TAG1 (CNTN2) (NM_005076) Human Untagged Clone

CAT#: SC303578

CNTN2 (untagged)-Human contactin 2 (axonal) (CNTN2)


  "NM_005076" in other vectors (6)

Reconstitution Protocol

USD 1,100.00

In Stock*

Size
    • 10 ug

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Specifications

Product Data
Type Human Untagged Clone
Tag Tag Free
Symbol CNTN2
Synonyms AXT; FAME5; TAG-1; TAX; TAX1
Vector pCMV6-XL5
E. coli Selection Ampicillin (100 ug/mL)
Mammalian Cell Selection None
Sequence Data
>OriGene sequence for NM_005076 edited
CTCCTCCGATCCCCACCTCTGCCCGGACATCCACCATGGGGACAGCCACCAGGAGGAAGC
CACACCTGCTGCTGGTAGCTGCTGTGGCCCTTGTCTCCTCTTCAGCTTGGAGTTCAGCCC
TGGAATCCCAAACCACCTTCGGGCCTGTCTTTGAAGACCAGCCCCTCAGTGTGCTATTCC
CAGAGGAGTCCACGGAGGAGCAGGTGTTGCTGGCATGCCGCGCCCGGGCCAGCCCTCCAG
CCACCTATCGGTGGAAGATGAATGGTACCGAGATGAAGCTGGAGCCAGGTTCCCGTCACC
AGCTGGTGGGGGGCAACCTGGTCATCATGAACCCCACCAAGGCACAGGATGCCGGGGTCT
ACCAGTGCCTGGCCTCCAACCCAGTGGGCACCGTTGTCAGCAGGGAGGCCATCCTCCGCT
TCGGCTTTCTGCAGGAATTCTCCAAGGAGGAGCGAGACCCAGTGAAAGCTCATGAAGGCT
GGGGGGTGATGTTGCCCTGTAACCCACCTGCCCACTACCCAGGCTTGTCCTACCGCTGGC
TCCTCAACGAGTTCCCCAACTTCATCCCGACGGACGGGCGTCACTTCGTGTCCCAGACCA
CAGGGAACCTGTACATTGCCCGAACCAATGCCTCAGACCTGGGCAACTACTCCTGTTTGG
CCACCAGCCACATGGACTTCTCCACCAAGAGCGTCTTCAGCAAGTTTGCTCAGCTCAACC
TGGCTGCTGAAGATACCCGGCTCTTTGCACCCAGCATCAAGGCCCGGTTCCCAGCAGAGA
CCTATGCACTGGTGGGGCAGCAGGTCACCCTGGAGTGCTTCGCCTTTGGGAACCCTGTCC
CCCGGATCAAGTGGCGCAAAGTGGACGGCTCCCTGTCCCCGCAGTGGACCACAGCTGAGC
CCACCCTGCAGATCCCCAGCGTCAGCTTTGAGGATGAGGGCACCTACGAGTGTGAGGCGG
AGAACTCCAAGGGCCGAGACACCGTGCAGGGCCGCATCATCGTGCAGGCTCAGCCTGAGT
GGCTAAAAGTGATCTCGGACACAGAGGCTGACATTGGCTCCAACCTGCGTTGGGGCTGTG
CAGCCGCCGGCAAGCCCCGGCCTACAGTGCGCTGGCTGCGGAACGGGGAGCCTCTGGCCT
CCCAGAACCGGGTGGAGGTGTTGGCTGGGGACCTGCGGTTCTCCAAGCTGAGCCTGGAAG
ACTCGGGCATGTACCAGTGTGTGGCAGAGAATAAGCACGGTACCATCTACGCCAGCGCCG
AGCTAGCCGTGCAAGCACTCGCCCCTGACTTCAGGCTGAATCCCGTGAGGCGTCTGATCC
CCGCGGCCCGCGGGGGAGAGATCCTTATCCCCTGCCAGCCCCGGGCAGCTCCAAAGGCCG
TGGTGCTCTGGAGCAAAGGCACGGAGATTTTGGTCAACAGCAGCAGAGTGACTGTAACTC
CAGATGGCACCTTGATCATAAGAAACATCAGCCGGTCAGATGAAGGCAAATACACCTGCT
TTGCTGAGAACTTCATGGGCAAAGCCAACAGCACTGGAATCCTATCTGTGCGAGATGCAA
CCAAAATCACTCTAGCCCCCTCAAGTGCCGACATCAACTTGGGTGACAACCTGACCCTAC
AGTGCCATGCCTCCCACGACCCCACCATGGACCTCACCTTCACCTGGACCCTGGACGACT
TCCCCATCGACTTTGATAAGCCTGGAGGGCACTACCGGAGAACTAATGTGAAGGAGACCA
TTGGGGATCTGACCATCCTGAACGCCCAGCTGCGCCATGGGGGGAAGTACACGTGCATGG
CCCAGACGGTGGTGGACAGCGCGTCCAAGGAGGCCACAGTCCTGGTCCGAGGTCCGCCAG
GTCCCCCAGGAGGTGTGGTGGTGAGGGACATTGGCGACACCACCATCCAGCTCAGCTGGA
GCCGTGGCTTCGACAACCACAGCCCCATCGCTAAGTACACCCTGCAAGCTCGCACTCCAC
CTGCAGGGAAGTGGAAGCAGGTTCGGACCAATCCTGCAAACATCGAGGGCAATGCCGAGA
CTGCACAGGTGCTGGGCCTCACCCCCTGGATGGACTATGAGTTCCGGGTCATAGCCAGCA
ACATTCTGGGCACTGGGGAGCCTAGTGGGCCCTCCAGCAAAATCCGGACCAGGGAAGCAG
CCCCCTCGGTGGCACCCTCAGGACTCAGCGGAGGAGGTGGAGCCCCCGGAGAGCTCATCG
TCAACTGGACGCCCATGTCACGGGAGTACCAGAACGGAGACGGCTTCGGCTACCTGCTGT
CCTTCCGCAGGCAGGGCAGCACTCACTGGCAGACCGCCCGGGTGCCTGGCGCCGATGCCC
AGTACTTTGTCTACAGCAACGAGAGCGTCCGGCCCTACACGCCCTTTGAGGTCAAGATCC
GCAGCTACAACCGCCGCGGGGATGGGCCCGAGAGCCTCACTGCACTCGTGTACTCAGCTG
AGGAAGAGCCCAGGGTGGCCCCTACCAAGGTGTGGGCCAAAGGGGTCTCATCCTCAGAGA
TGAACGTGACCTGGGAACCCGTGCAGCAGGACATGAATGGTATCCTCCTGGGGTATGAGA
TCCGCTACTGGAAAGCTGGGGACAAAGAAGCAGCTGCGGACCGAGTGAGGACAGCAGGGC
TGGACACCAGTGCCCGAGTCAGCGGCCTGCATCCCAACACCAAGTACCATGTGACCGTGA
GGGCCTACAACCGGGCTGGCACTGGGCCTGCCAGCCCTTCTGCCAACGCCACGACCATGA
AGCCCCCTCCGCGGCGACCTCCTGGCAACATCTCCTGGACTTTCTCAAGCTCTAGTCTTA
GCATTAAGTGGGACCCTGTGGTCCCTTTCCGAAATGAGTCTGCAGTCACCGGCTATAAGA
TGCTGTACCAGAATGACTTACACCTGACTCCCACGCTCCACCTCACCGGCAAGAACTGGA
TAGAAATCCCAGTGCCTGAAGACATTGGCCATGCCCTGGTACAAATTCGGACCACAGGGC
CCGGAGGGGATGGGATCCCTGCAGAAGTCCACATCGTGAGGAATGGAGGCACAAGCATGA
TGGTGGAGAACATGGCAGTCCGCCCAGCACCACACCCTGGCACCGTCATTTCCCACTCCG
TGGCGATGCTGATCCTCATAGGCTCCCTGGAGCTCTGATCCTGGAACCCCTCCCTCTGCG
CCGCAGCTGGACGCCACCTCCGACGGACACAGCCAGCCCCTTCCTGCTGCCAAGGTGGCC
TGACACTGTGCCAGAGAGTGGCTGGTTTTAAATACCTACTTTAAACAGTGCCCTTTTTGT
AGGAGGTAGGATATTTTATATTCTGCCGCAGGATAGAACCCACGCAAGGATTTTCTTTAA
ATTGAGAGGCACCAGGCAGTAACTTCCATGATGACACTGACGCCTATACCTGAGCTCTAG
GCTGCCTGGAGGGAAGGAACAGGCCCATGGGAAGAAGGGGGTTTTAAAAACATGTCTTCA
ACTCAGCAGAGATGGCCCTCTGGGACCCTATACGCACTCCGCCACTTGAGAGCAGTCCTA
GGCCCGGCAGGAACACCAGACATGAACAGGTTGAAGAACTGGAGCGAAGTGCACACCTCA
CCATCCTTCAGTCTAAGGAAGAAGGGCAAGCCCTGGGACCAAGAGCTCTCCCGCCTTCTC
CCTCGAGCAGCAGCAAGGACCCTGACGCTGTCCCCGATAACTCCCTAGGGGCTCCTGCCT
GCCCAAGCGGCTGAGAACCAGCGCCCCGATGCCTGAGGCTGGGAGCCTGAGCCCCTTCAG
CTTTGAGGGGGGTGATACTCCAGGCTGTTTGGGGTGGGAGCCAAAAAGAGTTGAGAGGCC
AGGGCCCTTGGTGGAAAGGGGCACCAGCCTTGGTCTGAGATAGTCACAACCCAGGTGACG
ATGCCCTCTCAGCCAACACTGCCAACCTGACCCTGTCATCCCGATTGACAGCGCCACTTC
AGGTGGCTGGGTGACTAAAGGGCTTGTCTTGGTGGGGTCTCCCACCCCTCCAAGACCCAT
TCTGCACAGTCCCTCCAGGGTTTGGGCAGGAGATGGCCAATCATGCGCCCACCTCTCCAG
TGCTGCCTGCAGTCAGCTCGGCCTCCCCGACCTGCAGCCCCAGACTCTGCTCTCCCAGCA
CTGACTCACTCCTGCCTGGGAGGGGAATGCAGCATTCATGCTGTGTGTCCTGGTATTGGG
AGGTTTCTGGGAAGGGCAGAGGATAAATGTGGCCCTGCCTGCTCCCAGGTATACCTAGGA
CCACCTGGCCAGATCCGCTCCCAGACGGCCTTGGACTGCTTGCATTTCCCCGGAGAAAAA
GGGGTTAATAAATGGGCCATCCTTTCCTGAGCTCTGGGTATACTACCAGTCACAGAACGT
CAGAGCTGGAAGAAGCCTTAGAGCTCAACTTCTTCAAGCCCCTCACTTTACAGATGAGGA
AATGGAGGTGGTCCAGAGAGGGTCTGGGATTCCCAAGGTCACACAGCCCAGAAGAGATGG
GGCTGGGTTAAGAACTCGAGTCTTCCACCTTTCTGTTCAAGGCTGTTTGTCTACCCAGAG
GAAGGAGGCACTGCTGAATGGCTATGGCCTGGCTAAGAAGGTGATTAGTCAGTAGGGTAT
GAAAATTCTACTTCAAGGGGTTCGGATTGGTGATCATGGGGATTGGCATGGCTGGGTTCC
AGTCCAAGGTGTGGGCAGAGCTTCTACCAAACTTCAACATGGAGGGCTGACTTGAAGCTC
CCTGTCCCCCTCACTCTTGCCTCAAGAAAAGAGGCCAAAGCAAGAGCAGATTCCCTAGGC
AAGAGCAGCGGCACAACTAGGAAACCCCAAAGCCCATGCTCCGACAGGTGGCCCTTCACA
GGGGGCAGCGGGACAGGCATCTTGAAGGGCATATGTCCTCGGAAGCTCCGAGCCTGTTTT
CTGTAGTTTATAGTTAGAGCTCTATTTTGTTATGGTTTTTTAAACTTTTAAGTCCTGCTC
TATTTTCCTGGGCAGGTTTATGTTGATGTTTACCCACTACAATTTTTTAAAAATATAAGC
TCACATGCCTTTTCCCTGCCACAGCCAAACCCCCACTGCACCCTACCCACCCACCCCTAG
CCCAGGTCAGCTTTCCTGGAGCTGGCTAATCAAAGCCTCCTCACCTCTTCCCAACCCTTA
CAAGCAAGGGTGCTAGGGGCTCAGCTATACGACCATTCTCCCTGACAGGGAGTCCAAACT
TGGCCTAGCATCCCTCCTGGCCCCCCTCTGGCCACGACTTGGCCTGTGCCTGGTTCTCTA
TCAGAAAGGGGATGCTGAACAAAACCTCCTTCCAAGTTTTATCCAATTCGTTCCTCATTG
CCTCGGGCTGCGTCAGGGGAAGCAGGGGACAGGTGTCCAGTTGCTGGGCCGAGGGAGGAG
CTGGTTTGGCATAGGACCTAACCAGTGAAGCTAGAGGCTACAGCCACTAAACTTGCTTCA
GGCCAACGATAGTTACTCACAAGTAAGTACCTTAATGCTAATGAGGTCCACTAAAAAGGG
GAGGAAGGCAGACCTCCTGGGAGACCCACGAAGGGTTTTTAGCCAGGGAAAACTGAGCCC
Restriction Sites Please inquire     
ACCN NM_005076
Insert Size 5600 bp
OTI Disclaimer Our molecular clone sequence data has been matched to the reference identifier above as a point of reference. Note that the complete sequence of our molecular clones may differ from the sequence published for this corresponding reference, e.g., by representing an alternative RNA splicing form or single nucleotide polymorphism (SNP).
OTI Annotation The ORF of this clone has been fully sequenced and found to contain one SNP compared with NM_005076.2.
Product Components The cDNA clone is shipped in a 2-D bar-coded Matrix tube as dried plasmid DNA. The package also includes 100 pmols of both the corresponding 5' and 3' vector primers in separate vials. Every lot of primer is tested to provide clean sequencing of OriGene TrueClones.
Reconstitution 1. Centrifuge at 5,000xg for 5min.
2. Carefully open the tube and add 100ul of sterile water to dissolve the DNA.
3. Close the tube and incubate for 10 minutes at room temperature.
4. Briefly vortex the tube and then do a quick spin (less than 5000xg) to concentrate the liquid at the bottom.
5. Store the suspended plasmid at -20°C. The DNA is stable for at least one year from date of shipping when stored at -20°C.
Reference Data
RefSeq NM_005076.2, NP_005067.1
RefSeq Size 7650 bp
RefSeq ORF 3123 bp
Locus ID 6900
Cytogenetics 1q32.1
Protein Pathways Cell adhesion molecules (CAMs)
Gene Summary 'This gene encodes a member of the contactin family of proteins, part of the immunoglobulin superfamily of cell adhesion molecules. The encoded glycosylphosphatidylinositol (GPI)-anchored neuronal membrane protein plays a role in the proliferation, migration, and axon guidance of neurons of the developing cerebellum. A mutation in this gene may be associated with adult myoclonic epilepsy. [provided by RefSeq, Sep 2016]'
Transcript Variant: This variant (1) represents the longest transcript. Both variants 1 and 2 encode the same protein. Sequence Note: This RefSeq record was created from transcript and genomic sequence data to make the sequence consistent with the reference genome assembly. The genomic coordinates used for the transcript record were based on transcript alignments.

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