Jmjd1c (NM_207221) Mouse Untagged Clone

CAT#: MC225348

Jmjd1c (untagged) - Mouse jumonji domain containing 1C (Jmjd1c), (10ug)



  "NM_207221" in other vectors (2)

CNY 40,570.00


货期*
13周

规格
    • 10 ug

Product images

经常一起买 (3)
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 Mouse Untagged Clone
Tag Tag Free
Synonyms 5430433L24Rik; D630035I23Rik; Jmjdic; TRIP8
Vector pCMV6-Entry
E. coli Selection Kanamycin (25 ug/mL)
Mammalian Cell Selection Neomycin
Sequence Data
>MC225348 representing NM_207221
Red=Cloning site Blue=ORF Orange=Stop codon

TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC
GCCGCGATCGCC

ATGGCGGTGGAGACGCGGCCCGAGCTGGTGGGGAAGCGGTTCCTGTGCGTGGCGGCCGGCGAGGACGCGC
GTCCGGAGCGCGGGCAGAGCGGCTGCGGGCGCGGCTGGCGGGCGGGGGTCATCCGAGCCGTGTCCCACCG
CGACCGCGGCCACCCGGACCTGGCGGTCTACGTGGAATTTGATGACCTTGAGTGGGATAAACGGGAGTGG
GTTAGAGTTTATGAAGATTTTTCAACTTTCTTGGTGGAATATCACTTAATCTGGGCCAAAAGGAAGGACC
CTAGCCAGACTCAGGGATCAAAGAGCAGACAAATTCAGTGGCCTGCACTGACCTTCAAACCATTGGTTGA
AAATAGTATACCTAGTTCTATCACTGCAGTAGAATTCCTTATAGATAAGCAACTGGATTTTTTAACAGAA
GATAGTGCCTTTCAGCCATACCAGGACGACATAGACAGCTTAAAGCCCGTACTCAGGGACAACCCACAGC
TGCACGCGGAAGTGAAAGTCTGGGTGAAGGAACAGAAGGTCCAGGAGATTTTTATGCAAGGTCCTTATTC
ATTAAATGGATACAGAGTGAGAGTCTATAGACAAGATTCTGCCACCCAGTGGTTTACTGGCATAATTACT
CATCATGATCTCTTCACCCGCACCATGATCGTTATGAATGATCAGGTACTAGAACCACAGAATGTCGATC
CTTCTATGGTTCAAATGACCTTTCTAGATGATGTCGTTCACTCTTTGTTAAAAGGTGAAAATATTGGCAT
TACATCACGGCGAAGGTCTCGTGCCAGTCAAAATATCAGCACTGTTCACGGTCATTATACACGTGCTCAA
GCAAATAGTCCCAGACCAGCAATGAACTCTCAAGCTGCTGTACCAAAACAGAACACACACCAGCAACAGC
AACAAAGAAGTATTCGTCCAAATAAGAGGAAGGGTTCAGATAGCAGCATACCCGATGAAGAGAAGATGAA
GGAAGATAAATATGATTGTGTATCACGAGGAGAAAATCCTAAAGGTAAGAACAAGCACGTGGTGACAAAA
CGGCGGAAACCTGAGGAGGCCGAGAAGAGGCTGAGCATGAAAAGGCTCCGGACAGACAATGCCTCTGACG
CCTCCGAGAGCAGTGACGCAGAGAGCTCCAGCAAGAGAGTGACTGAGACTTCCTCCTCTGAACCAATGCC
AGAGTATGAACCGAAAAATAAAGTCACCTCAAAGGTAAATGGAGAGGAGGGACAGTCCCAGGCTGCTGAA
GAGGCAGGAGAAGAGACCCTGATAGATACTCGGCCTCCCTGGGACCAGATGCAGGAAGATAAAAACCACA
ACGAAGGGGAGAAGCCCAAGTCCACGGACAGCCACCTTCAAGACAAAATGACTCTCCGTTCATCTGAGCA
AGCCACAGTTGCTGACCACAATTCTAATGATTCAGTCCTTCAAGAATGCAATGTGGAAAACCAACGCACA
GTGGAATTATTACCAAAGGACAGGTTAGTGTCCAGAACACCGACACCCAAATGTGTTACGGATATCAAGA
ACGACACTCATTCTGAGAGGGCGGCTCAGGAAAATTTAAATACTTTTGGCCTCCAGACACCTGAGAACAT
GGATCCAAATGTTAGTGATTCCAAACATTCAAATGCTAAATACCTAGAAACAGCAAAGCAAGATTGTGAC
CAGAGCTGGGTCAGTGATGTAGTGAAAGTGGATTTAACTCAGTCAAGTGTTACAAATGCTCCTTCAGGAA
GTGATAAGCGCGATACGGAGAAAGAGAGAAATCACTATGTCTCATACATGTCTTCATTAAGTGCAGTTTC
TGTCACAGAGGATCAGCTACATAAACGAAGTCCACCCCCAGAAACTATAAAAGCTAAACTAACTACTTCA
GTAGATACCCAGAAGGCAAAATCCAGTTCTTCACCTGAAGTTGTTAAACCCAAGATCACTCATTCTCCTG
ATTCTGTGAAGTCTAAAGCTGCTTATGGGAACAGTCAAGCTGTTGGTGAGCGAAGGCTGGCAAATAAAAT
AGAGCATGAGTTATCCAGAGGTAGTTTCCATCCAGTTCCTACTCGAGGCAGTGCTTTGGAAACTACAAAG
AGCCCTCTTATCATTGATAAAAACGAGCACTTCACAGTCTATAGGGATCCTGCTCTTATTGGATCAGAAA
CAGGAGCTAATCACATTTCACCTTTTTTGAGCCAGCATCCTTTTTCTCTTCATTCCTCATCCCATAGAAC
CTGTTTAAACCCAGGTACCCATCACCCTGCCTTAACGCCAGGACCCCACTTACTAGCTGGGTCAACTAGT
CAAACTCCATTACCTACCATTAACACTCACCCTCTCACTAGTGGTCCACACCATCCTGTCCATCACCCTC
ATTTGCTTCCCACTGTGTTACCTGGAGTGCCTACTGCCTCTTTACTCGGTGGCCACCCACGTCTAGAGAG
TGCTCATGCAAGCAGCTTGAGCCATTTAGCACTAGCACACCAGCAGCAGCAACAGTTGTTACAGCACCAG
TCACCTCATCTTCTTGGACAAGCCCATCCTTCCGCTTCATATAATCAGCTTGGACTTTATCCAATTATTT
GGCAATATCCGAATGGAACACATGCATACTCAGGACTTGGTCTCCCTTCTTCTAAGTGGGTTCACCCAGA
AAATGCAGTTAATGCTGAAGCTTCATTAAGGAGGAATTCTCCCAGTCCTTGGCTACATCAACCCACTCCT
GTGACCTCAGCGGATGGTATTGGATTACTTAGTCACATTCCTGTCAGACCTTCCAGTGCAGAGCCTCATC
GACCTCACAAGATTACAGTGCATTCCAGTCCCCCACTGACAAAGACATTAGCAGATCACCACAAAGAAGA
ATTGGAGAGGAAAGCTTTTATGGAACCATTACGGTCTAATGCATCCACATCAGTAAAAGGTGACCTGGAT
CTTAATAGGTCACAGGCAGGAAAAGATTGTCACTTGCATAGGCATTTTGTGGGTCCAAGGCCACCCCAGG
AGACTGGAGAGAGACTGAACAAATACAAGGAGGAACATCGTCGGATTCTTCAGGAGAGTATTGATGTGGC
TCCATTTACAACCAAAATCAAGGGTCATGAGGTTGAAAGAGAGAATTACTCCAGAGTAGTACCATCATCT
TCTAGTCCTAAAAGCCATGCTATCAAACAAGATAAAGACGTAGACCGCTCCGTGTCAGAGATTTATAAGA
TGAAGCACTCAGTGCCTCAGAGTTTGCCCCAGAGTAACTACTTCACTACTTTATCTAATAGTGTGGTCAA
TGAGCCACCAAGATCCTACCCATCCAAAGAAGTTTCCAACATTTACACTGAGAAACAAAATAATAACCTT
TCTGCAACAGCCAATCCTCAAACTCATTCTTTTATATCATCTCTTTCGAAGCCTCCACCTTTGATTAAAC
ACCAACCAGAAAGTGAAAGTTTAGTGGGCAAGATACCAGACCATCTTCCCCATCAGAGTGCATCTCACTC
AGTAACAACGTTCAGAAGTGATTGTCGGAGCCCTACCCATCTGACTGTTTCTTCTACTAATGCACTCCGC
AGCATGCCTGCTCTGCACAGGGCACCAGTATTCCATCCACCAATCCACCACAGTTTGGAAAGAAAGGAAA
GCAGCTACAGTAGCCTTTCCCCTCCAACACTGACACCGGTGATGCCAGTAAATGCTGGTGGCAAAGTTCA
AGAATCTCAGAAGCCTCCAACTCTAATTCCTGAGCCAAAAGACTCTCAGTCAAATTTTAAGAATTCTTCT
GATCAGAGTCTAACGGAAATGTGGAGATCTAATAACAACCTCAACAGAGAGAAAGCTGAGTGGCCCGTGG
AAAAGAGTAGTGGAAAGTCCCAGGCTGCTGTGGCATCTGTCATTGTTCGTCCACCTTCTAGTACAAAAGT
TGATAGTGTGCCATCTGTACCATTAGCTTCCAAAGATCGAGTTTGTGAAAGATCTTCATCTGGGGCAAAT
AAAACAGATTACCTCAAACCAGAAGCCGGAGAGACTGGAAGAATTATTCTACCAAATGTGAATTTAGAAA
GTGCTCATGTGAAATCTGAAAAAAACTTTGAAGCTGTCTCCCAGGGCAACGTTCCTGTTTCAGTCATGTC
TGCTGTAAATGTAGTCTCTACTACCAAAGCAGATGTGTTCACATCTGCTGCCACTACCACCAGTGTCTCC
AGCTTGAGTAGTGCAGAAACAAGTTATTCTTTATCAAATACCATTTCGGCCTCTACACCCTTCGAATGTA
CTTCTTCAAAAAGTGTTGTTAGTCAGGCAGTGGCGCAAGCAAAGGACTGCACAGTCAGCACCGCGGTTCC
AGGCACTCTGGCCTGTAGTAAGACAGGAAGTGCTGTTCAGCCCGGCTCTGGCTTCTCAGGCACAACTGAT
TTTATTCATTTAAAAAAGCACAAGGCAGCGTTGGCTGCAGCTCAGTTTAAAAATAGTAGTGTCAGTGAGG
CTGAACTTAATACTGTGAGAAATCAGACAGTGGCAGCCTCTCTTCCCCTGGATAGCACCATGACCTGCAC
TGCAAGTAACAAAGCAATCTCTGTAGGAAATGGGCCAGCAGCCCAGTCCAGTCAGCCCAACTACCACACT
AAACTGAAGAAGGCCTGGCTCACCAGACATTCAGAAGAAGATAAAAATACTAATAAAATGGAAAATTCAG
GGAATTCTGTATCCGAAATTATTAAGCCATGTTCTGTCAACTTAATAGCCTCTACATCTAATGATATAGA
AAATCGTGCAGATGGCAGAGTCGCTGTAGATAAATATGGAAGAGATGAGAAAGTCAGCAGGAGAAAAGCC
AAAAGAACTTACGAATCTGGCTCTGAAAGTGGAGACTCAGATGAGAGCGAAAGCAAGTCGGAGCAGAGGA
CTAAACGGCAGCCGAAGCCAACTTATAAAAAGAAGCAGAACGACCTGCAGAAGAGGAAAGGCGAGGTCGA
AGAGGACTCGAAGCCTAATGGAGTTCTCAGCAGGAGCGCCAAGGACAAAAGTAAACTGAAGTTGCAGAAC
AGTAATACTGGCGTTCCTCGTTCCGTGCTGAAAGACTGGCGGAAGGTCAAGAAGCTGAAGCAAACTGGAG
AATCATTTCTGCAGGATGACTCCTGCTGTGAGATAGGTCCCAACTTACAGAAGTGCCGAGAGTGCAGACT
TATCCGGAGTAAGAAGGGGGAAGAATCAACTCACTCACCGGTGTTTTGTAGATTTTACTACTTTAGGAGA
TTGTCCTTTAGTAAGAATGGAGTAGTCAGAATAGATGGTTTCTCTTCTCCTGATCAATACGATGATGAAG
CCATGAGTTTATGGACCCATGAAAATTATGAAGATGATGAAGTAGATGTTGAAACCTCTAAGTATATCTT
GGACATAATAGGTGATAAGTTCTGTCAGTTAGTAACGTCTGAGAAAACAGCGTTGTCCTGGGTGAAAAAG
GATGCCAAAATTGCATGGAAAAGGGCAGTTCGAGGTGTCCGGGAGATGTGTGATGCGTGCGAGGCCACAC
TGTTCAACGTCCACTGGGTTTGCCGCAAGTGTGGATTTGTGGCTTGCTTGGACTGTTACAAGGCCAAGGA
AAGGAAGAGTTCTAGAGATAAAGAGCTGTATGCTTGGATGAAGTGTGTGAAAGGCCAGCCCCATGACCAT
AAGCATCTGATGCTGACTCAGATTATCCCTGGCTCTGTGTTGACAGACCTTCTTGATGCCATGCACATTC
TTAGGGAAAAATATGGTATTAAATCCCATTGTCACTGTACAAACAGACAGAATTTACAAGGTGGAAATGT
TCCTACAATGAATGGTGTGTCTCAAGTTCTACAGAATGTTCTTCACCACAGTAATAAGACTTCTGTGTCC
CTGCCTGAGTCTCAGCAGCAGAACAGCCCTCAGAAATCTCAGACTAACGGCAACAGTAGCCCTGGAAGTG
CAAGTACAGACAGCAGGTTGACACCTCCAGAGTCCCAGTCACCGCTGCACTGGCTAGCTGATCTTGCTGA
GCAGAAATCCAGAGAGGAAAAACAAGAAAACAAAGAATTTACTCTTGAAAGGGAAATCAAAGAAGATGGA
GACCAAGATGCCTCTGATTCTCCAAATGGCAGCACATCACCTCCAGCATCCCAGAGCAACGAACAGGGTT
CAACCCTACGTGATTTGCTGACCACAACAGCTGGCAAGCTTCGTGTGGGCTCTACAGATGCTGGCATTGC
CTTTGCGCCAGTATATTCAATGGGAACCTCAAGTGGCAAAGGTGGCCGGACTATGCCTAACATTCTTGAT
GACATCATTGCTTCAGTTGTTGAAAACAAAATTCCACCAAATAAAACCTCCAAGATCAATATAAAATCAG
AACCTAATGAAGAACCCAAAGAAAGCAGTCTGCCTGCCACGGATGAAAGCAATAAGTCTTATCGTGACAT
ACCACATTCTTGGATCTGTGACCAGCATATTTTATGGCTTAAAGATTACAAGAATAGTAATAACTGGAAG
CTTTTCAAAGAGTGCTGGAAACAAGGACAGCCTGCAGTGGTTTCCGGTGTGCATAAGAAAATGAACATTA
GCTTGTGGAAGGCAGAATCAATTAGTCTGGATTTTGGAGACCACCAAGCTGATCTCCTCAACTGCAAAGA
CAGCATTGTTTCCAATGCCAACGTTAAGGAGTTCTGGGATGGTTTTGAAGAAGTGTCAAAACGTCAAAAA
AACAAAGGTGGAGAAACAGTAGTATTAAAGTTGAAAGACTGCCCATCTGGGGAGGACTTCAAGGCCATGA
TGCCAACAAGATATGAAGACTTTTTAAGATGTCTGCCATTACCAGAATATTGCAACCCAGAAGGGAAGTT
CAATTTGGCCTCCCATTTGCCAGGGTTCTTTGTACGCCCTGATCTAGGACCCAGGCTGTGCAGTGCCTAT
GGTGTTGCTGCTGCTAAGGATCATGATATAGGAACCACAAATCTTCACATTGAAGCTTCTGATGTTGTCA
ATGTCCTAGTCTATGTCGGCATAGCAAAAGGAAATGGCGTCCTCTCAAAAGCAGGAATACTTAAGAAATT
TGAAGAAGAAGAATTAGATGATGTTTTAAGAAAAAGATTAAAGGATTCGAGTGAAATCCCTGGTGCTCTA
TGGCATATTTATGCTGGAAAAGATGTTGACAAGATAAGGGAATTTCTTCAAAAGATTTCAAAAGAACAAG
GCCTTGAAGTTCTGCCAGAGCATGATCCAATCCGGGACCAAAGCTGGTATGTGAATAGAAAGCTCCGCCA
GAGACTGCTTGAGGAATATGGGGTGAGAGCCTGCACTCTGATTCAGTTCCTTGGTGATGCCATTGTTTTG
CCAGCAGGAACACTTCACCAGGTACAAAATTTTCACAGCTGTGTTCAGGTGACCGAAGACTTTGTCTCTC
CAGAACATCTTGTACAGTCGTTTCACTTAACACAGGAGCTGAGGCTTTTGAAGGAAGAAATCAATTACGA
TGATAAACTCCAGGTTAAGAATATCTTGTATCATGCAGTCAAGGAAATGGTGAGAGCTCTGAAGATGCAT
GAAGATGAAGTAGAGGATATGGAAGACACCTAA


ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGATT
ACAAGGATGACGACGATAAGGTTTAA
Restriction Sites SgfI-MluI     
ACCN NM_207221
Insert Size 7593 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).
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_207221.2, NP_997104.2
RefSeq Size 8382 bp
RefSeq ORF 7593 bp
Locus ID 108829
Gene Summary Probable histone demethylase that specifically demethylates 'Lys-9' of histone H3, thereby playing a central role in histone code. Demethylation of Lys residue generates formaldehyde and succinate. May be involved in hormone-dependent transcriptional activation, by participating in recruitment to androgen-receptor target genes (By similarity).[UniProtKB/Swiss-Prot Function]
Transcript Variant: This variant (1) encodes the longer isoform (1). Sequence Note: The RefSeq transcript and protein were derived from genomic sequence to make the sequence consistent with the reference genome assembly. The genomic coordinates used for the transcript record were based on alignments.
*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.

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