hSET1 (SETD1A) (NM_014712) Human Untagged Clone

CAT#: SC304157

SETD1A (untagged)-Human SET domain containing 1A (SETD1A)



  "NM_014712" in other vectors (4)

CNY 32,780.00


货期*
4周

规格
    • 10 ug

Product images

经常一起买 (4)
SETD1A mouse monoclonal antibody, clone OTI7B7 (formerly 7B7)
    • 100 ul

CNY 1,999.00
CNY 2,700.00


TurboFectin Transfection Reagent (1 mL in 1 vial)
    • 1 ml in 1 vial

CNY 4,090.00


DH5α Chemically Competent Cells (≥10^8 cfu/μg of pUC19 DNA)
    • 5 x 200 ul

CNY 1,280.00


Forward sequencing primer VP1.5, Reverse sequencing primer XL39, 100pmoles each
    • 100 pmol

CNY 480.00

Specifications

Product Data
Type Human Untagged Clone
Tag Tag Free
Synonyms EPEDD; KMT2F; NEDSID; Set1; Set1A
Vector pCMV6-Entry
E. coli Selection Kanamycin (25 ug/mL)
Mammalian Cell Selection Neomycin
Sequence Data
>SC304157 representing NM_014712.
Blue=Insert sequence Red=Cloning site Green=Tag(s)

GCTCGTTTAGTGAACCGTCAGAATTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTG
GATCCGGTACCGAGGAGATCTGCCGCCGCGATCGCC
ATGGATCAGGAAGGTGGGGGAGATGGGCAGAAGGCCCCGAGCTTCCAGTGGCGGAACTACAAGCTCATC
GTGGATCCTGCCTTGGACCCTGCCCTGCGCAGGCCTTCTCAGAAGGTGTACCGCTATGATGGAGTCCAC
TTCAGTGTCAACGACTCAAAGTATATACCAGTCGAAGACCTCCAAGACCCCCGTTGCCATGTCAGGTCC
AAAAACAGAGACTTTTCCCTCCCAGTCCCTAAGTTTAAGCTGGACGAGTTCTATATTGGACAGATTCCA
CTGAAGGAAGTGACTTTTGCAAGGCTGAATGACAACGTGCGGGAGACCTTCCTGAAGGATATGTGCCGT
AAGTACGGTGAGGTGGAAGAGGTAGAGATCCTCCTTCACCCCCGTACGCGCAAGCACCTGGGCCTGGCC
CGTGTGCTCTTCACCAGCACTCGGGGCGCCAAGGAAACGGTCAAAAACCTCCACCTTACCTCCGTCATG
GGCAACATCATCCATGCCCAGCTTGACATCAAAGGACAACAACGAATGAAATACTATGAACTAATTGTC
AATGGCTCCTACACCCCTCAGACTGTGCCCACTGGGGGCAAGGCCCTGAGTGAGAAGTTCCAAGGCTCG
GGTGCAGCCACTGAGACGGCCGAATCCCGCCGCCGCTCTTCCTCTGACACAGCTGCCTACCCAGCAGGC
ACCACTGCGGTGGGCACTCCTGGCAACGGCACCCCCTGCTCCCAGGACACAAGCTTCTCCAGCAGCCGA
CAAGATACCCCATCTTCCTTTGGCCAGTTCACACCTCAGTCCTCCCAAGGAACCCCCTACACGTCTCGG
GGCAGCACCCCCTACTCTCAGGACTCTGCCTACTCCAGCAGCACCACTTCAACCTCCTTCAAGCCCCGG
CGGTCAGAGAACAGCTACCAAGATGCCTTTTCCCGCCGCCACTTCTCTGCATCTTCAGCCTCCACAACC
GCCTCCACGGCCATCGCCGCCACCACTGCAGCCACTGCCTCATCCTCCGCCTCTTCCTCCTCATTGTCC
TCGTCCTCCTCGTCATCCTCTTCCTCCTCGTCCTCTCAGTTTCGTAGTTCTGATGCAAACTACCCAGCG
TATTATGAAAGCTGGAATCGCTACCAGCGCCATACTTCCTACCCACCACGCCGGGCCACACGGGAGGAA
CCCCCTGGAGCCCCTTTTGCTGAAAATACAGCTGAGCGCTTCCCACCTTCTTACACCTCCTACCTGCCC
CCCGAGCCCAGCCGGCCCACCGACCAGGACTACCGGCCTCCTGCCTCAGAGGCTCCACCCCCGGAGCCT
CCAGAACCTGGTGGAGGCGGGGGTGGAGGAGGGCCCAGCCCTGAGAGAGAAGAAGTTCGGACTTCCCCC
CGCCCAGCCTCCCCTGCCCGCTCTGGCTCCCCAGCCCCGGAGACCACCAATGAGAGTGTGCCCTTCGCC
CAGCACAGCAGCCTGGATTCCCGCATCGAGATGCTGCTGAAGGAGCAGCGCTCCAAGTTTTCCTTCTTG
GCCTCTGACACAGAGGAGGAGGAAGAGAACAGCAGCATGGTCCTTGGGGCCAGAGATACAGGGAGTGAG
GTGCCTTCTGGGTCAGGGCATGGGCCCTGCACACCCCCTCCGGCCCCAGCTAATTTTGAGGATGTGGCA
CCTACAGGGAGCGGGGAGCCAGGGGCTACCCGGGAGTCTCCCAAGGCAAATGGACAGAACCAGGCTTCT
CCATGCTCTTCTGGAGACGACATGGAGATCTCCGACGACGACCGGGGTGGCTCACCCCCTCCGGCCCCG
ACGCCCCCTCAGCAGCCTCCGCCACCTCCCCCTCCCCCGCCGCCTCCTCCTCCCTACCTGGCGTCCCTT
CCTCTTGGTTATCCTCCCCACCAACCTGCCTACCTCCTCCCACCCAGACCTGATGGGCCGCCGCCCCCT
GAGTACCCCCCACCTCCTCCACCACCCCCGCACATCTATGACTTTGTGAACTCCTTGGAGCTCATGGAC
CGACTTGGGGCTCAGTGGGGAGGGATGCCCATGTCCTTCCAGATGCAGACCCAGATGTTAACTCGGCTC
CATCAGCTGCGGCAGGGCAAGGGATTGATTGCCGCCTCAGCTGGCCCCCCCGGTGGGGCCTTTGGGGAG
GCCTTCCTCCCGTTTCCACCCCCGCAGGAGGCAGCCTACGGCTTGCCGTATGCTCTATATGCACAGGGG
CAGGAGGGCAGAGGGGCATACTCACGGGAGGCCTACCACCTGCCCATGCCAATGGCAGCCGAGCCCCTG
CCCTCCTCCTCAGTCTCGGGAGAGGAGGCCCGGCTGCCACCCAGGGAAGAAGCAGAGCTGGCAGAGGGC
AAGACCCTCCCGACAGCAGGCACCGTGGGCCGTGTGCTCGCCATGCTGGTCCAGGAGATGAAGAGCATC
ATGCAGCGAGACCTCAACCGCAAGATGGTGGAGAACGTGGCCTTCGGAGCCTTTGACCAGTGGTGGGAG
AGCAAGGAGGAGAAGGCCAAGCCATTCCAGAACGCGGCCAAGCAGCAAGCCAAGGAGGAGGATAAAGAG
AAGACGAAGCTGAAGGAGCCTGGCCTGCTGTCCCTCGTGGACTGGGCCAAGAGCGGGGGCACTACGGGC
ATCGAGGCTTTCGCCTTTGGGTCAGGGCTGAGAGGGGCCCTGCGGCTGCCTTCATTCAAGGTAAAGCGG
AAAGAGCCATCGGAAATTTCCGAGGCCAGTGAGGAAAAGAGGCCTCGTCCCTCCACTCCTGCTGAGGAA
GATGAAGACGACCCTGAACAAGAGAAGGAGGCTGGAGAGCCAGGACGTCCGGGGACCAAGCCCCCGAAG
CGGGACGAAGAGCGAGGCAAGACCCAGGGCAAGCACCGCAAGTCCTTTGCTCTGGACAGCGAAGGGGAG
GAGGCATCCCAGGAGTCCTCCTCGGAGAAGGATGAGGAGGATGACGAGGAAGATGAGGAAGATGAAGAT
CGAGAGGAAGCTGTGGATACCACAAAGAAGGAGACAGAGGTGTCGGATGGCGAGGACGAGGAAAGCGAT
TCGTCTTCCAAATGTTCTCTGTATGCTGACTCAGATGGCGAAAATGACAGCACATCAGACTCCGAGAGC
AGCAGCTCTTCCAGCTCCTCATCCTCCTCCTCCTCCTCGTCCTCATCCTCCTCGTCCTCTTCATCCTCT
GAGTCCTCCTCTGAAGATGAAGAGGAAGAGGAGCGGCCAGCAGCCCTTCCCTCAGCCTCCCCGCCCCCC
AGAGAAGTCCCAGTGCCCACGCCAGCACCTGTGGAGGTGCCAGTGCCGGAAAGGGTTGCAGGCTCCCCA
GTCACACCCCTGCCCGAACAGGAGGCGTCTCCAGCAAGGCCTGCAGGCCCCACGGAGGAGTCACCCCCC
AGTGCGCCTCTGCGTCCCCCAGAACCACCTGCTGGGCCCCCGGCCCCTGCCCCACGCCCCGATGAGCGT
CCCTCTTCTCCCATCCCCCTCCTGCCCCCACCCAAGAAACGCCGGAAAACTGTCTCCTTCTCTGCCATC
GAGGTGGTGCCAGCCCCGGAGCCCCCTCCAGCCACACCGCCGCAGGCCAAGTTTCCCGGCCCAGCCTCC
CGCAAGGCTCCCCGGGGCGTGGAGCGGACCATCCGCAACCTGCCCCTGGACCACGCATCTCTGGTCAAG
AGTTGGCCCGAGGAGGTGTCCCGAGGAGGCCGGAGCCGGGCTGGAGGCCGAGGCCGCCTCACCGAGGAA
GAGGAGGCTGAGCCAGGGACAGAGGTGGACCTGGCGGTCCTGGCCGACCTGGCCCTGACCCCTGCCCGG
CGCGGGCTGCCTGCCCTGCCTGCTGTTGAAGACTCAGAGGCCACAGAGACATCGGACGAGGCCGAGCGC
CCTAGGCCCCTGCTCAGCCACATCCTCCTGGAGCACAACTATGCCCTGGCCGTCAAGCCCACGCCCCCT
GCGCCAGCCCTGCGGCCCCCGGAGCCAGTGCCCGCACCCGCCGCCCTCTTCAGTTCCCCAGCTGATGAG
GTCCTGGAGGCCCCCGAGGTGGTGGTGGCTGAGGCGGAGGAGCCCAAGCCGCAGCAACTGCAGCAGCAG
CGGGAGGAGGGCGAAGAGGAGGGGGAGGAAGAGGGGGAGGAAGAGGAGGAGGAGTCCTCTGACAGCAGC
AGCAGCAGCGATGGGGAGGGCGCCCTCCGGAGGCGCAGCCTCCGCTCCCACGCCCGGCGCCGCCGCCCT
CCGCCCCCACCCCCGCCGCCACCGCCCCGCGCCTACGAGCCACGCAGTGAGTTTGAACAGATGACCATC
CTGTATGACATTTGGAACTCGGGCCTGGACTCAGAGGACATGAGTTACCTGCGGCTTACGTACGAGCGG
CTGCTGCAGCAGACAAGCGGGGCTGACTGGCTCAACGACACTCACTGGGTCCATCACACAATCACCAAC
CTGACCACCCCAAAACGCAAGCGGCGGCCCCAGGATGGGCCCCGGGAGCACCAGACAGGCTCAGCCCGC
AGCGAAGGCTACTACCCCATCAGCAAGAAGGAGAAGGACAAGTACCTGGACGTGTGCCCAGTCTCGGCC
CGGCAGCTGGAGGGCGTGGACACTCAGGGGACGAACCGCGTGCTGTCCGAGCGCCGGTCCGAGCAGCGG
CGGCTGCTGAGCGCCATCGGTACCTCCGCCATCATGGACAGTGACCTGCTGAAACTCAACCAGCTCAAG
TTCCGGAAGAAGAAGCTCCGATTTGGCCGGAGCCGGATCCACGAGTGGGGTCTGTTTGCCATGGAACCC
ATTGCTGCTGACGAGATGGTCATCGAATACGTGGGTCAGAACATCCGTCAGATGGTGGCCGACATGCGG
GAGAAGCGCTACGTGCAGGAGGGCATTGGCAGCAGCTACCTGTTCCGGGTGGACCACGACACCATCATC
GATGCCACCAAGTGTGGCAACCTGGCCAGATTCATCAACCACTGCTGCACGCCTAACTGCTACGCCAAG
GTCATCACCATCGAGTCCCAGAAGAAGATCGTGATCTACTCCAAGCAGCCCATTGGCGTGGACGAGGAG
ATCACCTACGACTACAAGTTCCCACTGGAAGACAACAAGATCCCGTGTCTGTGTGGCACAGAGAGCTGC
CGGGGCTCCCTAAACTGA

ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGAT
TACAAGGATGACGACGATAAG
GTTTAAACGGCCGGC
Restriction Sites SgfI-MluI     
ACCN NM_014712
Insert Size 5124 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 This TrueClone is provided through our Custom Cloning Process that includes sub-cloning into OriGene's pCMV6 vector and full sequencing to provide a non-variant match to the expected reference without frameshifts, and is delivered as lyophilized plasmid DNA.
Product Components The ORF clone is ion-exchange column purified and shipped in a 2D barcoded Matrix tube containing 10ug of transfection-ready, dried plasmid DNA (reconstitute with 100 ul of water).
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_014712.2
RefSeq Size 6535 bp
RefSeq ORF 5124 bp
Locus ID 9739
UniProt ID O15047
Protein Families Druggable Genome
Protein Pathways Lysine degradation
MW 186 kDa
Gene Summary The protein encoded by this gene is a component of a histone methyltransferase (HMT) complex that produces mono-, di-, and trimethylated histone H3 at Lys4. Trimethylation of histone H3 at lysine 4 (H3K4me3) is a chromatin modification known to generally mark the transcription start sites of active genes. The protein contains SET domains, a RNA recognition motif domain and is a member of the class V-like SAM-binding methyltransferase superfamily. [provided by RefSeq, Dec 2016]
*Delivery time may vary from web posted schedule. Occasional delays may occur due to unforeseen complexities in the preparation of your product. International customers may expect an additional 1-2 weeks in shipping.

Other Versions

Customer Reviews 
Loading...