PRDM16 (NM_022114) Human Untagged Clone

CAT#: SC304995

PRDM16 (untagged)-Human PR domain containing 16 (PRDM16), transcript variant 1


  "NM_022114" in other vectors (6)

Reconstitution Protocol

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Size
    • 10 ug

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Specifications

Product Data
Type Human Untagged Clone
Tag Tag Free
Symbol PRDM16
Synonyms CMD1LL; KMT8F; LVNC8; MEL1; PFM13
Vector pCMV6-XL6
E. coli Selection Ampicillin (100 ug/mL)
Mammalian Cell Selection None
Sequence Data
>OriGene sequence for NM_022114 edited
GGAGGAGGAGAGAGATTCCGCGAGCCGACACCATGCGATCCAAGGCGAGGGCGAGGAAGC
TAGCCAAAAGTGACGGTGACGTTGTAAATAATATGTATGAGCCCAACCGGGACCTGCTGG
CCAGCCACAGCGCGGAGGACGAGGCCGAGGACAGTGCCATGTCGCCCATCCCCGTGGGGC
CACCGTCCCCCTTCCCCACCAGCGAGGACTTCACCCCCAAGGAGGGCTCGCCGTACGAGG
CCCCTGTCTACATTCCTGAAGACATTCCGATCCCAGCAGACTTCGAGCTCCGAGAGTCCT
CCATCCCAGGGGCTGGCCTGGGGGTCTGGGCCAAGAGGAAGATGGAAGCCGGGGAGAGGC
TGGGCCCCTGCGTGGTGGTGCCCCGGGCGGCGGCAAAGGAGACAGACTTCGGATGGGAGC
AAATACTGACGGACGTGGAAGTGTCGCCCCAGGAAGGCTGCATCACAAAGATCTCCGAAG
ACCTGGGCAGTGAGAAGTTCTGCGTGGATGCAAATCAGGCGGGGGCTGGCAGCTGGCTCA
AGTACATCCGTGTGGCGTGCTCCTGCGATGACCAGAACCTCACCATGTGTCAGATCAGTG
AGCAGATTTACTATAAAGTCATTAAGGACATTGAGCCAGGTGAGGAGCTGCTGGTGCACG
TGAAGGAAGGCGTCTACCCCCTGGGCACAGTGCCGCCCGGCCTGGACGAGGAGCCCACGT
TCCGCTGTGACGAGTGTGACGAACTCTTCCAGTCCAAGCTGGACCTGCGGCGCCATAAGA
AGTACACGTGTGGCTCAGTGGGGGCTGCGCTCTACGAGGGCCTGGCTGAGGAGCTCAAGC
CCGAGGGCCTTGGCGGTGGCAGCGGCCAAGCCCACGAGTGCAAGGACTGCGAGCGGATGT
TCCCCAACAAGTACAGCCTGGAGCAGCACATGGTCATCCACACGGAGGAGCGCGAGTACA
AATGCGACCAGTGTCCCAAGGCCTTCAACTGGAAGTCCAACCTCATCCGCCACCAGATGT
CCCACGACAGCGGCAAACGCTTCGAATGTGAAAACTGCGTGAAGGTGTTCACGGACCCCA
GCAACCTTCAGCGGCACATCCGCTCGCAGCACGTGGGCGCTCGGGCCCACGCCTGCCCCG
ACTGCGGGAAGACCTTCGCCACGTCCTCCGGCCTCAAGCAGCACAAGCATATCCACAGCA
CGGTGAAGCCTTTCATATGTGAGGTCTGCCACAAGTCCTACACGCAGTTCTCCAACCTGT
GCCGGCACAAGCGGATGCACGCCGACTGCCGCACGCAGATCAAGTGCAAGGACTGTGGCC
AGATGTTCAGCACTACCTCCTCCCTCAACAAGCACCGGCGCTTCTGCGAGGGCAAGAACC
ATTACACGCCGGGCGGCATCTTTGCCCCGGGCCTGCCCTTGACCCCCAGCCCCATGATGG
ACAAGGCAAAACCCTCCCCCAGCCTCAATCACGCCAGCCTGGGCTTCAACGAGTACTTTC
CCTCCAGGCCGCACCCGGGGAGCCTGCCCTTCTCCACGGCGCCTCCCACGTTCCCCGCAC
TCACCCCCGGCTTCCCGGGCATCTTCCCTCCATCCTTGTACCCCCGGCCGCCTCTGCTAC
CTCCCACACCGCTGCTCAAGAGCCCCCTGAACCACACCCAGGACGCCAAGCTCCCCAGTC
CCCTGGGGAACCCAGCCCTGCCCCTGGTCTCCGCCGTCAGCAACAGCAGCCAGGGCACGA
CGGCAGCTGCGGGGCCCGAGGAGAAGTTCGAGAGCCGCCTGGAGGACTCCTGTGTGGAGA
AGCTGAAGACCAGGAGCAGCGACATGTCGGACGGCAGTGACTTTGAGGACGTCAACACCA
CCACGGGGACCGACCTGGACACGACCACGGGGACGGGCTCGGACCTGGACAGCGACGTGG
ACAGCGACCCTGACAAGGACAAGGGCAAGGGCAAGTCCGCCGAGGGCCAGCCCAAGTTTG
GGGGCGGCTTGGCGCCCCCGGGGGCCCCGAACAGCGTGGCCGAGGTGCCTGTCTTCTATT
CCCAGCACTCATTCTTCCCGCCACCCGACGAGCAGCTGCTGACTGCAACGGGCGCCGCCG
GGGACTCCATCAAGGCCATCGCATCCATTGCCGAGAAGTACTTTGGCCCCGGCTTCATGG
GGATGCAGGAGAAGAAGCTGGGCTCGCTCCCCTACCACTCGGCGTTCCCCTTCCAGTTCC
TGCCCAACTTCCCCCACTCCCTTTACCCCTTCACGGACCGAGCCCTCGCCCACAACTTGC
TGGTCAAGGCCGAGCCAAAGTCACCCCGGGACGCCCTCAAGGTGGGCGGCCCCAGTGCCG
AGTGCCCCTTTGATCTCACCACCAAGCCCAAAGACGTGAAGCCCATCCTGCCCATGCCCA
AGGGCCCCTCGGCCCCCGCATCCGGCGAGGAGCAGCCGCTGGACCTGAGCATCGGCAGCC
GGGCCCGTGCCAGCCAAAACGGCGGCGGGCGGGAGCCCCGCAAGAACCACGTCTATGGGG
AACGCAAGCTGGGCGCCGGCGAGGGGCTGCCCCAGGTGTGCCCGGCGCGGATGCCCCAGC
AGCCCCCGCTCCACTACGCCAAGCCCTCGCCCTTCTTCATGGACCCCATCTACAGCAGGG
TAGAAAAGCGGAAGGTCACAGACCCCGTGGGAGCCCTGAAGGAGAAGTACCTGCGGCCGT
CCCCGCTGCTCTTCCACCCCCAGATGTCAGCCATAGAGACCATGACAGAGAAGCTGGAGA
GCTTTGCAGCCATGAAGGCGGACTCGGGCAGCTCCCTGCAGCCCCTCCCCCACCACCCCT
TCAACTTCCGGTCCCCACCCCCAACGCTCTCCGACCCCATCCTCAGGAAGGGCAAGGAGC
GATACACGTGCAGGTACTGTGGGAAGATCTTCCCCAGATCAGCCAATCTCACCAGACACC
TGAGGACGCACACTGGGGAGCAGCCGTACAGGTGTAAGTACTGCGACCGCTCCTTCAGCA
TCTCTTCGAACCTCCAGCGGCACGTCCGGAACATCCACAACAAGGAGAAGCCTTTCAAGT
GCCACCTGTGCAACCGCTGCTTCGGGCAGCAGACCAACCTGGACCGGCACCTCAAGAAGC
ACGAGCACGAGAACGCACCAGTGAGCCAGCACCCCGGGGTCCTCACGAACCACCTGGGGA
CCAGCGCGTCCTCTCCCACCTCAGAGTCGGACAACCACGCACTTTTAGACGAGAAAGAAG
ACTCTTATTTCTCGGAAATCAGAAACTTTATTGCCAATAGTGAGATGAACCAAGCATCAA
CGCGAACAGAGAAACGGGCGGACATGCAGATCGTGGACGGCAGTGCCCAGTGTCCAGGCC
TAGCCAGTGAGAAGCAGGAGGACGTGGAGGAGGAGGACGACGATGACCTGGAGGAGGACG
ATGAGGACAGCCTGGCCGGGAAGTCGCAGGATGACACCGTGTCCCCCGCACCCGAGCCCC
AGGCCGCCTACGAGGATGAGGAGGATGAGGAGCCAGCCGCCTCCCTGGCCGTGGGCTTTG
ACCACACCCGAAGGTGTGCTGAGGACCACGAAGGCGGTCTGTTAGCTTTGGAGCCGATGC
CGACTTTTGGGAAGGGGCTGGACCTCCGCAGAGCAGCTGAGGAAGCATTTGAAGTTAAAG
ATGTGCTTAATTCCACCTTAGATTCTGAGGCTTTAAAACATACACTGTGCAGGCAGGCTA
AGAACCAGGCATATGCAATGATGCTGTCCCTTTCCGAAGACACTCCTCTCCACACCCCCT
CCCAGGGTTCTCTGGACGCTTGGTTGAAGGTCACTGGAGCCACGTCGGAGTCTGGAGCAT
TTCACCCCATCAACCACCTCTGACGGGCTGGGCAGCCGGGGGCCGGTGGCCAGAGCGAGG
GCACCAGCCACGAAGGACGGAGGCGGGCGGGGCCCCGGAGAACCCTGTCCCTGCGTGTGG
CCACTCCTCAGCATCCTCCCCACCCACCATGGTTCATTCCGACTTTTCCAATGGAAACTC
AGATCCCAAAAGTCCCTAAAGCAGTCGTAGAGTCTCACCATCTCCAAGGATTGGTCTTGA
GAACACTGTTCAGTGACGGCCATGCAGGTGGCCGTCCAAAGACAGCCAACGGAGCTGCCT
CGCAGAATCAGCCAGTGGGCAGGTGGACGCTCTGCTGAGACAGAAGCTGGTGGCCACTGC
CGGGTGCCCGCGTGGGGTCGCGGAAGGGAATGGATAGACTGGTGTGCTCAAAAGAGAGAG
ATCACTCAAATGATTTTTATAATGAAATGACAAGAATAACCCTTTTGGTAACCGTATTGA
CTGCAGAGTCTATTTAAGCATGTGGTTTTAAAAATAGACAGTATTTTTTAAAAATCAAAA
AATGACTTGCAAATTGTTTTTTAAAAGTAATTTTGCATTGCTTTGAAATTTGAGCTCATT
TGCAAACCCGAGTCTGCCTGGGAACCCGCACTGTGCCTGGGTGTATTCTTTATACTGTAG
ATAATGGAGAAATTTTCTATCTCTGTCCCTATTTGTATAAGCCAAGGTGATGCTGGGTGC
CCCGAGGCAGAACAAGAGGCGCGGGGCCACACCCGTGAACCATGCAGACGGCCGAAGAAG
TCTTAGGCAGGGCGCCCTGGGCTGCAGGCCTGCCCGAGGCTGGGATGGGAAGTGTGCCTG
CCCTCGTGTGACATGGAATTGGTGTCAGGACCGCCACGTGGCCTTCAGAGGAATCCACAG
GTCCCCACCCAAGATCCCTCAATTATATGGGGAAGTCGAGGGCCTGTGGCTTGGATCCGC
CATGCAGAGATGTGGCCGGGCACCCATCTTCCTTCCCTCCTCTGTCCCTGCCTCGGCCAC
CCCACGCGGGAACCCAGCGCCGTCCTCTGAAGGCAGGGCCTTGGCCACGTCCTGGGTCTC
CCACCTCCCACCTGACCCCAGCGGCTCCGGTGTCCTCCACGTGGCTGCCCTGGGGAGCAA
TCCCAGCGGATCGCTCCGGGCCACCAAGCCGCACCTGTGCCTGAGACTCCGGATGGACGA
CACAGTCGTCACGTCGCTCTTCCTGCGGGTTCTTGGCGAGACACAGCTTGAGAACAGAAG
GGCGTCGGGGGAACCTGCCGCAAGGAGCAGAGACAGCACAGCCCCCCGGGCCCAGCCGCC
TCCCTCTCTTGGGACGCAACTTCTTCCCCACTCGGATGGGCTTTAAATTATTCCCATAGG
GGCCAATTTCAAATAATAATTTTTTTCCCTGATGGAATTTACCTTAATCTGTATATAACT
TGTAATTTTTTCTAATTCATTTCTTTTCTTATTTTATTTCCTCCTTAACAGTATTTTTGG
CATTAGACATTCTTATTGTGAAGAAATAATGTTAATATAAGTATCTGGTGAAGGACCAAA
ACCGTGTGATAAGGTTGTGTGTCGTGTGGGAGTGGGGCGATTTTTTATGTGCCAAATACC
CCCGTCCCCCCCATGAATCCTGCTGTCCCTGCTGCCGTTTACCAGACAATCATATGTTTT
TGTTAAATTTGCGTTTCAGTTACATTTGCATTTAAGACAAGTGTTCTATTTATTTCTTGT
ATTGTTTGGAAGAAAAAATGATGATAGAGTCCCAAAAAGAAGAGAAAAAAAATGCCCAAG
TTGCCCTTTAAAAAAAAAGAGCGTAAATACAAACAGGAGTGGTGCAAGCCGCCTTGGTGT
GGGTTTGTGTCACGCGTGGACATCTCCTCAGGCTTTGTGTCACGCGTGGACATCTCCTCA
GGCTGTCCCCAGCGGTGACGGGAGGTGTCCTGGCTGCTCCAGGACAAAAGACAATCGTCT
CTGTGGGTGCCGGGCGGTCCAGGCTTGCACTGAAGACGTGCCACGGGGAGGCTCCTGCAG
GAGGCTCAACCCGACGGATCACAGTGAAAGGGATTCCTCCCACGCCAGATCTGCACAACG
AGGCAAGACAGGACCCACCTGTGCGTGCGCTGGGGCCATGGGGTGGCCCCCCCGGGGCAG
CGGGGGAGCTGCCTGCAGAAGAGCCAGCCGGCGTGTCGGGAAGGATCCAGGATCTGCAAA
CACAACCGCTCAGGCCTTCTCACGCGTTTCCACAACATCCCCTGGGTCAGACCCACCAGG
TACC
Restriction Sites Please inquire     
ACCN NM_022114
ORF Size 3828 bp
Insert Size 6100
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 and 3bp insertion compared with NM_022114.2.
Reference Data
RefSeq NM_022114.2, NP_071397.2
RefSeq Size 8726
RefSeq ORF 3828
Locus ID 63976
Gene Summary The reciprocal translocation t(1;3)(p36;q21) occurs in a subset of myelodysplastic syndrome (MDS) and acute myeloid leukemia (AML). This gene is located near the 1p36.3 breakpoint and has been shown to be specifically expressed in the t(1:3)(p36,q21)-positive MDS/AML. The protein encoded by this gene is a zinc finger transcription factor and contains an N-terminal PR domain. The translocation results in the overexpression of a truncated version of this protein that lacks the PR domain, which may play an important role in the pathogenesis of MDS and AML. Alternatively spliced transcript variants encoding distinct isoforms have been reported. [provided by RefSeq, Jul 2008]
Transcript Variant: This variant (1) represents the longer transcript and encodes the longer 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 genomic coordinates used for the transcript record were based on transcript alignments.

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