NFYB (NM_006166) Human Untagged Clone

CAT#: SC116285

NFYB (untagged)-Human nuclear transcription factor Y, beta (NFYB)


  "NM_006166" 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 NFYB
Synonyms CBF-A; CBF-B; HAP3; NF-YB
Vector pCMV6-XL5
E. coli Selection Ampicillin (100 ug/mL)
Mammalian Cell Selection None
Sequence Data
>OriGene sequence for NM_006166 edited
GAATTCGGCACGAGGCCGCGGCGGAGGGAGGGGAGGCCGAGTCCTGGAAGCGGAGCTCCG
CGCTGGGACTGGTTCCTTCGCAGCCATTTTCTGTCCAACCAAACAGCCGATTGGAGACGG
GAGCCAACCAGGGCTGCATTGGAGGTTGAAATCACAAAGATTAGACACCTTTTTAGATAG
GTGTTCTTCAGCACCACTGACAACACGGTTCTGACAGTATTTCATGACAATGGATGGTGA
CAGTTCTACAACAGATGCTTCTCAACTAGGAATCTCTGCAGACTATATTGGAGGAAGTCA
TTATGTTATACAGCCTCATGATGATACTGAGGACAGCATGAATGATCATGAAGACACAAA
TGGTTCAAAAGAAAGTTTCAGAGAACAAGATATATATCTTCCAATAGCAAACGTGGCTAG
GATAATGAAAAATGCCATACCTCAAACGGGAAAGATTGCAAAAGATGCCAAAGAATGTGT
TCAAGAATGTGTAAGTGAGTTCATCAGTTTTATAACATCTGAAGCAAGTGAAAGGTGCCA
TCAAGAGAAACGGAAAACAATCAATGGAGAAGATATTCTCTTTGCTATGTCTACTTTAGG
CTTTGACAGTTATGTGGAACCTCTGAAATTATACCTTCAGAAATTCAGAGAGGCTATGAA
AGGAGAAAAGGGAATTGGTGGAGCAGTCACAGCTACAGATGGACTAAGTGAAGAGCTTAC
AGAGGAGGCATTTACTAACCAGTTACCAGCTGGCTTAATAACCACAGACGGTCAACAACA
AAATGTTATGGTTTACACAACATCATATCAACAGATTTCTGGTGTTCAGCAAATTCAGTT
TTCATGATCTGAAGAAATGATGGAATGGGGAGTGTAGAGAAATGAGAGTCTGTATGATTC
TGGAACAGAGACATCAGAAGGAAAGACTGGTGAAAAGATGTATCTTTGTATATTAATAGC
TGTAATGTAGCTTCCTGATGCTTGACTAATTGAGGTGTTAATTCTGACTTGAGAATCTTT
TTCATGAATGATTTTAAAGAAAAATTTGGATTTTAAAGGTATTAAAATATTTTTGTTTTG
TACGAGAGTTTGTTGCTCTGTATGACTCCTGTATGCATTGTATATTGCAATTTATTACTG
TCAGAGATTTGTAGACAGTTTCTTATTTTCATATTGAATCATGTTACTTTTGTAATTCAA
GTAAGCGGCTGGGTTAATTCATGATGTTTGCCCTTTTAATAAAATATAAGGGTAGAGTTC
ATTTTGAATGCAAGTTGCCTTTATTATAAATTTGAGTTTGTCTTGGTTATACCTTGCATG
ATAACCTAGCTAGATTTCTAGCATTTGCTGTATTTATTAAAATTATTATTTTTTTGGTAA
AACATTAATAGTTTAAGCAGCATCATTTTTTTAAAAAATGTAATTGAATAAGTGTGAATG
CAGAAGCAAATATTGTCTGCCCTGTTAAACTTGGTGCCCATTAACAGTGTTTACACTGTT
CATCGTGCCTGTTAATGTAGTTTTAGTTACTGGAGCTTTTTTAAGACTAGATTTGGTTTT
GAGTTACATTTTTAAGAATGTGGGAATATATTTAAGTTTAATGTAGTCCTAGTGCTCTTG
AAATGGTGCCCCTTTCATTTGGTACATGATTTTTTTTCAAATCATATCTTCAAGTACTAT
AGTATTCTCTTACAGAAGAGGAGTTTTATAGXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
XGTCTTCATTTTACCTTTTTAATTGAAATGTCAAGTTTCCTGTTACACTATGGAAACCAA
GAAACATCAGACATCATTGCGTGTACAGACCTTTTGCATGGGTGAGTGGATGAAATGGAG
AACAGAGTGAGTGCTGTGAACGGTGTGAAATAGAAGCCAACTTCTAGTATGCTGTCTTCA
TCTCTGCAATAAACTAAACGTAAATAATGTAACTTTGTATAATTTAGTAGTATGTACTTG
GATTGTTTCTTTTTGAAAAGTGAGGATTTGTATTTTCTCATCTATTCTTTTTGGTGTTAA
TTAACTTGAGGGATTTCTTTTTTAAGTTTTTAATATCAAAAATTGCTATTGTATAGTTTG
CCTAAAAGGAAGTTGGAGTGAATATCATCTTTGAAGGACACTCAAATTTATAAGGTAGAA
GCAATTTCCCAGATATAGGCTGAACAGAAACATTTACTTTGCCAGAAGGAGCCTTTAGGA
GTATATGTGGGCTAATCAGAGGTTAATAATGTCCTCATCTCCTACTCTCCATTTAAAAAA
CAAACTTCATTGTAGTAAATTCAAATAGGAAAAAATGGGGGAGTAGTTAAGCAAAATCAA
CAGTCATCCTACTATGTTGAAAGAACCAATGTTAATATTTTGATAAATATCATTTGTCCT
TTTACTTTGCTAAATATGTATATTTTTATAAAAATGGGCTCATATTGTGCATACCATTTT
GTAACCTGCTTTTTTCACTTAACAATATATTGGGAACATCTTTAAAAAAAAAAAAAAAAA
AAAACTCGAC
>OriGene 5' read for NM_006166 unedited
AGGTCGAATTTGTATACGACTCCTATAGGCGGCNCGCGATTCGGCACGAGGCCGCGGCGG
AGGGAGGGGAGGCCGAGTCCTGGAAGCGGAGCTCCGCGCTGGGACTGGTTCCTTCGCAGC
CATTTTCTGTCCAACCAAACAGCCGATTGGAGACGGGAGCCAACCAGGGCTGCATTGGAG
GTTGAAATCACAAAGATTAGACACCTTTTTAGATAGGTGTTCTTCAGCACCACTGACAAC
ACGGTTCTGACAGTATTTCATGACAATGGATGGTGACAGTTCTACAACAGATGCTTCTCA
ACTAGGAATCTCTGCAGACTATATTGGAGGAAGTCATTATGTTATACAGCCTCATGATGA
TACTGAGGACAGCATGAATGATCATGAAGACACAAATGGTTCAAAAGAAAGTTTCAGAGA
ACAAGATATATATCTTCCAATAGCAAACGTGGCTAGGATAATGAAAAATGCCATACCTCA
AACGGGAAAGATTGCAAAAGATGCCAAAGAATGTGTTCAAGAATGTGTAAGTGAGTTCAT
CAGTTTTATAACATCTGAAGCAAGTGAAAGGTGCCATCAAGAGAAACGGAAAACAATCAA
TGGAGAAGATATTCTCTTTGCTATGTCTACTTTAGGCTTTGACAGTTATGTGGAACCTCT
GAAATTATACCTTCAGAAATTCAGAGAGGCTATGAAAGGAGAAAAGGGAATTGGGGGAGC
AGTCACAGCTACAGATGGACTAAGTGAAGAGCTTACAGAGGAGGCATTTACTAACCAGTT
ACCAGCTGGCTTAATAACCACAGACGGTCACAACAAATGTTAATGGTTTACACAACATCA
TATAACAGATTTTTTNTGTTCACCANATTCAGTTTCATGATCTGAACAATGATGAAAGGG
GGGAGTGT
>OriGene 3' read for NM_006166 unedited
ACCGCGGCCGCAATCTAGAGTCGAGTTTTTTTTTTTTTTTTTTTTTAAAAATGTTCCCAA
TATATTGTTAAGTGAAAAAAGCGGTTACAAAATGGTATGCACAATATGAGCCCATTTTTA
TAAAAATATACATATTTAGCAAAGTAAAAGGACAAATGATATTTATCAAAATATTAACAT
TGGTTCTTTCAACATAGTAGGATGACTGTTGATTTTGCTTAACTACTCCCCCATTTTTTC
CTATTTGAATTTACTACAATGAAGTTTGTTTTTTAAATGGAGAGTAGGAGATGAGGACAT
TATTAACCTCTGATTAGCCCACATATACTCCTAAAGGCTCCTTCTGGCAAAGTAAATGTT
TCTGTTCAGCCTATATCTGGGAAATTGCTTCTACCTTATAAATTTGAGTGTCCTTCAAAG
ATGATATTCACTCCAACTTCCTTTTAGGCAAACTATACAATAGCAATTTTTGATATTAAA
AACTTAAAAAAGAAATCCCTCAAGTTAATTAACACCAAAAAGAATAGATGAGAAAATACA
AATCCTCACTTTTCAAAAAGAAACAATCCAAGTACATACTACTAAATTATACAAAGTTAC
ATTATTTACGTTTAGTTTATTGCAGAGATGAAGACAGCATACTAGAAGTTGGCTTCTATT
TCACACCGTTCACAGCACTCACTCTGTTCTCCATTTCATCCACTCACCCATGCAAAAGGT
CTGTACACCCAATGATGCCTGATGGTTCTTGCGTTCCATAGCGCAACAAGAAAACTCGAC
ATTTCAATTATAAAGGGTAAATGAAGACCTTAACCATCANACTATTAAACTGCTCTTNTG
TAAGAGGATCCTATATTACTTGAAAATTTAATTGAAAAAAAATCATGTCCCAAATGAAGG
GGCCCCTTTCAGAGCCTAGGACTACCTTAACTTAATTATT
Restriction Sites NotI-NotI     
ACCN NM_006166
ORF Size 624 bp
Insert Size 2850
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_006166.3, NP_006157.1
RefSeq Size 3482
RefSeq ORF 624
Locus ID 4801
Domains CBFD_NFYB_HMF
Protein Families Transcription Factors
Protein Pathways Antigen processing and presentation
Gene Summary The protein encoded by this gene is one subunit of a trimeric complex, forming a highly conserved transcription factor that binds with high specificity to CCAAT motifs in the promoter regions in a variety of genes. This gene product, subunit B, forms a tight dimer with the C subunit, a prerequisite for subunit A association. The resulting trimer binds to DNA with high specificity and affinity. Subunits B and C each contain a histone-like motif. Observation of the histone nature of these subunits is supported by two types of evidence; protein sequence alignments and experiments with mutants. [provided by RefSeq, Jul 2008]

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