
+ | |- | ||
+ | |'''Submitted by''' | ||
+ | |[https://2022.igem.wiki/cambridge/index.html Cambridge iGEM 2022] | ||
+ | |} | ||
<!-- Add more about the biology of this part here | <!-- Add more about the biology of this part here |
Revision as of 02:10, 12 October 2022
MegaT
The part MegaT is composed of RBS B0032, mVenus and L3S2P21 terminator. The purpose of the part is to show the relative amount of a CDS. In our project, we hope to use a reporter protein to visualise the amount of feedback species X we have in the circuit. To avoid tagging the reporter protein directly onto X, we have decided to put in an RBS and a reporter (mVenus) right after X to visualise the amount of X. We are implementing JUMP assembly. However, JUMP assembly requires us to clone in 4 parts (usually the promoter, RBS, CDS and terminator) at the same time and does not allow polycistronic assemblies as is the case we have in our main project. Therefore, we need a way to design an operon to allow polycistronic assembly.
DT54 | |
---|---|
Function | Reporter |
Use in | Bacteria |
Chassis Tested | E. coli |
Abstraction Hierarchy | Part |
Related Device | |
RFC standard | RFC10 & RFC12 & RFC21 & RFC23 & RFC25 & RFC1000 compatible |
Backbone | pJUMP18-Uac |
Submitted by | Cambridge iGEM 2022 |
Sequence and Features
- 10COMPATIBLE WITH RFC[10]
- 12COMPATIBLE WITH RFC[12]
- 21COMPATIBLE WITH RFC[21]
- 23COMPATIBLE WITH RFC[23]
- 25COMPATIBLE WITH RFC[25]
- 1000COMPATIBLE WITH RFC[1000]