Tet2 (NM_001040400) Mouse Untagged Clone
CAT#: MC225038
Tet2 (untagged) - Mouse tet oncogene family member 2 (Tet2), (10ug)
"NM_001040400" in other vectors (2)
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Specifications
Product Data | |
Type | Mouse Untagged Clone |
Tag | Tag Free |
Symbol | Tet2 |
Synonyms | Ayu17-449; E130014J05Rik; mKIAA1546 |
Vector | pCMV6-Entry |
E. coli Selection | Kanamycin (25 ug/mL) |
Mammalian Cell Selection | Neomycin |
Sequence Data |
>MC225038 representing NM_001040400
Red=Cloning site Blue=ORF Orange=Stop codon TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC GCCGCGATCGCC ATGGAACAGGACAGAACCACCCATGCTGAGGGCACCAGACTGAGTCCATTCCTGATAGCACCACCTTCTC CCATCAGCCATACAGAACCTCTGGCTGTCAAACTCCAGAATGGAAGCCCGTTAGCAGAGAGACCTCATCC AGAAGTAAATGGAGACACCAAGTGGCAATCTTCCCAAAGCTGTTATGGAATATCCCACATGAAAGGCAGC CAGAGCAGTCATGAGAGTCCACATGAAGACAGAGGGTATTCCAGGTGCTTACAGAATGGAGGGATAAAAC GCACAGTCAGTGAACCATCTCTCTCTGGGCTCCATCCAAACAAGATATTGAAACTAGACCAAAAAGCTAA GGGAGAAAGCAATATCTTCGAGGAAAGCCAAGAAAGAAACCACGGTAAAAGCAGCCGTCAGCCAAATGTC TCCGGACTAAGTGATAATGGAGAGCCCGTGACCTCGACCACCCAGGAAAGTTCAGGTGCAGATGCTTTCC CAACACGGAACTACAATGGAGTTGAAATTCAGGTTCTCAACGAGCAGGAAGGGGAAAAAGGCAGGAGCGT TACATTACTTAAAAACAAGATTGTGCTAATGCCTAATGGTGCTACAGTTTCTGCCCATTCTGAGGAGAAC ACACGTGGTGAACTCCTGGAAAAAACACAGTGTTATCCAGATTGTGTCTCCATTGCCGTGCAGAGTACCG CATCTCATGTAAACACCCCTAGCAGTCAGGCTGCTATCGAGTTGTCCCACGAGATCCCTCAACCATCGCT TACCTCAGCGCAGATCAATTTCTCCCAGACCTCAAGCTTGCAGCTGCCTCCAGAGCCAGCTGCAATGGTG ACTAAGGCCTGTGATGCTGATAATGCCAGTAAACCAGCTATAGTACCAGGTACCTGTCCTTTTCAGAAAG CAGAACACCAACAAAAGTCAGCTTTGGACATAGGCCCATCTCGTGCAGAAAACAAAACCATCCAAGGAAG CATGGAGCTATTTGCTGAAGAATACTATCCTAGTTCCGACCGGAATTTGCAAGCTTCGCATGGCAGCTCT GAACAGTATTCAAAGCAAAAGGAAACCAATGGTGCTTACTTCAGGCAAAGCTCGAAGTTCCCTAAAGATT CCATCTCTCCCACTACTGTGACCCCACCGTCACAATCACTTCTTGCTCCCCGTCTTGTTCTTCAGCCTCC TTTAGAAGGAAAAGGCGCTCTAAATGATGTAGCTTTGGAAGAACACCATGACTACCCCAACCGAAGCAAC CGAACTCTTTTAAGGGAAGGGAAAATAGACCATCAACCCAAGACATCATCTAGCCAGAGTCTGAATCCAT CTGTACATACACCCAACCCCCCCTTGATGCTTCCAGAACAGCATCAGAATGATTGTGGCTCACCGAGCCC TGAAAAGTCAAGAAAAATGTCAGAATATCTCATGTATTACCTGCCAAATCATGGCCACAGTGGAGGTTTA CAAGAACATAGCCAATACCTGATGGGGCACAGGGAGCAAGAGATTCCGAAGGATGCAAACGGGAAACAAA CGCAAGGCTCTGTACAGGCAGCACCTGGCTGGATAGAACTGAAAGCCCCGAATTTGCATGAAGCACTCCA TCAGACAAAACGCAAGGATATATCCTTGCACTCAGTCCTCCACTCTCAGACCGGCCCTGTCAATCAGATG AGCTCCAAACAGTCCACTGGCAATGTCAACATGCCAGGAGGATTCCAAAGGCTACCTTACCTCCAGAAAA CAGCCCAGCCAGAGCAGAAGGCACAAATGTACCAAGTGCAAGTGAACCAAGGACCGTCTCCAGGTATGGG GGACCAACATCTTCAGTTCCAGAAAGCTTTATACCAGGAGTGCATCCCCAGGACAGATCCGTCATCTGAG GCTCACCCGCAAGCACCGAGCGTTCCTCAGTATCATTTCCAGCAAAGAGTAAATCCCTCCAGTGATAAGC ATTTGAGTCAACAGGCCACAGAGACTCAACGGTTATCAGGCTTTTTACAACATACTCCTCAGACGCAGGC ATCACAAACACCAGCATCCCAGAACTCAAATTTCCCTCAAATCTGCCAGCAGCAGCAGCAGCAGCAGTTA CAGAGGAAGAATAAAGAGCAAATGCCTCAGACTTTCTCTCATCTCCAAGGTAGCAATGATAAGCAAAGAG AAGGCTCGTGCTTTGGCCAGATTAAAGTGGAAGAAAGCTTTTGTGTCGGAAATCAGTACTCCAAATCAAG TAATTTCCAAACTCACAATAATACCCAAGGGGGGTTGGAGCAAGTACAAAATATAAATAAAAATTTTCCT TATTCGAAGATCTTAACACCAAATTCGAGCAACTTACAGATTCTCCCTTCAAATGACACACACCCGGCTT GTGAGCGGGAACAAGCTCTACATCCCGTAGGAAGTAAGACCTCAAACCTGCAGAACATGCAGTATTTCCC GAATAATGTGACCCCAAATCAGGACGTTCACCGGTGCTTTCAGGAACAAGCGCAGAAGCCTCAGCAAGCT TCGTCTCTACAGGGGCTTAAGGACAGAAGCCAGGGTGAGTCTCCAGCCCCACCAGCTGAGGCAGCTCAAC AGAGGTATTTGGTGCATAATGAAGCAAAGGCACTCCCTGTGCCTGAGCAAGGAGGAAGTCAGACACAGAC CCCTCCTCAGAAGGACACTCAGAAGCACGCTGCCTTAAGGTGGCTTCTCTTACAGAAGCAAGAACAGCAG CAAACACAGCAATCCCAGCCTGGTCATAACCAGATGCTTAGGCCAATCAAGACTGAGCCTGTATCCAAAC CTTCTTCCTATAGATACCCCTTGTCACCGCCACAAGAAAATATGTCCAGCAGGATAAAGCAAGAGATCTC CTCTCCAAGCCGTGACAATGGGCAGCCAAAGAGCATCATTGAGACCATGGAACAGCACCTGAAGCAGTTT CAGCTCAAGTCACTCTGTGACTATAAGGCTCTGACTCTCAAGTCACAGAAACACGTGAAAGTGCCAACAG ATATCCAGGCTGCAGAATCGGAGAACCACGCCCGAGCTGCAGAGCCTCAAGCAACCAAAAGCACAGATTG TTCTGTTCTCGACGATGTTTCAGAATCAGATACTCCTGGTGAACAAAGTCAGAATGGCAAATGTGAAGGA TGCAATCCAGACAAAGATGAAGCTCCTTATTATACCCATCTAGGAGCTGGTCCTGATGTGGCAGCTATTA GAACACTCATGGAAGAAAGGTATGGAGAGAAGGGTAAAGCTATTAGGATTGAAAAAGTCATATATACTGG TAAAGAAGGCAAGAGCTCTCAGGGATGTCCTATTGCTAAATGGGTATATCGGAGATCGAGTGAGGAGGAG AAACTACTGTGTTTGGTACGAGTGCGACCTAATCACACATGTGAGACGGCGGTGATGGTAATTGCCATCA TGTTGTGGGACGGAATCCCAAAGCTACTCGCATCAGAACTCTACTCAGAACTTACAGATATCTTGGGCAA GTGTGGCATATGCACCAACCGTCGCTGTTCTCAGAATGAAACTAGAAACTGTTGTTGTCAGGGTGAGAAT CCAGAGACCTGTGGTGCCTCCTTTTCTTTTGGTTGTTCTTGGAGCATGTACTATAATGGATGTAAGTTTG CCAGAAGCAAGAAACCAAGGAAATTTAGGCTACATGGAGCTGAGCCAAAAGAGGAAGAGAGACTAGGTTC TCATTTGCAAAACCTGGCTACTGTCATTGCTCCAATATACAAGAAGCTTGCACCCGATGCATACAATAAT CAGGTTGAATTTGAACACCAAGCCCCAGACTGCTGTTTGGGTCTGAAGGAAGGCCGGCCATTCTCAGGAG TCACTGCATGTTTGGACTTCTCTGCTCATTCCCACAGAGACCAGCAGAACATGCCAAATGGCAGTACAGT GGTGGTCACCCTCAATAGAGAAGACAATCGAGAAGTCGGAGCTAAGCCTGAGGATGAGCAGTTCCACGTG CTGCCTATGTACATCATCGCCCCTGAGGATGAGTTTGGGAGTACGGAAGGCCAGGAGAAGAAGATACGGA TGGGGTCCATTGAGGTTCTGCAGTCATTTCGGAGGAGAAGGGTCATAAGGATAGGAGAGCTGCCCAAGAG TTGCAAGAAGAAAGCGGAGCCCAAGAAAGCCAAGACCAAGAAAGCAGCTCGAAAGCGTTCCTCTCTGGAG AACTGCTCCAGTAGGACTGAGAAGGGAAAGTCTTCCTCACATACAAAGCTGATGGAAAATGCAAGCCATA TGAAACAAATGACAGCACAACCGCAGCTTTCGGGCCCGGTCATCCGGCAGCCACCAACACTCCAGAGGCA CCTTCAGCAAGGGCAGAGGCCACAGCAGCCGCAGCCACCTCAGCCGCAGCCGCAGACGACACCTCAGCCA CAGCCACAGCCACAGCATATCATGCCCGGTAACTCTCAGTCTGTTGGTTCTCATTGTTCTGGATCCACCA GTGTCTACACGAGACAGCCTACTCCTCACAGTCCTTATCCCAGCTCAGCACACACCTCAGATATTTATGG AGATACCAACCATGTGAACTTTTACCCCACTTCATCTCATGCCTCGGGTTCATATTTGAATCCTTCTAAT TACATGAACCCCTACCTTGGGCTTTTGAATCAGAATAACCAATATGCACCTTTTCCATACAATGGGAGTG TGCCAGTGGACAATGGTTCCCCTTTCTTAGGTTCTTATTCCCCCCAGGCTCAGTCCAGGGATCTACATAG ATATCCAAACCAGGACCATCTCACCAATCAGAACTTACCACCCATCCACACCCTTCACCAACAGACGTTT GGGGACAGTCCCTCTAAGTACTTAAGTTATGGAAACCAAAATATGCAGAGAGATGCCTTCACTACTAACT CCACCCTAAAACCAAATGTACACCACCTAGCAACGTTTTCTCCTTACCCCACCCCCAAGATGGATAGTCA TTTCATGGGAGCTGCCTCCAGATCACCATACAGCCACCCACACACTGACTACAAAACCAGTGAGCATCAT CTACCCTCTCACACGATCTACAGCTACACGGCAGCAGCTTCGGGGAGCAGTTCCAGCCACGCCTTCCACA ACAAGGAGAATGACAACATAGCCAATGGGCTCTCAAGAGTGCTTCCAGGGTTTAATCATGATAGAACTGC TTCTGCCCAAGAACTATTATACAGTCTGACTGGCAGCAGTCAGGAGAAGCAGCCTGAGGTGTCAGGCCAG GATGCAGCTGCTGTGCAGGAAATTGAGTATTGGTCAGATAGTGAGCACAACTTTCAGGATCCTTGCATTG GAGGGGTGGCTATAGCTCCAACTCATGGGTCAATTCTTATTGAGTGTGCAAAGTGTGAGGTTCATGCCAC AACCAAAGTAAACGATCCCGACCGGAATCACCCCACCAGGATCTCACTTGTACTGTATAGGCATAAGAAT TTGTTTCTACCAAAACATTGTTTGGCTCTCTGGGAAGCCAAAATGGCTGAAAAGGCCCGGAAAGAGGAAG AGTGCGGAAAGAATGGATCAGACCACGTGTCTCAGAAAAATCATGGCAAACAGGAAAAGCGTGAGCCCAC AGGGCCACAGGAACCCAGTTACCTGCGTTTCATCCAGTCTCTTGCTGAGAACACAGGGTCTGTGACTACG GATTCTACCGTGACTACATCACCATATGCTTTCACTCAGGTCACAGGGCCTTACAACACATTTGTATGA ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGATT ACAAGGATGACGACGATAAGGTTTAA |
Chromatograms |
CHROMATOGRAMS
Sequencher program is needed, download here. |
Restriction Sites | SgfI-MluI |
ACCN | NM_001040400 |
ORF Size | 5739 bp |
Insert Size | 5739 |
OTI Disclaimer | Due to the inherent nature of this plasmid, standard methods to replicate additional amounts of DNA in E. coli are highly likely to result in mutations and/or rearrangements. Therefore, OriGene does not guarantee the capability to replicate this plasmid DNA. Additional amounts of DNA can be purchased from OriGene with batch-specific, full-sequence verification at a reduced cost. Please contact our customer care team at custsupport@origene.com or by calling 301.340.3188 option 3 for pricing and delivery. The molecular sequence of this clone aligns with the gene accession number as a point of reference only. However, individual transcript sequences of the same gene can differ through naturally occurring variations (e.g. polymorphisms), each with its own valid existence. This clone is substantially in agreement with the reference, but a complete review of all prevailing variants is recommended prior to use. More info |
Reference Data | |
RefSeq | NM_001040400.2, NP_001035490.2 |
RefSeq Size | 9199 |
RefSeq ORF | 5739 |
Locus ID | 214133 |
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