AKAP12 (NM_005100) Human Untagged Clone

CAT#: SC110078

AKAP12 (untagged)-Human A kinase (PRKA) anchor protein 12 (AKAP12), transcript variant 1


  "NM_005100" in other vectors (2)

Reconstitution Protocol

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Size
    • 10 ug

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Specifications

Product Data
Type Human Untagged Clone
Tag Tag Free
Symbol AKAP12
Synonyms AKAP250; SSeCKS
Vector pCMV6-XL4
E. coli Selection Ampicillin (100 ug/mL)
Mammalian Cell Selection None
Sequence Data
>OriGene ORF sequence for NM_005100 edited
TTCGGCACGAGGGTTTGCCGCGAGCGCGTCTCCTTCATTCGCAGGCTGGGCGCGTTCGCA
GTCGGCTGGCGGCGAAGGAAGGCGCTCTCGGGACCTCGCGGGCGCGCGTCTTTTGGCTCT
TGCCCCTGTCCCTGCGGCTTGGGGAAGGCGTAACCCGGCGGCTAGGCGCGGGAGAAGTGC
GGAGGAGCCATGGGCGCCGGGAGCTCCACCGAGCAGCGCAGCCCGGAGCAGCCGCCCGAG
GGGAGCTCCACGCCGGCTGAGCCCGAGCCCAGCGGCGGCGGCCCCTCGGCCGAGGCGGCG
CCAGACACCACCGCGGACCCCGCCATCGCTGCCTCGGACCCCGCCACCAAGCTCCTACAG
AAGAATGGTCAGCTGTCCACCATCAATGGCGTAGCTGAGCAAGATGAGCTCAGCCTCCAG
GAGGGTGACCTAAATGGCCAGAAAGGAGCCCTGAACGGTCAAGGAGCCCTAAACAGCCAG
GAGGAAGAAGAAGTCATTGTCACAGAGGTTGGACAGAGAGACTCTGAAGATGTGAGCAAA
AGAGACTCCGATAAAGAGATGGCTACTAAGTCAGCGGTTGTTCACGACATCACAGATGAT
GGGCAGGAGGAGACACCCGAAATAATCGAACAGATTCCTTCTTCAGAAAGCAATTTAGAA
GAGCTAACACAACCCACTGAGTCCCAGGCTAATGATATTGGATTTAAGAAGGTGTTTAAG
TTTGTTGGCTTTAAATTCACTGTGAAAAAGGATAAGACAGAGAAGCCTGACACTGTCCAG
CTACTCACTGTGAAGAAAGATGAAGGGGAGGGAGCAGCAGGGGCTGGCGACCACAAGGAC
CCCAGCCTTGGGGCTGGAGAAGCAGCATCCAAAGAAAGCGAACCCAAACAATCTACAGAG
AAACCCGAAGAGACCCTGAAGCGTGAGCAAAGCCACGCAGAAATTTCTCCCCCAGCCGAA
TCTGGCCAAGCAGTGGAGGAATGCAAAGAGGAAGGAGAAGAGAAACAAGAAAAAGAACCT
AGCAAGTCTGCAGAATCTCCGACTAGTCCCGTGACCAGTGAAACAGGATCAACCTTCAAA
AAATTCTTCACTCAAGGTTGGGCCGGCTGGCGCAAAAAGACCAGTTTCAGGAAGCCGAAG
GAGGATGAAGTGGAAGCTTCAGAGAAGAAAAAGGAACAAGAGCCAGAAAAAGTAGACACA
GAAGAAGACGGAAAGGCAGAGGTTGCCTCCGAGAAACTGACCGCCTCCGAGCAAGCCCAC
CCACAGGAGCCGGCAGAAAGTGCCCACGAGCCCCGGTTATCAGCTGAATATGAGAAAGTT
GAGCTGCCCTCAGAGGAGCAAGTCAGTGGCTCGCAGGGACCTTCTGAAGAGAAACCTGCT
CCGTTGGCGACAGAAGTGTTTGATGAGAAAATAGAAGTCCACCAAGAAGAGGTTGTGGCC
GAAGTCCACGTCAGCACCGTGGAGGAGAGAACCGAAGAGCAGAAAACGGAGGTGGAAGAA
ACAGCAGGGTCTGTGCCAGCTGAAGAATTGGTTGAAATGGATGCAGAACCTCAGGAAGCT
GAACCTGCCAAGGAGCTGGTGAAGCTCAAAGAAACGTGTGTTTCCGGAGAGGACCCTACA
CAGGGAGCTGACCTCAGTCCTGATGAGAAGGTGCTGTCCAAACCCCCCGAAGGCGTTGTG
AGTGAGGTGGAAATGCTGTCATCACAGGAGAGAATGAAGGTGCAGGGAAGTCCACTAAAG
AAGCTTTTTACCAGCACTGGCTTAAAAAAGCTTTCTGGAAAGAAACAGAAAGGGAAAAGA
GGAGGAGGAGACGAGGAATCAGGGGAGCACACTCAGGTTCCAGCCGATTCTCCGGACAGC
CAGGAGGAGCAAAAGGGCGAGAGCTCTGCCTCATCCCCTGAGGAGCCCGAGGAGATCACG
TGTCTGGAAAAGGGCTTAGCCGAGGTGCAGCAGGATGGGGAAGCTGAAGAAGGAGCTACT
TCCGATGGAGAGAAAAAAAGAGAAGGTGTCACTCCCTGGGCATCATTCAAAAAGATGGTG
ACGCCCAAGAAGCGTGTTAGACGGCCTTCGGAAAGTGATAAAGAAGATGAGCTGGACAAG
GTCAAGAGCGCTACCTTGTCTTCCACCGAGAGCACAGCCTCTGAAATGCAAGAAGAAATG
AAAGGGAGCGTGGAAGAGCCAAAGCCGGAAGAACCAAAGCGCAAGGTGGATACCTCAGTA
TCTTGGGAAGCTTTAATTTGTGTGGGATCATCCAAGAAAAGAGCAAGGAGAGGGTCCTCT
TCTGATGAGGAAGGGGGACCAAAAGCAATGGGAGGAGACCACCAGAAAGCTGATGAGGCC
GGAAAAGACAAAGAGACGGGGACAGACGGGATCCTTGCTGGTTCCCAAGAACATGATCCA
GGGCAGGGAAGTTCCTCCCCGGAGCAAGCTGGAAGCCCTACCGAAGGGGAGGGCGTTTCC
ACCTGGGAGTCATTTAAAAGGTTAGTCACGCCAAGAAAAAAATCAAAGTCCAAGCTGGAA
GAGAAAAGCGAAGACTCCATAGCTGGGTCTGGTGTAGAACATTCCACTCCAGACACTGAA
CCCGGTAAAGAAGAATCCTGGGTCTCAATCAAGAAGTTTATTCCTGGACGAAGGAAGAAA
AGGCCAGATGGGAAACAAGAACAAGCCCCTGTTGAAGACGCAGGGCCAACAGGGGCCAAC
GAAGATGACTCTGATGTCCCGGCCGTGGTCCCTCTGTCTGAGTATGATGCTGTAGAAAGG
GAGAAAATGGAGGCACAGCAAGCCCAAAAAAGCGCAGAGCAGCCCGAGCAGAAGGCAGCC
ACTGAGGTGTCCAAGGAGCTCAGCGAGAGTCAGGTTCATATGATGGCAGCAGCTGTCGCT
GACGGGACGAGGGCAGCTACCATTATTGAAGAAAGGTCTCCTTCTTGGATATCTGCTTCA
GTGACAGAACCTCTTGAACAAGTAGAAGCTGAAGCCGCACTGTTAACTGAGGAGGTATTG
GAAAGAGAAGTAATTGCAGAAGAAGAACCCCCCACGGTTACTGAACCTCTGCCAGAGAAC
AGAGAGGCCCGGGGCGACACGGTCGTTAGTGAGGCGGAATTGACCCCCGAAGCTGTGACA
GCTGCAGAAACTGCAGGGCCATTGGGTGCCGAAGAAGGAACCGAAGCATCTGCTGCTGAA
GAGACCACAGAAATGGTGTCAGCAGTCTCCCAGTTAACCGACTCCCCAGACACCACAGAG
GAGGCCACTCCGGTGCAGGAGGTGGAAGGTGGCGTACCTGACATAGAAGAGCAAGAGAGG
CGGACTCAAGAGGTCCTCCAGGCAGTGGCAGAAAAAGTGAAAGAGGAATCCCAGCTGCCT
GGCACCGGTGGGCCAGAAGATGTGCTTCAGCCTGTGCAGAGAGCAGAGGCAGAAAGACCA
GAAGAGCAGGCTGAAGCGTCGGGTCTGAAGAAAGAGACGGATGTAGTGTTGAAAGTAGAT
GCTCAGGAGGCAAAAACTGAGCCTTTTACACAAGGGAAGGTGGTGGGGCAGACCACCCCA
GAAAGCTTTGAAAAAGCTCCTCAAGTCACAGAGAGCATAGAGTCCAGTGAGCTTGTAACC
ACTTGTCAAGCCGAAACCTTAGCTGGGGTAAAATCACAGGAGATGGTGATGGAACAGGCT
ATCCCCCCTGACTCGGTGGAAACCCCTACAGACAGTGAGACTGATGGAAGCACCCCCGTA
GCCGACTTTGACGCACCAGGCACAACCCAGAAAGACGAGATTGTGGAAATCCATGAGGAG
AATGAGGTCGCATCTGGTACCCAGTCAGGGGGCACAGAAGCAGAGGCAGTTCCTGCACAG
AAAGAGAGGCCTCCAGCACCTTCCAGTTTTGTGTTCCAGGAAGAAACTAAAGAACAATCA
AAGATGGAAGACACTCTAGAGCATACAGATAAAGAGGTGTCAGTGGAAACTGTATCCATT
CTGTCAAAGACTGAGGGGACTCAAGAGGCTGACCAGTATGCTGATGAGAAAACCAAAGAC
GTACCATTTTTCGAAGGACTTGAGGGGTCTATAGACACAGGCATAACAGTCAGTCGGGAA
AAGGTCACTGAAGTTGCCCTTAAAGGTGAAGGGACAGAAGAAGCTGAATGTAAAAAGGAT
GATGCTCTTGAACTGCAGAGTCACGCTAAGTCTCCTCCATCCCCCGTGGAGAGAGAGATG
GTAGTTCAAGTCGAAAGGGAGAAAACAGAAGCAGAGCCAACCCATGTGAATGAAGAGAAG
CTTGAGCACGAAACAGCTGTTACCGTATCTGAAGAGGTCAGTAAGCAGCTCCTCCAGACA
GTGAATGTGCCCATCATAGATGGGGCAAAGGAAGTCAGCAGTTTGGAAGGAAGCCCTCCT
CCCTGCCTAGGTCAAGAGGAGGCAGTATGCACCAAAATTCAAGTTCAGAGCTCTGAGGCA
TCATTCACTCTAACAGCGGCTGCAGAGGAGGAAAAGGTCTTAGGAGAAACTGCCAACATT
TTAGAAACAGGTGAAACGTTGGAGCCTGCAGGTGCACATTTAGTTCTGGAAGAGAAATCC
TCTGAAAAAAATGAAGACTTTGCCGCTCATCCAGGGGAAGATGCTGTGCCCACAGGGCCC
GACTGTCAGGCAAAATCGACACCAGTGATAGTATCTGCTACTACCAAGAAAGGCTTAAGT
TCGGACCTGGAAGGAGAGAAAACCACATCACTGAAGTGGAAGTCAGATGAAGTCGATGAG
CAGGTTGCTTGCCAGGAGGTCAAAGTGAGTGTAGCAATTGAGGATTTAGAGCCTGAAAAT
GGGATTTTGGAACTTGAGACCAAAAGCAGTAAACTTGTCCAAAACATCATCCAGACAGCC
GTTGACCAGTTTGTACGTACAGAAGAAACAGCCACCGAAATGTTGACGTCTGAGTTACAG
ACACAAGCTCACGTGATAAAAGCTGACAGCCAGGACGCTGGACAGGAAACGGAGAAAGAA
GGAGAGGAACCTCAGGCCTCTGCACAGGATGAAACACCAATTACTTCAGCCAAAGAGGAG
TCAGAGTCAACCGCAGTGGGACAAGCACATTCTGATATTTCCAAAGACATGAGTGAAGCC
TCAGAAAAGACCATGACTGTTGAGGTAGAAGGTTCCACTGTAAATGATCAGCAGCTGGAA
GAGGTCGTCCTCCCATCTGAGGAAGAGGGAGGTGGAGCTGGAACAAAGTCTGTGCCAGAA
GATGATGGTCATGCCTTGTTAGCAGAAAGAATAGAGAAGTCACTAGTTGAACCGAAAGAA
GATGAAAAAGGTGATGATGTTGATGACCCTGAAAACCAGAACTCAGCCCTGGCTGATACT
GATGCCTCAGGAGGCTTAACCAAAGAGTCCCCAGATACAAATGGACCAAAACAAAAAGAG
AAGGAGGATGCCCAGGAAGTAGAATTGCAGGAAGGAAAAGTGCACAGTGAATCAGATAAA
GCGATCACACCCCAAGCACAGGAGGAGTTACAGAAACAAGAGAGAGAATCTGCAAAGTCA
GAACTTACAGAATCTTAAAACATCATGCAGTTAAACTCATTGTCTGTTTGGAAGACCAGA
ATGTGAAGACAAGTAGTAGAAGAAAATGAATGCTGCTGCTGAGACTGAAGACCAGTATTT
CAGAACTTTGAGAATTGGAGAGCAGGCACATCAACTGATCTCATTTCTAGAG
>OriGene 5' read for NM_005100 unedited
TGAATTAGTATACGACTCCTATAGGGCGGCCGCGAATTCGCACGAGGTTTGCCGCGAGCG
CGTCTCCTTCATTCGCAGGCTGGGCGCGTTCGCAGTCGGCTGGCGGCGAAGGAAGGCGCT
CTCGGGACCTCGCGGGCGCGCGTCTTTTGGCTCTTGCCCCTGTCCCTGCGGCTTGGGGAA
GGCGTAACCCGGCGGCTAGGCGCGGGAGAAGTGCGGAGGAGCCATGGGCGCCGGGAGCTC
CACCGAGCAGCGCAGCCCGGAGCAGCCGCCCGAGGGGAGCTCCACGCCGGCTGAGCCCGA
GCCCAGCGGCGGCGGCCCCTCGGCCGAGGCGGCGCCAGACACCACCGCGGACCCCGCCAT
CGCTGCCTCGGACCCCGCCACCAAGCTCCTACAGAAGAATGGTCAGCTGTCCACCATCAA
TGGCGTAGCTGAGCAAGATGAGCTCAGCCTCCAGGAGGGTGACCTAAATGGCCAGAAAGG
AGCCCTGAACGGTCAAGGAGCCCTAAACAGCCAGGAGGAAGAAGAAGTCATTGTCACAGA
GGTTGGACAGAGAGACTCTGAAGATGTGAGCAAAAGAGACTCCGATAAAGAGATGGCTAC
TAAGTCAGCGGTTGTTCACGACATCACAGATGATGGGCAGGAGGAGACACCCGAAATAAT
CGAACAGATTCCTTCTTCAGANAGCAATTTAGAAGAGCTAACACAACCCACTGAGTCCCA
GGCTAATGATATTGGATTTAAGAAGGTGGTTAAGTTTGTTGGCTTTAAAATCACTGTNGA
AAAGGATNAGACAGAGAAGCCTGACACTGTCCAGCTACTCACTGTGAAGAAAGATGAAGG
GGAGGGAGCAGCAGGNGCTGGCGACCACAAGGACCCAGCCTTGNNGCTGNAGAAGCAGCA
TCCACAGAAGCGAACCCAACATCTACGAGAAACCCGAGAGACCTG
>OriGene 3' read for NM_005100 unedited
TGTAACGCGGCACGCAATCTAGTGTCGAGTTTTTTTTTTTTTTTTTTTAAGTGAAGCAAA
TATTTTATTTAAATCAGTCGTCAAATCACAACTTATCCAAATGAATGTGTTGCAACATTG
TTCTTAAAAGAATGGCACAAATATGGCACAAACACAATCCAGTATCTATCAAAATACCAT
TTGTAAAGAACCTGACTTATTTCATGCCATGTGTGAATGCAGTCCAGCATATAAGAGTAG
AATCAAAAACTTACAACAATTCTTTTCTTCATAACATATAAAACATATTCACTACTTTGC
CTCAGGATTAAGCACACTTATCGGTCCAAACAACCATAACAAGTAGGAAAAAGGATGTAA
AGTTAATTTGCTACCAGAATATAACTTCTTTCTAACCTCCACTGGGTTAGAAAGAAAAAT
TTCCCAATGACAATAGAACATTCTGTATGTTTCAAAATGCCTTTTTAGTTTTAGCACACT
CCGTGTAATAGGAACGTGACCAATTTCAGAGCACCACTAAATATGGACCTCAATCATTAG
CGAATTTTTAAAGAATTGCACCTTGATCAGGAATGTTACATCTAGGAGGCTCTGTTTTTC
CGGGCTATATAACTGAAGCTTAAAGCCTCCCAAGCCTGCACTATGGCACATGCCCCATCA
TATACTGGGGGATACAAAAACCTGGAGTATCCTGCCCATTCCCTTATACTTTAGAATAAA
TTTCCACTTGATACCGGAGGACTACTTAACCACTTCATATAAATTTGGAAAGAATGGATA
CTCAATTTCCACAACCAAAACTAGGTTTTGCCAACTTCAGTTCCAGGTTAAGAATTTAAG
GATCTCTAATCACAATCTATTAGGCGTTCAAGCGAAATCGGCCGTTGGTCCTTGCAACAG
AAAAGGCAAAGGCCCTAACCTCCGATAAACCCTAGGAATGCCAGAGGCCTTCTAAAAGTA
ATACATGAGGGCCCGGCTCCACATTCCAAANTTTGAAAAC
Restriction Sites NotI-NotI     
ACCN NM_005100
ORF Size 5349 bp
Insert Size 6000
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).
Reference Data
RefSeq NM_005100.2, NP_005091.2
RefSeq Size 6609
RefSeq ORF 5349
Locus ID 9590
Domains PkinA_anch
Protein Families Druggable Genome
Gene Summary The A-kinase anchor proteins (AKAPs) are a group of structurally diverse proteins, which have the common function of binding to the regulatory subunit of protein kinase A (PKA) and confining the holoenzyme to discrete locations within the cell. This gene encodes a member of the AKAP family. The encoded protein is expressed in endothelial cells, cultured fibroblasts, and osteosarcoma cells. It associates with protein kinases A and C and phosphatase, and serves as a scaffold protein in signal transduction. This protein and RII PKA colocalize at the cell periphery. This protein is a cell growth-related protein. Antibodies to this protein can be produced by patients with myasthenia gravis. Alternative splicing of this gene results in two transcript variants encoding different isoforms. [provided by RefSeq, Jul 2008]
Transcript Variant: This variant (1) represents the longest transcript and encodes the longest isoform (1). Sequence Note: This RefSeq record was created from transcript and genomic sequence data to make the sequence consistent with the reference genome assembly. The extent of this transcript is supported by transcript alignments.

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