BCDIN3D (NM_181708) Human Untagged Clone

CAT#: SC126373

BCDIN3D (untagged)-Human BCDIN3 domain containing (BCDIN3D)


  "NM_181708" in other vectors (6)

Reconstitution Protocol

USD 660.00

4 Weeks*

Size
    • 10 ug

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Specifications

Product Data
Type Human Untagged Clone
Tag Tag Free
Symbol BCDIN3D
Synonyms BCDIN3 domain containing
Vector pCMV6-XL5
E. coli Selection Ampicillin (100 ug/mL)
Mammalian Cell Selection None
Sequence Data
>OriGene sequence for NM_181708 edited
GGCTAATGGCGGTGCCCACGGAACTGGATGGAGGGAGTGTTAAGGAGACCGCAGCGGAAG
AGGAATCGCGAGTTCTGGCACCTGGCGCCGCCCCGTTCGGAAATTTTCCTCATTATTCTC
GCTTCCACCCTCCGGAGCAACGGCTCCGCCTCCTGCCCCCGGAGCTGCTTCGACAGCTCT
TTCCTGAGAGTCCCGAGAACGGGCCGATTCTGGGGCTCGACGTGGGGTGTAACTCCGGGG
ATCTGAGTGTGGCTCTATACAAACACTTCCTCTCCCTACCTGACGGGGAAACCTGCTCAG
ATGCCTCAAGAGAATTCCGTCTCCTCTGCTGCGACATAGATCCAGTCCTGGTGAAGCGAG
CCGAAAAAGAATGTCCTTTTCCTGATGCCTTGACTTTTATCACCCTGGACTTCATGAATC
AAAGGACCCGGAAGGTTCTCTTGAGCTCTTTCTTAAGCCAATTTGGACGTTCAGTTTTTG
ACATTGGCTTCTGCATGTCAATAACCATGTGGATTCATCTGAATCATGGAGACCATGGCC
TATGGGAGTTCCTGGCCCATCTTTCCTCCCTCTGCCACTACCTCCTTGTGGAGCCCCAAC
CCTGGAAGTGTTACCGGGCAGCTGCAAGGCGTCTCCGAAAGCTGGGACTCCATGATTTTG
ACCACTTCCACTCCCTTGCCATCCGAGGTGACATGCCCAATCAGATTGTGCAGATCTTGA
CCCAGGATCATGGCATGGAATTAATATGTTGCTTTGGCAACACCAGTTGGGACAGAAGCC
TTCTGCTCTTCAGGGCAAAACAAACCATAGAGACTCATCCAATCCCTGAATCACTGATAG
AAAAAGGGAAAGAAAAGAACAGATTAAGTTTCCAGAAGCAGTGAGATGGGAGGGCAAGAA
GACCAAGAAAGATATTGAAAGGGTTTTATATTGAGAATTATGTTCATTCTCCTTAATTCC
TTAACAATCAGGCAGCCGCAAAACCTGGCAGGAGCTTTTGGTAAAATGTCCAAGGCACAT
AATTGAAAGAATCAGTATCTGTTCCCCATTGTTTGGAACAAATCTTGAGGAGAATGAATC
TGTGGAGTGATGAGCTAGGATATCTGGATTGAGATGGCCTAGGAAAAGTGGTCCTGGTTA
TGGGTTATGGAGAGGGCTGCTTTTGGGGATTATTTATAAAGATCAGACTAGGCTAGTCTT
AAAATATGTCAGTTCCTGGGCTCTCTGAATCCTACCTGGTTTCTTCAGGCTTCTGGACTT
GCTAGGCCTGCCTTTGGGCAAAACCTTAGTAATTCAGGTCTGGAATGGGGCTTAGGAATC
TATTTTCTGTTTTTTTGTTTGTTTGTTTTTGCATTCTTCTATTGTAATATATACATAAAA
TTTACCATTTTAACCGTTTTTAAGTACAGTTTTTCAGAACGTGGAAATCCCATCAAAAAT
TGGATTAAAAAATTAAAAGATAAATTGATAATTTTTTTAAAAAAAAAAAAAAAAA
>OriGene 5' read for NM_181708 unedited
GTTTTGATTTGTATACGACTTACTATAGGCGGCCGCGATTCAGATCTGGTACCGGTCCGG
AATTCCCGGGATATCGTCGACCCACGCGTCCGGGCTAATGGCGGTGCCCACGGAACTGGA
TGGAGGGAGTGTTAAGGAGACCGCAGCGGAAGAGGAATCGCGAGTTCTGGCACCTGGCGC
CGCCCCGTTCGGAAATTTTCCTCATTATTCTCGCTTCCACCCTCCGGAGCAACGGCTCCG
CCTCCTGCCCCCGGAGCTGCTTCGACAGCTCTTTCCTGAGAGTCCCGAGAACGGGCCGAT
TCTGGGGCTCGACGTGGGGTGTAACTCCGGGGATCTGAGTGTGGCTCTATACAAACACTT
CCTCTCCCTACCTGACGGGGAAACCTGCTCAGATGCCTCAAGAGAATTCCGTCTCCTCTG
CTGCGACATAGATCCAGTCCTGGTGAAGCGAGCCGAAAAAGAATGTCCTTTTCCTGATGC
CTTGACTTTTATCACCCTGGACTTCATGAATCAAAGGACCCGGAAGGTTCTCTTGAGCTC
TTTCTTAAGCCAATTTGGACGTTCAGTTTTTGACATTGGCTTCTGCATGTCAATAACCAT
GTGGATTCATCTGAATCATGGAGACCATGGCCTATGGGAGTTCCTGGCCCATCTTTCCTC
CCTCTGCCACTACCTNCTTGTGGAGCCCCAACCCTGGNAAGTGTACCGGGCAGCTGCAAG
GCGTCTCCGANAGCTGGGACTCCATGATTTTGACCACTTNCACTNCCTTGCCATNNCGAG
TGACATGCCCAATCAGATTGTGCAGATCTTGACCCCAGATCATGGCATGGAATTNATATG
NNTGCTTNNGCACACCAGTGGGACAGAAGCCTTCTGCTCTNCAGGGCAAACAAACATAGA
GACTCTTCCATCCCCTGATACC
Restriction Sites NotI-NotI     
ACCN NM_181708
ORF Size 879 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).
Reference Data
RefSeq NM_181708.1, NP_859059.1
RefSeq Size 1495
RefSeq ORF 879
Locus ID 144233
Gene Summary This gene encodes an RNA methyltransferase which belongs to the rossmann fold methyltransferase family, and serves as a 5'-methylphosphate capping enzyme that is specific for cytoplasmic histidyl tRNA. The encoded protein contains an S-adenosylmethionine binding domain and uses the methyl group donor, S-adenosylmethionine. This gene is overexpressed in breast cancer cells, and is related to the tumorigenic phenotype and poor prognosis of breast cancer. The encoded protein is thought to promote the cellular invasion of breast cancer cells, by downregulating the expression of tumor suppressor miRNAs through the dimethylation of the 5-monophosphate of the corresponding precursor miRNAs. [provided by RefSeq, Apr 2017]

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