Team:Austin Texas/kit

From 2014.igem.org

(Difference between revisions)
(Experimental Design and Method)
(Experimental Design and Method)
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[[File:Kit Plasmid Alignment 10-14-14.png|650px|thumb|right|Figure 1. pStG contains the specific ncAA synthetase/tRNA pair being tested. pFRYC and pFRY are the ncAA kit reporter plasmids.  pFRYC is the control plasmid that yields GFP and RFP expression regardless of synthetase/tRNA pair. pFRY is a nearly identical plasmid with a single difference, the linker between the GFP and RFP sequences contains an amber codon (star) in place of the tyrosine codon found in pFRYC. Thus, the level of GFP expression for pFRY is directly dependent on the efficiency and fidelity of the synthetase/tRNA pair being tested.]]
[[File:Kit Plasmid Alignment 10-14-14.png|650px|thumb|right|Figure 1. pStG contains the specific ncAA synthetase/tRNA pair being tested. pFRYC and pFRY are the ncAA kit reporter plasmids.  pFRYC is the control plasmid that yields GFP and RFP expression regardless of synthetase/tRNA pair. pFRY is a nearly identical plasmid with a single difference, the linker between the GFP and RFP sequences contains an amber codon (star) in place of the tyrosine codon found in pFRYC. Thus, the level of GFP expression for pFRY is directly dependent on the efficiency and fidelity of the synthetase/tRNA pair being tested.]]
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The kit consists of a three plasmid system: pStG, pFRYC, and pFRY. pStG contains the ncAA Synthetase/tRNA pair (St) to be tested as well as a Gentamicin (G) resistance gene. pFRYC is the control plasmid and contains the IPTG-induced reporter system and a kanamycin resistance gene. The reporter system is composed of RFP and sfGFP fused via a linker sequence between the two. pFRY is the experimental plasmid and is nearly identical to pFRYC with the exception that its linker sequence contains an amber stop codon in the middle of the linker whereas pFRYC contains a codon for tyrosine in the same location. In a cell containing pFRYC, the ribosome will translate the RFP reporter, linker, and finally sfGFP, producing red and green fluorescent proteins that result in visible yellow fluorescence. In a cell containing pFRY, the ribosome will translate the sfGFP and terminate at the amber stop codon on the linker producing a green fluorescence. When pBLG and pFRY are present in the cell, the ribosome will incorporate an ncAA at the amber codon in the linker and continue translation producing both RFP and sfGFP reporters if the synthetase/tRNA pair encoded on pStG effectively incorporate the ncAA.  
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The kit consists of a three plasmid system: pStG, pFRYC, and pFRY. pStG contains the ncAA Synthetase/tRNA pair (St) to be tested as well as a Gentamicin (G) resistance gene. pFRYC is the control plasmid and contains the IPTG-induced reporter system and a kanamycin resistance gene. The reporter system is composed of RFP and sfGFP fused via a linker sequence between the two. pFRY is the experimental reporter plasmid and is nearly identical to pFRYC with the exception that its linker sequence contains an amber codon in the middle of the linker, whereas pFRYC contains a tyrosine codon in the same location. In a cell containing pFRYC, the ribosome will translate the RFP reporter, linker, and sfGFP, producing red and green fluorescent proteins that result in visible yellow fluorescence. In a cell containing only pFRY, the ribosome will translate the sfGFP and terminate at the amber stop codon on the linker producing a green fluorescence. When pStG and pFRY are present in a cell, the synthetase/tRNA pair found on pStG recodes the amber so that it is no longer a stop codon, but instead results in incorporation of a ncAA.  In this case, the ribosome incorporates the ncAA at the amber codon in the linker and then proceeds to translate the downstream sfGFP reporter.  However, the above scenarios assumes that the synthetase/tRNA pair function efficiently and with high fidelity.

Revision as of 18:20, 14 October 2014