Dnmt1 (BC053047) Mouse Tagged ORF Clone

CAT#: MR212057

  • TrueORF®

Dnmt1 (Myc-DDK-tagged) - Mouse DNA methyltransferase (cytosine-5) 1 (cDNA clone MGC:62302 IMAGE:5709259)

ORF Plasmid: DDK tGFP



  "BC053047" in other vectors (4)

Need custom modification / cloning service?
Get a free quote

Mouse Protein / Lysate Request

CNY 11,136.00


货期*
现货

规格
    • 10 ug

Product images

经常一起买 (5)
pCMV6-Entry, mammalian vector with C-terminal Myc- DDK Tag, 10ug
    • 10 ug

CNY 5,420.00


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


DDK Rabbit monoclonal antibody, recognizing both N- and C-terminal tags
    • 30 ul

CNY 300.00


Rabbit Polyclonal Anti-Dnmt1 Antibody
    • 50 ug

CNY 4,628.00

Specifications

Product Data
Type Mouse Tagged ORF Clone
Tag Myc-DDK
Synonyms Dnmt, MTase, Dnmt1o
Vector pCMV6-Entry
E. coli Selection Kanamycin (25 ug/mL)
Mammalian Cell Selection Neomycin
Sequence Data
>MR212057 representing BC053047
Red=Cloning site Blue=ORF Green=Tags(s)

TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC
GCCGCGATCGCC

ATGCCAGCGCGAACAGCTCCAGCCCGAGTGCCTGCGCTTGCCTCCCCGGCAGGCTCGCTCCCGGACCATG
TCCGCAGGCGGCTCAAAGACTTGGAAAGAGATGGCTTAACAGAAAAGGAGTGTGTGAGGGAGAAATTAAA
CTTACTGCATGAATTCCTGCAAACAGAAATAAAAAGCCAGTTGTGTGACTTGGAAACCAAATTACATAAA
GAGGAATTATCTGAGGAAGGCTACCTGGCTAAAGTCAAGTCCCTCTTAAATAAGGATTTGTCCTTGGAGA
ACGGAACACACACTCTCACTCAAAAAGCCAACGGTTGTCCCGCCAACGGGAGCCGGCCAACCTGGAGAGC
AGAAATGGCAGACTCAAATAGATCCCCAAGATCCAGGCCCAAGCCTCGGGGACCCAGGAGAAGCAAGTCG
GACAGTGACACCCTTTGTAAGGACACGAGACATACTGCAGTTGAAACTTCACCTAGTTCCGTGGCTACGA
GGAGAACCACCAGGCAGACCACCATCACGGCTCACTTCACGAAGGGCCCCACTAAACGGAAACCCAAGGA
AGAGTCGGAAGAGGGGAACTCGGCTGAGTCGGCTGCAGAGGAGAGAGACCAGGATAAGAAACGCAGAGTT
GTAGACACAGAGAGTGGTGCTGCAGCTGCTGTGGAGAAACTGGAAGAGGTAACAGCGGGAACCCAGCTGG
GTCCGGAAGAGCCATGTGAACAGGAAGATGACAACAGGAGTCTTCGACGTCACACCAGAGAGCTATCATT
GAGGCGGAAATCAAAGGAGGATCCAGACAGAGAAGCAAGACCGGAAACTCACTTGGACGAGGACGAGGAC
GGAAAAAAGGATAAAAGAAGTTCCAGACCCAGGAGCCAGCCCAGAGATCCAGCTGCCAAACGGAGACCCA
AGGAAGCAGAGCCAGAGCAGGTAGCTCCAGAGACTCCCGAGGACAGAGACGAGGATGAGAGGGAGGAGAA
GAGACGAAAAACGACACGTAAAAAACTGGAGTCACACACCGTTCCCGTTCAGAGCAGATCGGAGAGAAAA
GCCGCTCAAAGCAAAAGTGTGATCCCGAAGATCAACTCACCAAAGTGCCCCGAGTGTGGCCAGCACCTAG
ACGACCCTAACCTGAAGTACCAGCAGCACCCTGAGGATGCTGTGGATGAACCCCAGATGTTGACCAGTGA
GAAACTGTCCATCTACGACTCCACCTCGACCTGGTTTGATACTTATGAAGATTCTCCCATGCATAGGTTC
ACTTCCTTCAGTGTGTACTGCAGTCGCGGGCACCTGTGTCCTGTCGACACCGGTCTCATTGAGAAGAATG
TAGAGCTCTACTTTTCTGGGTGTGCCAAAGCAATTCATGACGAGAATCCATCTATGGAAGGTGGTATTAA
TGGCAAAAACCTCGGGCCAATCAATCAGTGGTGGCTCAGTGGCTTTGATGGTGGCGAGAAGGTGCTCATT
GGCTTCTCCACTGCATTTGCTGAATACATTTTGATGGAGCCCAGCAAAGAGTATGAGCCAATATTTGGGC
TGATGCAGGAGAAAATTTACATCAGCAAGATTGTTGTTGAGTTCCTGCAAAACAATCCTGATGCTGTATA
TGAAGACCTGATCAATAAGATTGAGACCACTGTTCCTCCTTCTACCATTAATGTGAACCGGTTCACAGAG
GACTCCCTCTTACGCCACGCCCAGTTTGTAGTGAGCCAGGTAGAGAGTTACGACGAAGCCAAGGACGATG
ATGAGACCCCCATCTTCTTGTCTCCCTGTATGAGAGCCCTGATCCATTTGGCTGGTGTCTCCCTGGGACA
GAGGCGAGCAACAAGGCGCGTCATGGGTGCTACCAAGGAGAAGGACAAAGCACCCACGAAAGCCACCACC
ACCAAGCTGGTCTATCAGATCTTTGACACTTTCTTCTCAGAGCAGATTGAGAAGTATGATAAGGAGGACA
AGGAGAATGCCATGAAGCGCCGCCGCTGTGGTGTCTGTGAGGTCTGTCAGCAGCCTGAGTGTGGGAAGTG
CAAGGCGTGCAAAGATATGGTGAAGTTTGGTGGCACTGGACGGAGTAAGCAGGCTTGCCTCAAGAGGAGG
TGTCCTAACTTGGCGGTGAAGGAGGCAGACGACGATGAAGAGGCTGATGATGATGTGTCAGAGATGCCAT
CACCCAAAAAGCTGCATCAGGGGAAGAAGAAGAAGCAGAACAAGGACCGCATCTCCTGGCTTGGGCAGCC
TATGAAGATTGAAGAGAATAGAACTTACTATCAGAAGGTGAGCATCGATGAGGAGATGCTAGAGGTGGGC
GACTGCGTCTCGGTCATTCCAGATGATTCCTCCAAACCACTCTATCTAGCCAGGGTCACAGCTCTGTGGG
AAGACAAAAATGGTCAGATGATGTTCCATGCGCACTGGTTCTGCGCTGGGACAGACACAGTCCTGGGAGC
CACCTCCGACCCCCTGGAACTGTTCCTGGTGGGCGAGTGCGAAAACATGCAGCTTTCCTACATCCACAGC
AAGGTCAAGGTCATCTACAAAGCCCCTTCTGAAAACTGGGCCATGGAGGGAGGCACAGACCCTGAGACCA
CACTGCCTGGGGCTGAGGATGGCAAGACTTACTTCTTCCAGCTCTGGTACAACCAGGAGTACGCAAGGTT
TGAATCCCCACCCAAGACCCAGCCGACCGAGGACAACAAGCACAAGTTCTGCCTATCTTGTATCCGGCTG
GCTGAGCTGAGACAAAAAGAAATGCCCAAGGTCCTGGAACAAATTGAGGAGGTGGATGGCCGGGTCTACT
GCAGTTCCATCACCAAGAATGGTGTTGTCTACCGACTGGGTGACAGTGTGTACCTTCCTCCCGAGGCCTT
TACTTTCAACATCAAAGTGGCTAGCCCCGTGAAACGCCCAAAGAAGGATCCTGTGAACGAGACCCTGTAC
CCTGAGCACTACCGCAAGTATTCTGACTACATCAAGGGGAGCAACCTGGATGCTCCAGAGCCCTATCGCA
TCGGTCGGATAAAAGAGATCCACTGTGGCAAGAAGAAAGGCAAGGTCAACGAGGCAGACATCAAGCTGAG
GCTCTACAAGTTCTACAGGCCTGAGAATACCCACAGGTCCTACAACGGATCCTATCACACTGACATCAAC
ATGCTTTACTGGAGCGACGAGGAAGCTGTGGTGAACTTCAGCGACGTGCAGGGCCGCTGTACCGTGGAGT
ACGGGGAAGACCTACTTGAGAGCATCCAGGATTATTCACAAGGGGGCCCTGACCGCTTCTACTTCCTCGA
GGCCTACAATTCAAAGACCAAGAACTTTGAAGACCCACCAAACCATGCCCGCAGCCCTGGGAACAAAGGG
AAAGGGAAGGGGAAAGGGAAGGGGAAGGGGAAGCATCAGGTGTCAGAGCCCAAAGAGCCTGAGGCAGCCA
TCAAACTGCCCAAGCTCCGGACCCTGGATGTGTTTTCCGGCTGTGGAGGGTTATCGGAAGGATTCCACCA
AGCAGGCATCTCGGAAACGCTGTGGGCCATCGAGATGTGGGACCCGGCAGCCCAGGCATTTCGGCTGAAC
AACCCCGGCACCACAGTGTTCACAGAGGACTGCAACGTGCTTCTTAAGCTGGTCATGGCTGGGGAGGTGA
CCAACTCTCTGGGCCAAAGGCTGCCACAGAAGGGCGATGTGGAGATGCTGTGTGGTGGGCCACCCTGCCA
GGGCTTCAGTGGCATGAACCGCTTCAACTCCCGCACTTACTCCAAGTTCAAAAACTCCCTAGTGGTCTCC
TTCCTCAGCTACTGTGACTACTACCGGCCTCGGTTCTTCCTTCTGGAGAACGTCAGGAACTTCGTGTCCT
ACAGACGCTCCATGGTGCTGAAGCTCACACTGCGCTGCCTGGTCCGCATGGGCTACCAGTGCACCTTTGG
TGTGCTCCAGGCTGGACAGTATGGCGTGGCCCAGACACGAAGGAGGGCCATCATCTTGGCTGCAGCCCCA
GGAGAAAAGCTGCCTCTGTTCCCAGAGCCTCTGCATGTGTTTGCGCCCCGTGCCTGCCAGCTGAGCGTTG
TGGTGGATGACAAGAAGTTTGTTAGCAACATAACGAGGCTGAGCTCGGGGCCCTTCCGAACCATCACCGT
GCGAGACACCATGTCTGACCTCCCCGAGATCCAGAATGGAGCCTCGAATTCTGAGATCCCCTACAATGGA
GAGCCACTGTCCTGGTTCCAGAGGCAGCTGCGAGGATCACACTACCAGCCCATCCTCAGGGACCATATCT
GCAAGGACATGAGCCCACTGGTGGCTGCCCGCATGCGGCACATCCCACTGTTCCCAGGATCAGATTGGCG
TGACCTGCCCAACATACAGGTGCGGCTGGGAGATGGCGTCATAGCCCATAAGCTACAGTACACCTTTCAT
GATGTGAAAAATGGCTACAGCAGCACCGGTGCCCTGCGTGGAGTCTGTTCCTGTGCAGAAGGCAAGGCCT
GCGACCCTGAGTCCAGGCAATTCAGCACCCTCATCCCCTGGTGCCTGCCGCACACTGGGAACCGGCACAA
CCACTGGGCTGGCCTCTACGGGCGTCTGGAGTGGGATGGCTTCTTCAGCACCACTGTCACCAACCCTGAG
CCCATGGGCAAGCAGGGTCGGGTGCTCCACCCGGAGCAGCACCGGGTCGTGAGTGTTCGGGAATGTGCCC
GCTCCCAGGGCTTTCCAGATAGCTACCGGTTCTTCGGCAACATCCTGGACAGACACCGGCAGGTGGGTAA
TGCTGTGCCACCACCCCTGGCCAAAGCCATTGGCCTGGAGATTAAGCTCTGCCTGCTGTCCAGTGCTCGG
GAGAGCGCATCAGCTGCAGTTAAAGCAAAAGAGGAGGCTGCTACCAAGGAC


ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGATT
ACAAGGATGACGACGATAAG
GTTTAA
>MR212057 representing BC053047
Red=Cloning site Green=Tags(s)

MPARTAPARVPALASPAGSLPDHVRRRLKDLERDGLTEKECVREKLNLLHEFLQTEIKSQLCDLETKLHK
EELSEEGYLAKVKSLLNKDLSLENGTHTLTQKANGCPANGSRPTWRAEMADSNRSPRSRPKPRGPRRSKS
DSDTLCKDTRHTAVETSPSSVATRRTTRQTTITAHFTKGPTKRKPKEESEEGNSAESAAEERDQDKKRRV
VDTESGAAAAVEKLEEVTAGTQLGPEEPCEQEDDNRSLRRHTRELSLRRKSKEDPDREARPETHLDEDED
GKKDKRSSRPRSQPRDPAAKRRPKEAEPEQVAPETPEDRDEDEREEKRRKTTRKKLESHTVPVQSRSERK
AAQSKSVIPKINSPKCPECGQHLDDPNLKYQQHPEDAVDEPQMLTSEKLSIYDSTSTWFDTYEDSPMHRF
TSFSVYCSRGHLCPVDTGLIEKNVELYFSGCAKAIHDENPSMEGGINGKNLGPINQWWLSGFDGGEKVLI
GFSTAFAEYILMEPSKEYEPIFGLMQEKIYISKIVVEFLQNNPDAVYEDLINKIETTVPPSTINVNRFTE
DSLLRHAQFVVSQVESYDEAKDDDETPIFLSPCMRALIHLAGVSLGQRRATRRVMGATKEKDKAPTKATT
TKLVYQIFDTFFSEQIEKYDKEDKENAMKRRRCGVCEVCQQPECGKCKACKDMVKFGGTGRSKQACLKRR
CPNLAVKEADDDEEADDDVSEMPSPKKLHQGKKKKQNKDRISWLGQPMKIEENRTYYQKVSIDEEMLEVG
DCVSVIPDDSSKPLYLARVTALWEDKNGQMMFHAHWFCAGTDTVLGATSDPLELFLVGECENMQLSYIHS
KVKVIYKAPSENWAMEGGTDPETTLPGAEDGKTYFFQLWYNQEYARFESPPKTQPTEDNKHKFCLSCIRL
AELRQKEMPKVLEQIEEVDGRVYCSSITKNGVVYRLGDSVYLPPEAFTFNIKVASPVKRPKKDPVNETLY
PEHYRKYSDYIKGSNLDAPEPYRIGRIKEIHCGKKKGKVNEADIKLRLYKFYRPENTHRSYNGSYHTDIN
MLYWSDEEAVVNFSDVQGRCTVEYGEDLLESIQDYSQGGPDRFYFLEAYNSKTKNFEDPPNHARSPGNKG
KGKGKGKGKGKHQVSEPKEPEAAIKLPKLRTLDVFSGCGGLSEGFHQAGISETLWAIEMWDPAAQAFRLN
NPGTTVFTEDCNVLLKLVMAGEVTNSLGQRLPQKGDVEMLCGGPPCQGFSGMNRFNSRTYSKFKNSLVVS
FLSYCDYYRPRFFLLENVRNFVSYRRSMVLKLTLRCLVRMGYQCTFGVLQAGQYGVAQTRRRAIILAAAP
GEKLPLFPEPLHVFAPRACQLSVVVDDKKFVSNITRLSSGPFRTITVRDTMSDLPEIQNGASNSEIPYNG
EPLSWFQRQLRGSHYQPILRDHICKDMSPLVAARMRHIPLFPGSDWRDLPNIQVRLGDGVIAHKLQYTFH
DVKNGYSSTGALRGVCSCAEGKACDPESRQFSTLIPWCLPHTGNRHNHWAGLYGRLEWDGFFSTTVTNPE
PMGKQGRVLHPEQHRVVSVRECARSQGFPDSYRFFGNILDRHRQVGNAVPPPLAKAIGLEIKLCLLSSAR
ESASAAVKAKEEAATKD

TRTRPLEQKLISEEDLAANDILDYKDDDDKV
Chromatograms CHROMATOGRAMS
Sequencher program is needed, download here.
Restriction Sites SgfI-MluI      Cloning Scheme for this gene      Plasmid Map     
ACCN BC053047
ORF Size 4881 bp
OTI Disclaimer The molecular sequence of this clone aligns with the gene accession number as a point of reference only. However, individual transcript sequences of the same gene can differ through naturally occurring variations (e.g. polymorphisms), each with its own valid existence. This clone is substantially in agreement with the reference, but a complete review of all prevailing variants is recommended prior to use. More info
OTI Annotation This clone was engineered to express the complete ORF with an expression tag. Expression varies depending on the nature of the gene.
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.
Note Plasmids are not sterile.  For experiments where strict sterility is required, filtration with 0.22um filter is required.
Reference Data
RefSeq BC053047.1
RefSeq Size 5249 bp
RefSeq ORF 4883 bp
Locus ID 13433
MW 184 kDa
Gene Summary This gene encodes a methyltransferase that preferentially methylates cytosines of CpG residues in hemimethylated DNA to generate fully methylated CpG base pairs during DNA replication. This enzyme plays roles in diverse cellular processes including cell cycle regulation, DNA repair, and telomere maintenance. The encoded protein is composed of an N-terminal domain with a nuclear localization sequence and replication fork-targeting domain, a DNA-binding CXXC domain, two bromo-adjacent homology domains, and a C-terminal catalytic domain. Mouse embryonic stem cells mutant for this gene are viable, but when introduced into the germ line, cause a recessive lethal phenotype with mutant embryos displaying stunted growth and developmental defects. Alternative splicing results in multiple transcript variants. [provided by RefSeq, Sep 2015]
*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...