Team:UCL/Lab AzoReducateCloning Portal
From 2014.igem.org
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GGC GGT GTC TAC TCA GAA GGA CCA ATG GCT GCA CTT GAA ATG TCA TTA AAC TTC ATG AAA ACA GTT CTT GGT</br> | GGC GGT GTC TAC TCA GAA GGA CCA ATG GCT GCA CTT GAA ATG TCA TTA AAC TTC ATG AAA ACA GTT CTT GGT</br> | ||
TTC TGG GGT GTT CAA GAC TTG CAC ACA GTT GTC ATC GAA GGA CAT AAC GCA GCA CCT GAT CAA GCG CAA GAA</br> | TTC TGG GGT GTT CAA GAC TTG CAC ACA GTT GTC ATC GAA GGA CAT AAC GCA GCA CCT GAT CAA GCG CAA GAA</br> | ||
- | ATC GTT GAA AAA GGT TTA CAA GAA GCA AAA GAT CTT GCT GCA AAA TTC TAA</code></html> | + | ATC GTT GAA AAA GGT TTA CAA GAA GCA AAA GAT CTT GCT GCA AAA TTC TAA |
+ | </code></html> | ||
+ | |||
+ | <html><code> | ||
+ | ATG AGT AGA ATT CTT GCA GTG CAT GCC AGT CCG CGA GGC GAG CGC TCG CAG TCC CGG CGT CTC GCC GAG GTT</br> | ||
+ | TTC CTG GCG GCC TAT CGC GAA GCC CAT CCG CAG GCC CGC GTG GCT CGC CGC GAA GTC GGC CGG GTA CCG CTT</br> | ||
+ | CCG GCG GTC ACC GAG GCC TTC GTC GCC GCC GCC TTC CAT CCC CAG CCG GAA CAG CGT TCG CTG GCG ATG CAG</br> | ||
+ | GCC GAC CTG GCG CTG AGC GAC CAA CTG GTC GGC GAA CTG TTC GAC AGC GAC CTG CTG GTG ATC TCC ACG CCG</br> | ||
+ | ATG TAC AAC TTC AGC GTG CCC AGC GGC CTG AAG GCC TGG ATC GAC CAG ATC GTG CGC CTC GGG GTG ACC TTC</br> | ||
+ | GAT TTC GTC CTC GAC AAT GGC GTC GCC CAG TAC CGG CCG CTG CTG CGT GGC AAG CGT GCG CTG ATC GTC ACC</br> | ||
+ | AGT CGC GGT GGC CAT GGC TTC GGC CCG GGC GGC GAG AAC CAG GCG ATG AAC CAC GCC GAT CCC TGG TTG CGC</br> | ||
+ | ACC GCG CTG GGT TTC ATC GGC ATC GAC GAG GTC ACG GTG GTC GCG GCG GAA GGC GAG GAA TCC GGC GGC AGG</br> | ||
+ | TCC TTC GAG GAC TCC TGC GAC GAG GCG GAA CAG CGC CTG CTG GCG CTG GCG CGG TCG GCC TGA | ||
+ | </code></html> | ||
Revision as of 13:00, 29 May 2014
BioBrick and Primer Design
Two Azoreductase enzymes will be cloned from Bacilus subtilis (strain 168) and Pseudomonas Aeruginosa (PA01) using DNA PCR amplification.
Suitable forward and reverse primers were designed for each enzymes using the following strategy.
The protein coding sequences for each enzyme were obtained from ?.
ATG TCT ACA GTT TTA TTT GTA AAA TCA AGC GAC CGT ACA GCT GAA GAA GGC GTT TCA ACT AAA CTT TAC GAA
GCT TTC TTA GCT GCT TAT AAA GAA AAC AAC CCT AAT GAT GAA GTG GTT GAA TTA GAT CTT CAT AAG GAA AAC
CTT CCT TAC CTT GGC AGA GAT ATG ATT AAC GGA ACA TTT AAA GCA GGT CAA GGA ATG GAA ATG ACA GAA GAT
GAG AAA AAA CAA GCA GCA ATT GCT GAC AAA TAT CTG AAC CAG TTT GTA AAA GCT GAC AAA GTT GTT TTC GCA
TTC CCG CTT TGG AAC TTC ACA GTG CCA GCA GTG CTT CAT ACT TAT GTT GAT TAT CTG TCT CGC GCA GGC GTT
ACA TTC AAA TAC ACA CAA GAA GGA CCA GTC GGT TTA ATG GGC GGC AAA AAA GTT GCG CTT CTT AAC GCT CGC
GGC GGT GTC TAC TCA GAA GGA CCA ATG GCT GCA CTT GAA ATG TCA TTA AAC TTC ATG AAA ACA GTT CTT GGT
TTC TGG GGT GTT CAA GAC TTG CAC ACA GTT GTC ATC GAA GGA CAT AAC GCA GCA CCT GAT CAA GCG CAA GAA
ATC GTT GAA AAA GGT TTA CAA GAA GCA AAA GAT CTT GCT GCA AAA TTC TAA
ATG AGT AGA ATT CTT GCA GTG CAT GCC AGT CCG CGA GGC GAG CGC TCG CAG TCC CGG CGT CTC GCC GAG GTT
TTC CTG GCG GCC TAT CGC GAA GCC CAT CCG CAG GCC CGC GTG GCT CGC CGC GAA GTC GGC CGG GTA CCG CTT
CCG GCG GTC ACC GAG GCC TTC GTC GCC GCC GCC TTC CAT CCC CAG CCG GAA CAG CGT TCG CTG GCG ATG CAG
GCC GAC CTG GCG CTG AGC GAC CAA CTG GTC GGC GAA CTG TTC GAC AGC GAC CTG CTG GTG ATC TCC ACG CCG
ATG TAC AAC TTC AGC GTG CCC AGC GGC CTG AAG GCC TGG ATC GAC CAG ATC GTG CGC CTC GGG GTG ACC TTC
GAT TTC GTC CTC GAC AAT GGC GTC GCC CAG TAC CGG CCG CTG CTG CGT GGC AAG CGT GCG CTG ATC GTC ACC
AGT CGC GGT GGC CAT GGC TTC GGC CCG GGC GGC GAG AAC CAG GCG ATG AAC CAC GCC GAT CCC TGG TTG CGC
ACC GCG CTG GGT TTC ATC GGC ATC GAC GAG GTC ACG GTG GTC GCG GCG GAA GGC GAG GAA TCC GGC GGC AGG
TCC TTC GAG GAC TCC TGC GAC GAG GCG GAA CAG CGC CTG CTG GCG CTG GCG CGG TCG GCC TGA
The standard BioBrick prefix for protein coding sequences and suffix sequences used in Standard Assembly and belonging to BioBrick RFC 10 were appended to the forward and reverse primers respectively.
BioBrick CDS Prefix
5' GAATTCGCGGCCGCTTCTAG '3
BioBrick Suffix
5' TACTAGTAGCGGCCGCTGCAG '3