The following Ints6l gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Ints6l cDNA ORF which is encoded by the open reading frame (ORF) sequence. ORF sequences can be delivered in our standard vector, pcDNA3.1+/C-(K)DYK or the vector of your choice as an expression/transfection-ready ORF clone. Not the clone you want? Click here to find your clone.
CloneID |
ORa49891 |
Clone ID Related Accession (Same CDS sequence) |
XM_008758584.2
|
Accession Version |
XM_008758584.2 Latest version! |
Documents for ORF clone product in default vector |
Sequence Information |
ORF Nucleotide Sequence (Length: 2571bp)
Protein sequence
SNP |
Vector |
pcDNA3.1+/C-(K)DYK or customized vector |
User Manual |
Clone information |
Clone Map |
MSDS |
Tag on pcDNA3.1+/C-(K)DYK |
C terminal DYKDDDDK tags |
ORF Insert Method |
CloneEZ™ Seamless cloning technology |
Insert Structure |
linear |
Update Date |
2016-07-25 |
Organism |
Rattus norvegicus(Norway rat) |
Product |
protein DDX26B isoform X2 |
Comment |
Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (AC_000089.1) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process
On Jul 26, 2016 this sequence version replaced XM_008758584.1.
##Genome-Annotation-Data-START##
Annotation Provider :: NCBI
Annotation Status :: Full annotation
Annotation Version :: Rattus norvegicus Annotation Release 106
Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline
Annotation Software Version :: 7.1
Annotation Method :: Best-placed RefSeq; Gnomon
Features Annotated :: Gene; mRNA; CDS; ncRNA
##Genome-Annotation-Data-END##
|
1 61 121 181 241 301 361 421 481 541 601 661 721 781 841 901 961 1021 1081 1141 1201 1261 1321 1381 1441 1501 1561 1621 1681 1741 1801 1861 1921 1981 2041 2101 2161 2221 2281 2341 2401 2461 2521
| ATGCCCATCC TGCTGTTCCT CATAGATACG TCCGCCTCCA TGAACCAGCG CACTGACCTG GGCACCTCCT ATTTGGACAT TGCCAAAGGC GCTGTGGAGT TATTCTTGAA GCTGCGCGCC CGGGACCCGG CCAGCCGCGG AGACAGGTAC ATGCTGGTCA CCTACGACGA GCCTCCCTAC TGCATCAAGG CTGGTTGGAA GGAAAATCAT GCCACATTCA TGAGCGAACT GAAAAATCTC CAGGCTTCTG GACTGACTAC TCTTGGTCAG GCTCTAAGAT CCTCCTTTGA TTTGTTAAAT CTCAATAGAT TAATATCTGG AATAGACAAT TATGGACAGG GGAGAAATCC ATTTTTTTTA GAGCCGTCTA TTTTAATTAC CATCACAGAT GGAAACAAGT TAACAAGTAC TGCTAGCGTT CAAGAAGAGC TTCATCTCCC TTTGAATTCT CCTCTGCCCG GAAGTGAACT AACCAAAGAA CCTTTTCGTT GGGATCAAAG GTTATTTGCC CTGGTGTTGC GTTTGCCTGG ATTAGAATCA CTAGTTCAAA AAGTACAGAG TGGCGTAGTT ATTAATTTTG AAAAAACAGG ACCGGATCCA CTTCCTGTTG GAGAAGACAC ACTGATGGAT TCCTGTAGGC CAAACAACTT CTTTGCTGCT CAACCGTGGC ACAGTTGTCA TAAACTCATC TACGTACGAC CTAATTCTAA AACTGGTGTT CCTGTTGGAC ATTGGCCAAT TCCAGAATCT TTTTGGCCAG AACAGAATTT ACCTTCACTA CCTCCACGAA CATCACATCC TGTTGTGAGG TTTTCCTGTG TCGATTGTGA GCCAATGGTT ATAGATAAAC TTCCCTTTGA CAAATATGAA CTTGAACCCT CTCCCTTGAC TCAGTACATC TTGGAAAGAA AATCTCCTCA TACTTGCTGG CAGGTGTTTG TCACCAGCAG CTCAAAATAC AATGAGCTTG GATATCCATT TGGTTATTTA AAAGCTAGTA CGACTTTAAC TTGTGTAAAC CTCTTTGTGA TGCCTTACAA CTACCCAGTT TTACTTCCTC TTTTAGATGA CTTGTTTAAA GTTCACAAGC TTAAGCCAAA TCTGAAGTGG CGACAGGCTT TTGACAGCTA CTTAAAAACT CTGCCTCCAT ACTACTTAAT ACCATTAAAG AAAGCACTAA GGATGATGGG AGCTCCAAAT CTGATATCAG ATAATTTAGA TTGTGGACTT AGTTACAGTG TTATCTCTTA CCTTAAAAAA CTCAGCCAAC AGACCAAACT AGAGTCAGAA CGAGTTCTAG CATCAGTGGG GAAGAAGCCT CCCCAGGAAA TTGGTATCAA AGTGAAAAAT CACTCTGGAA GTGGCCTACC CTTGGCTCAC AATAAGAGTT TTAGGAAACT GTTGAAAGAA ATCATAGGGG AAAGCGCACC AAGACTCACA GAACTGAATA CCAAAGAGTT TGCTGGCTTC CAAGTAGGAC TCTTAAACAA GGATTTGAAA CCGCAGACAT ATAGAAATGC TTATGACATT CCACGAAGAG GACTTTTAGA CCAATTGACC AGAATGAGAT CCAATCTGCT GCAGACCCGG AAGTTTATTG TTGGACAGGA TGAAGATTCA CTTCATAGTG TCCCAGTTGC ACAAATGGGT AACTATCAGG AATATCTAAA GATGCTGGCT TCTCCGCTTC GAGAGATCGA CCCAGATCAA CCGAAACGAC TGCATACTTT TGGCAATCCA TTTAAGCAAG ATAAGAAGGG AATGATGATT GATGAAGCAG ATGAGTTTGT AGTAGGGCCA CAAAACAAAG TGAAACGTCC TGGTGAACCC AACAGTCCTA TGTCATCTAA GCGAAGGCGG AGTATGTCCC CGCTGTTGAA GAAACCACAA ATACCACCTA CTGCAACTAA CCATGTGGGC GGAAAGGGAC CACTCTCCAC CTCGTGGTTC CCATCTTGTC CAAACCTCAT AAAACACACC TTTGTACATC CAGACACTGC TGTCATTCAT GATACCCATG AAGAGAAGAT GGAAAATGGG CAAAGCCCAG CTGACGGCTT CTTATTAAAA TCTGCTCCAG CAGAGTTTAT GAATGTGTCA GGAGAAGGCC TTATACCCAA CCAGTTGGAT TCTCTATCTG ATGACTTTAC TGGTCTCAGG AAAGATGGAT TCATTCACAA ACCTGGTAAT AATATCCTTC TAGGAGGAGC CAAAACCTGC AATCTTTCTG TAGATGACCA AAAAATCACA ATGGCATCAG CTTTGGAAAC GGTGCCAAAT TCAATGCAAA TCACTCCTGC GATGGCCCAA GGCATCAATG CTGACATAAA GCATCAATTA ATGAAGGAAG TTCGAAAGTT TGGAAGAAAG TATGAAAGGA TTTTCATTTT GCTTGAAGAA GTGCAGGGAC CTCTGGAGAT GAAGAAACAG TTTGTTGAAT TTACCATCAA GGAAGCTGCA AGGTTTAAAA GAAGAGTCTT AATTCAGTAC CTTGAGAAGG TACTAGAAAA AATAGATTCC CACCACCTTC TTAACAATGT GAATCACATC AACAGCAGAT CATCATGTTA A |
The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.
RefSeq |
XP_008756806.1 |
CDS | 400..2970 |
Translation | |
Target ORF information:
RefSeq Version | XM_008758584.2 |
Organism | Rattus norvegicus(Norway rat) |
Definition | Rattus norvegicus integrator complex subunit 6 like (Ints6l), transcript variant X2, mRNA. |
Target ORF information:
Epitope | DYKDDDDK |
Bacterial selection | AMPR |
Mammalian selection | NeoR |
Vector | pcDNA3.1+/C-(K)DYK |
|
XM_008758584.2 |
ORF Insert Sequence:
1 61 121 181 241 301 361 421 481 541 601 661 721 781 841 901 961 1021 1081 1141 1201 1261 1321 1381 1441 1501 1561 1621 1681 1741 1801 1861 1921 1981 2041 2101 2161 2221 2281 2341 2401 2461 2521
| ATGCCCATCC TGCTGTTCCT CATAGATACG TCCGCCTCCA TGAACCAGCG CACTGACCTG GGCACCTCCT ATTTGGACAT TGCCAAAGGC GCTGTGGAGT TATTCTTGAA GCTGCGCGCC CGGGACCCGG CCAGCCGCGG AGACAGGTAC ATGCTGGTCA CCTACGACGA GCCTCCCTAC TGCATCAAGG CTGGTTGGAA GGAAAATCAT GCCACATTCA TGAGCGAACT GAAAAATCTC CAGGCTTCTG GACTGACTAC TCTTGGTCAG GCTCTAAGAT CCTCCTTTGA TTTGTTAAAT CTCAATAGAT TAATATCTGG AATAGACAAT TATGGACAGG GGAGAAATCC ATTTTTTTTA GAGCCGTCTA TTTTAATTAC CATCACAGAT GGAAACAAGT TAACAAGTAC TGCTAGCGTT CAAGAAGAGC TTCATCTCCC TTTGAATTCT CCTCTGCCCG GAAGTGAACT AACCAAAGAA CCTTTTCGTT GGGATCAAAG GTTATTTGCC CTGGTGTTGC GTTTGCCTGG ATTAGAATCA CTAGTTCAAA AAGTACAGAG TGGCGTAGTT ATTAATTTTG AAAAAACAGG ACCGGATCCA CTTCCTGTTG GAGAAGACAC ACTGATGGAT TCCTGTAGGC CAAACAACTT CTTTGCTGCT CAACCGTGGC ACAGTTGTCA TAAACTCATC TACGTACGAC CTAATTCTAA AACTGGTGTT CCTGTTGGAC ATTGGCCAAT TCCAGAATCT TTTTGGCCAG AACAGAATTT ACCTTCACTA CCTCCACGAA CATCACATCC TGTTGTGAGG TTTTCCTGTG TCGATTGTGA GCCAATGGTT ATAGATAAAC TTCCCTTTGA CAAATATGAA CTTGAACCCT CTCCCTTGAC TCAGTACATC TTGGAAAGAA AATCTCCTCA TACTTGCTGG CAGGTGTTTG TCACCAGCAG CTCAAAATAC AATGAGCTTG GATATCCATT TGGTTATTTA AAAGCTAGTA CGACTTTAAC TTGTGTAAAC CTCTTTGTGA TGCCTTACAA CTACCCAGTT TTACTTCCTC TTTTAGATGA CTTGTTTAAA GTTCACAAGC TTAAGCCAAA TCTGAAGTGG CGACAGGCTT TTGACAGCTA CTTAAAAACT CTGCCTCCAT ACTACTTAAT ACCATTAAAG AAAGCACTAA GGATGATGGG AGCTCCAAAT CTGATATCAG ATAATTTAGA TTGTGGACTT AGTTACAGTG TTATCTCTTA CCTTAAAAAA CTCAGCCAAC AGACCAAACT AGAGTCAGAA CGAGTTCTAG CATCAGTGGG GAAGAAGCCT CCCCAGGAAA TTGGTATCAA AGTGAAAAAT CACTCTGGAA GTGGCCTACC CTTGGCTCAC AATAAGAGTT TTAGGAAACT GTTGAAAGAA ATCATAGGGG AAAGCGCACC AAGACTCACA GAACTGAATA CCAAAGAGTT TGCTGGCTTC CAAGTAGGAC TCTTAAACAA GGATTTGAAA CCGCAGACAT ATAGAAATGC TTATGACATT CCACGAAGAG GACTTTTAGA CCAATTGACC AGAATGAGAT CCAATCTGCT GCAGACCCGG AAGTTTATTG TTGGACAGGA TGAAGATTCA CTTCATAGTG TCCCAGTTGC ACAAATGGGT AACTATCAGG AATATCTAAA GATGCTGGCT TCTCCGCTTC GAGAGATCGA CCCAGATCAA CCGAAACGAC TGCATACTTT TGGCAATCCA TTTAAGCAAG ATAAGAAGGG AATGATGATT GATGAAGCAG ATGAGTTTGT AGTAGGGCCA CAAAACAAAG TGAAACGTCC TGGTGAACCC AACAGTCCTA TGTCATCTAA GCGAAGGCGG AGTATGTCCC CGCTGTTGAA GAAACCACAA ATACCACCTA CTGCAACTAA CCATGTGGGC GGAAAGGGAC CACTCTCCAC CTCGTGGTTC CCATCTTGTC CAAACCTCAT AAAACACACC TTTGTACATC CAGACACTGC TGTCATTCAT GATACCCATG AAGAGAAGAT GGAAAATGGG CAAAGCCCAG CTGACGGCTT CTTATTAAAA TCTGCTCCAG CAGAGTTTAT GAATGTGTCA GGAGAAGGCC TTATACCCAA CCAGTTGGAT TCTCTATCTG ATGACTTTAC TGGTCTCAGG AAAGATGGAT TCATTCACAA ACCTGGTAAT AATATCCTTC TAGGAGGAGC CAAAACCTGC AATCTTTCTG TAGATGACCA AAAAATCACA ATGGCATCAG CTTTGGAAAC GGTGCCAAAT TCAATGCAAA TCACTCCTGC GATGGCCCAA GGCATCAATG CTGACATAAA GCATCAATTA ATGAAGGAAG TTCGAAAGTT TGGAAGAAAG TATGAAAGGA TTTTCATTTT GCTTGAAGAA GTGCAGGGAC CTCTGGAGAT GAAGAAACAG TTTGTTGAAT TTACCATCAA GGAAGCTGCA AGGTTTAAAA GAAGAGTCTT AATTCAGTAC CTTGAGAAGG TACTAGAAAA AATAGATTCC CACCACCTTC TTAACAATGT GAATCACATC AACAGCAGAT CATCATGTTA A |
The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.
CloneID |
ORa63197 |
Clone ID Related Accession (Same CDS sequence) |
XM_017602434.1
|
Accession Version |
XM_017602434.1 Latest version! |
Documents for ORF clone product in default vector |
Sequence Information |
ORF Nucleotide Sequence (Length: 2622bp)
Protein sequence
SNP |
Vector |
pcDNA3.1+/C-(K)DYK or customized vector |
User Manual |
Clone information |
Clone Map |
MSDS |
Tag on pcDNA3.1+/C-(K)DYK |
C terminal DYKDDDDK tags |
ORF Insert Method |
CloneEZ™ Seamless cloning technology |
Insert Structure |
linear |
Update Date |
2016-07-25 |
Organism |
Rattus norvegicus(Norway rat) |
Product |
LOW QUALITY PROTEIN: protein DDX26B isoform X1 |
Comment |
Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_005120.4) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process
##Genome-Annotation-Data-START##
Annotation Provider :: NCBI
Annotation Status :: Full annotation
Annotation Version :: Rattus norvegicus Annotation Release 106
Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline
Annotation Software Version :: 7.1
Annotation Method :: Best-placed RefSeq; Gnomon
Features Annotated :: Gene; mRNA; CDS; ncRNA
##Genome-Annotation-Data-END##
##RefSeq-Attributes-START##
frameshifts :: corrected 6 indels
internal stop codons :: corrected 2 genomic stop codons
##RefSeq-Attributes-END##
|
1 61 121 181 241 301 361 421 481 541 601 661 721 781 841 901 961 1021 1081 1141 1201 1261 1321 1381 1441 1501 1561 1621 1681 1741 1801 1861 1921 1981 2041 2101 2161 2221 2281 2341 2401 2461 2521 2581
| ATGCCCATCC TGCTGTTCCT CATAGATACG TCCGCCTCCA TGAACCAGCG CACTGACCTG GGCACCTCCT ATTTGGACAT TGCCAAAGGC GCTGTGGAGT TATTCTTGAA GCTGCGCGCC CGGGACCCGG CCAGCCGCGG AGACAGGTAC ATGCTGGTCA CCTACGACGA GCCTCCCTAC TGCATCAAGG CTGGTTGGAA GGAAAATCAT GCCACATTCA TGAGCGAACT GAAAAATCTC CAGGCTTCTG GACTGACTAC TCTTGGTCAG GCTCTAAGAT CCTCCTTTGA TTTGTTAAAT CTCAATAGAT TAATATCTGG AATAGACAAT TATGGACAGG GGAGAAATCC ATTTTTTTTA GAGCCGTCTA TTTTAATTAC CATCACAGAT GGAAACAAGT TAACAAGTAC TGCTAGCGTT CAGAAGCAGC TTCATCTCGC CTTTGATTCT CCTCTGCACG GCAAGTGAAC TAACCAAAGA ACCTTTCACG TTGCGGATCA AAGGTTATTT GCCCTGGTGT TTGCGTTGCC TGGAGTGGCT TCTCTGCAAC CAGAGCAGCT AGGGNNTGTG CCAAGTGATG AATCGGCCAT CACGCAAGAT GTGCGAGTCA CAGGAGCGTA CTGGTGACGC TCCTACTGTG TGAGAACAAA AGATGTTATC AGGCTTAGAA TCACTAGTTT CCAAAAAGTA CAGAGTNGCG TAGTTATTAA CTTTGAAAAA ACAGGACCGA TCCCTNNTCC TGTTGGAGAG ACGGACACAC TGATGGATTC CTGTAGGCCA AACAACTTCT TTGCTGCTCA ACCGTGGCAC AGTTGTCATA AACTCATCTA CGTACGACCT AATTCTAAAA CTGGTGTTCC TGTTGGCATT GGCCCAATTC CAGAATCTTT TGGCCAAAAT CAGAACCTTG GAGCCAGACC TCCACGAACA TCACATCCTG TTGTGAGGTT TTCCTGTGTC GATTGTGAGC CAATGGTTAT AGATAAACTT CCCTTTGACA AATATGAACT TGAACCCTCT CCCTTGACTC AGTACATCTT GGAAAGAAAA TCTCCTCATA CTTGCTGGCA GGTGTTTGTC ACCAGCAGCT CAAAATACAA TGAGCTTGGA TATCCATTTG GTTATTTAAA AGCTAGTACG ACTTTAACTT GTGTAAACCT CTTTGTGATG CCTTACAACT ACCCAGTTTT ACTTCCTCTT TTAGATGACT TGTTTAAAGT TCACAAGCTT AAGCCAAATC TGAAGTGGCG ACAGGCTTTT GACAGCTACT TAAAAACTCT GCCTCCATAC TACTTAATAA CCAAACTAGA GTCAGAACGA GTTCTAGCAT CAGTGGGGAA GAAGCCTCCC CAGGAAATTG GTATCAAAGT GAAAAATCAC TCTGGAAGTG GCCTACCCTT GGCTCACAAT AAGAGTTTTA GGAAACTGTT GAAAGAAATC ATAGGGGAAA GCGCACCAAG ACTCACAGAA CTGAATACCA AAGAGTTTGC TGGCTTCCAA GTAGGACTCT TAAACAAGGA TTTGAAACCG CAGACATATA GAAATGCTTA TGACATTCCA CGAAGAGGAC TTTTAGACCA ATTGACCAGA ATGAGATCCA ATCTGCTGCA GACCCGGAAG TTTATTGTTG GACAGGATGA AGATTCACTT CATAGTGTCC CAGTTGCACA AATGGGTAAC CATCAGGAAT ATCTAAAGAT GCTGGCCTTC TCCGCTCTGA GGAGATTCGA CGCAGATCAA CCGAAACGAC TGCATNATTT TGGCAATCCA TTTAAGCAAG ATAAAGAAGG TAGTGGGTAC CTATTTCTGG GAATGATGAT TGATGAAGCA GATGAGTTTG TAGTAGGGCC ACAAAACAAA GTGAAACGTC CTGGTGAACC CAACAGTCCT ATGTCATCTA AGCGAAGGCG GAGTATGTCC CCGCTGTTGA AGAAACCACA AATACCACCT ACTGCAACTA ACCATGTGGG CGGAAAGGGA CCACTCTCCA CCTCGTGGTT CCCATCTTGT CCAAACCTCA TAAAACACAC CTTTGTACAT CCAGACACTG CTGTCATTCA TGATACCCAT GAAGAGAAGA TGGAAAATGG GCAAAGCCCA GCTGACGGCT TCTTATTAAA ATCTGCTCCA GCAGAGTTTA TGAATGTGTC AGGAGAAGGC CTTATACCCA ACCAGTTGGA TTCTCTATCT GATGACTTTA CTGGTCTCAG GAAAGATGGA TTCATTCACA AACCTGGTAA TAATATCCTT CTAGGAGGAG CCAAAACCTG CAATCTTTCT GTAGATGACC AAAAAATCAC AATGGCATCA GCTTTGGAAA CGGTGCCAAA TTCAATGCAA ATCACTCCTG CGATGGCCCA AGGCATCAAT GCTGACATAA AGCATCAATT AATGAAGGAA GTTCGAAAGT TTGGAAGAAA GTATGAAAGG ATTTTCATTT TGCTTGAAGA AGTGCAGGGA CCTCTGGAGA TGAAGAAACA GTTTGTTGAA TTTACCATCA AGGAAGCTGC AAGGTTTAAA AGAAGAGTCT TAATTCAGTA CCTTGAGAAG GTACTAGAAA AAATAGATTC CCACCACCTT CTTAACAATG TGAATCACAT CAACAGCAGA TCATCATGTT AA |
The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.
RefSeq |
XP_017457923.1 |
CDS | 478..3099 |
Translation | |
Target ORF information:
RefSeq Version | XM_017602434.1 |
Organism | Rattus norvegicus(Norway rat) |
Definition | Rattus norvegicus integrator complex subunit 6 like (Ints6l), transcript variant X1, mRNA. |
Target ORF information:
Epitope | DYKDDDDK |
Bacterial selection | AMPR |
Mammalian selection | NeoR |
Vector | pcDNA3.1+/C-(K)DYK |
|
XM_017602434.1 |
ORF Insert Sequence:
1 61 121 181 241 301 361 421 481 541 601 661 721 781 841 901 961 1021 1081 1141 1201 1261 1321 1381 1441 1501 1561 1621 1681 1741 1801 1861 1921 1981 2041 2101 2161 2221 2281 2341 2401 2461 2521 2581
| ATGCCCATCC TGCTGTTCCT CATAGATACG TCCGCCTCCA TGAACCAGCG CACTGACCTG GGCACCTCCT ATTTGGACAT TGCCAAAGGC GCTGTGGAGT TATTCTTGAA GCTGCGCGCC CGGGACCCGG CCAGCCGCGG AGACAGGTAC ATGCTGGTCA CCTACGACGA GCCTCCCTAC TGCATCAAGG CTGGTTGGAA GGAAAATCAT GCCACATTCA TGAGCGAACT GAAAAATCTC CAGGCTTCTG GACTGACTAC TCTTGGTCAG GCTCTAAGAT CCTCCTTTGA TTTGTTAAAT CTCAATAGAT TAATATCTGG AATAGACAAT TATGGACAGG GGAGAAATCC ATTTTTTTTA GAGCCGTCTA TTTTAATTAC CATCACAGAT GGAAACAAGT TAACAAGTAC TGCTAGCGTT CAGAAGCAGC TTCATCTCGC CTTTGATTCT CCTCTGCACG GCAAGTGAAC TAACCAAAGA ACCTTTCACG TTGCGGATCA AAGGTTATTT GCCCTGGTGT TTGCGTTGCC TGGAGTGGCT TCTCTGCAAC CAGAGCAGCT AGGGNNTGTG CCAAGTGATG AATCGGCCAT CACGCAAGAT GTGCGAGTCA CAGGAGCGTA CTGGTGACGC TCCTACTGTG TGAGAACAAA AGATGTTATC AGGCTTAGAA TCACTAGTTT CCAAAAAGTA CAGAGTNGCG TAGTTATTAA CTTTGAAAAA ACAGGACCGA TCCCTNNTCC TGTTGGAGAG ACGGACACAC TGATGGATTC CTGTAGGCCA AACAACTTCT TTGCTGCTCA ACCGTGGCAC AGTTGTCATA AACTCATCTA CGTACGACCT AATTCTAAAA CTGGTGTTCC TGTTGGCATT GGCCCAATTC CAGAATCTTT TGGCCAAAAT CAGAACCTTG GAGCCAGACC TCCACGAACA TCACATCCTG TTGTGAGGTT TTCCTGTGTC GATTGTGAGC CAATGGTTAT AGATAAACTT CCCTTTGACA AATATGAACT TGAACCCTCT CCCTTGACTC AGTACATCTT GGAAAGAAAA TCTCCTCATA CTTGCTGGCA GGTGTTTGTC ACCAGCAGCT CAAAATACAA TGAGCTTGGA TATCCATTTG GTTATTTAAA AGCTAGTACG ACTTTAACTT GTGTAAACCT CTTTGTGATG CCTTACAACT ACCCAGTTTT ACTTCCTCTT TTAGATGACT TGTTTAAAGT TCACAAGCTT AAGCCAAATC TGAAGTGGCG ACAGGCTTTT GACAGCTACT TAAAAACTCT GCCTCCATAC TACTTAATAA CCAAACTAGA GTCAGAACGA GTTCTAGCAT CAGTGGGGAA GAAGCCTCCC CAGGAAATTG GTATCAAAGT GAAAAATCAC TCTGGAAGTG GCCTACCCTT GGCTCACAAT AAGAGTTTTA GGAAACTGTT GAAAGAAATC ATAGGGGAAA GCGCACCAAG ACTCACAGAA CTGAATACCA AAGAGTTTGC TGGCTTCCAA GTAGGACTCT TAAACAAGGA TTTGAAACCG CAGACATATA GAAATGCTTA TGACATTCCA CGAAGAGGAC TTTTAGACCA ATTGACCAGA ATGAGATCCA ATCTGCTGCA GACCCGGAAG TTTATTGTTG GACAGGATGA AGATTCACTT CATAGTGTCC CAGTTGCACA AATGGGTAAC CATCAGGAAT ATCTAAAGAT GCTGGCCTTC TCCGCTCTGA GGAGATTCGA CGCAGATCAA CCGAAACGAC TGCATNATTT TGGCAATCCA TTTAAGCAAG ATAAAGAAGG TAGTGGGTAC CTATTTCTGG GAATGATGAT TGATGAAGCA GATGAGTTTG TAGTAGGGCC ACAAAACAAA GTGAAACGTC CTGGTGAACC CAACAGTCCT ATGTCATCTA AGCGAAGGCG GAGTATGTCC CCGCTGTTGA AGAAACCACA AATACCACCT ACTGCAACTA ACCATGTGGG CGGAAAGGGA CCACTCTCCA CCTCGTGGTT CCCATCTTGT CCAAACCTCA TAAAACACAC CTTTGTACAT CCAGACACTG CTGTCATTCA TGATACCCAT GAAGAGAAGA TGGAAAATGG GCAAAGCCCA GCTGACGGCT TCTTATTAAA ATCTGCTCCA GCAGAGTTTA TGAATGTGTC AGGAGAAGGC CTTATACCCA ACCAGTTGGA TTCTCTATCT GATGACTTTA CTGGTCTCAG GAAAGATGGA TTCATTCACA AACCTGGTAA TAATATCCTT CTAGGAGGAG CCAAAACCTG CAATCTTTCT GTAGATGACC AAAAAATCAC AATGGCATCA GCTTTGGAAA CGGTGCCAAA TTCAATGCAA ATCACTCCTG CGATGGCCCA AGGCATCAAT GCTGACATAA AGCATCAATT AATGAAGGAA GTTCGAAAGT TTGGAAGAAA GTATGAAAGG ATTTTCATTT TGCTTGAAGA AGTGCAGGGA CCTCTGGAGA TGAAGAAACA GTTTGTTGAA TTTACCATCA AGGAAGCTGC AAGGTTTAAA AGAAGAGTCT TAATTCAGTA CCTTGAGAAG GTACTAGAAA AAATAGATTC CCACCACCTT CTTAACAATG TGAATCACAT CAACAGCAGA TCATCATGTT AA |
The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.