Madd (NM_001177720) Mouse Tagged ORF Clone

CAT#: MR219738

  • TrueORF®

Madd (Myc-DDK-tagged) - Mouse MAP-kinase activating death domain (Madd), transcript variant 11

ORF Plasmid: DDK tGFP



  "NM_001177720" in other vectors (3)

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Mouse Protein / Lysate Request

CNY 11,136.00


货期*
现货

规格
    • 10 ug

Product images

经常一起买 (4)
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

Specifications

Product Data
Type Mouse Tagged ORF Clone
Tag Myc-DDK
Synonyms 9630059K23Rik; IG20
Vector pCMV6-Entry
E. coli Selection Kanamycin (25 ug/mL)
Mammalian Cell Selection Neomycin
Sequence Data
>MR219738 representing NM_001177720
Red=Cloning site Blue=ORF Green=Tags(s)

TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC
GCCGCGATCGCC

ATGGTGCAAAAGAAGTTCTGCCCTCGGTTACTTGACTATCTCGTGATCGTAGGGGCGAGGCACCCAAGCA
GTGACAGTGTGGCTCAGACTCCTGAGCTGCTGCGGAGGTACCCACTAGAGGATCACCCAGAGTTCCCCCT
GCCCCCAGATGTGGTGTTCTTCTGCCAGCCAGAAGGATGTCTGAGTGTGCGGCAGCGGCGGATGAGCCTT
CGGGACGATACCTCTTTTGTCTTCACCCTAACCGATAAGGACACCGGAGTCACCCGCTATGGCATCTGTG
TCAACTTCTACCGTTCCTTCCAAAAGCGAATGCCAAAGGAAAAGGTGGAAGGCGGAGCAGGACCCCGTGG
GAAGGAAGGCGCTCACACCTCTGGTGCCTCAGAAGAGGCTGCCGCTGGGAGCTCAGAGAGTGGCTCAACC
TTGCAGCCGCCTAGTGCTGACTCCACTCCTGACGTAAACCAGTCTCCTCGGGGCAAACGTAGGGCAAAAG
CGGGCAGCCGCTCCCGCAACAGTACCCTGACATCCCTGTGTGTGCTTAGCCACTACCCTTTCTTCTCTAC
CTTCAGAGAGTGTCTGTATACTCTCAAACGTTTGGTAGACTGCTGTAGTGAACGGCTGCTAGGCAAGAAA
CTGGGCATCCCTCGAGGTGTACAAAGGGACACCATGTGGCGAATCTTTACTGGATCACTGCTAGTGGAGG
AGAAGTCCAGTGCCCTTCTGCAAGACCTTCGAGAGATTGAGGCCTGGATCTATCGGTTGCTACGTTCCCC
AGTGCCTGTCTCTGGGCAGAAGCGAGTGGACATTGAGGTCCTGCCCCAGGAACTCCAGCAGGCCCTGACA
TTTGCTCTTCCAGATCCATCTCGATTCACCCTAGTAGATTTCCCTCTTCACCTTCCCTTGGAACTTCTGG
GTGTAGATGCTTGTCTTCAGGTGCTAACCTGCATCCTGTTGGAGCACAAGGTGGTGCTGCAGTCTCGAGA
CTACAATGCACTCTCCATGTCTGTGATGGCGTTCGTGGCAATGATCTACCCCCTGGAGTACATGTTCCCG
GTCATCCCGCTGCTTCCCACCTGCATGGCCTCGGCAGAGCAGCTACTCTTGGCTCCAACCCCATACATCA
TTGGAGTTCCTGCCAGCTTCTTCCTCTACAAGCTAGATTTCAAAATGCCCGATGACGTGTGGCTAGTGGA
TCTGGACAGCAATAGGGTGATTGCCCCCACCAATGCAGAAGTGCTACCCATCCTGCCAGAACCAGAATCA
TTAGAGCTGAAAAAACACTTAAAGCAGGCCTTAGCCAGCATGAGTCTCAACACCCAGCCCATTCTTAACC
TGGAGAAATTCCACGAGGGCCAGGAGATCCCGCTTCTCTTGGGAAGGCCATCTAATGACCTTCAGTCCAC
ACCTTCCACTGAATTCAACCCGCTCATTTATGGCAATGATGTAGATTCAGTCGACGTTGCAACGAGAGTG
GCCATGGTACGTTTCTTCAACTCTGCTAACGTGCTGCAGGGCTTTCAGATGCACACACGTACCCTGCGAC
TCTTCCCCCGGCCTGTGGTAGCTTTCCAAGCTGGCTCCTTTCTGGCCTCACGTCCCCGGCAGACTCCCTT
TGCTGAGAAACTGGCCAGGACCCAAGCTGTGGAGTATTTTGGAGAATGGATCCTGAACCCTTCTAACTAT
GCCTTCCAGCGGATTCACAACAATACGTTTGATCCGGCCCTTATTGGTGACAAGCCAAAGTGGTACGCTC
ACCAGCTGCAGCCCATCCATTATCGAGTCTATGATGGCAACTCTCAGCTGGCCGAGGCCCTGAGTGTGCC
CCCGGAGCGCGATTCTGACTCCGACCCGACGGAGGACAGTGGCAGTGATAGTCAGGATTATGATGACTCA
AGCTCTTCTTACTCCTCCCTTGGGGACTTTGTCAGTGAAATGATGAAATGTGACATCAATGGAGACACTC
CCAATGTGGATCCTCTGACCCATGCAGCCCTGGGAGATGCCAGTGAAGTGGAGATTGACGAGCTGCAGCC
CCAGAAGGAGGGAGAGGAACCCGGCCCAGACAGTGAGAACTCTCAGGAAAACCCTCCGCTGCGCTCCAGC
TCCAGCACCACGGCCAGCAGCAGCCCCAGCACCGTTGTCCACAGTGCCCACTCTGAAGCTGCTGACTCTA
CAGAGATGGGAGATAAGGCCACAGCAGGCATCTCCAAGCCCCTCCCTCCCGTGCCTCCCAGCATTTGCAA
ATCTACTGTGGACAGGAGACAGACAGAGACTGGAGAGGGGTCAGTGTGCCAGCGAACCTATGACAATCCA
TACTTCGAGCCCCAGTATGGCTTTCCCCCCGAGGAAGATGAGGAGGAGCAGGGGGAGAGCTACACTCCCC
GGTTCAGCCAGCATGTCAGTGGCAGTCGGGCTCAAAAGCTGCTGCGGCCCAACAGCTTGAAGCTGGCAAG
TGACTCAGACGCAGAGTCAGACTCGAGAGCAAGCTCTCCCAACTCCACTGTCTCTAACAACAGCACCGAG
GGCTTCGGGGGCATCATGTCTTTTGCTAGCAGCCTGTATCGGAACCATAGTACAAGCTTCAGTCTTTCAA
ACCTCACACTGCCCACCAAAGGTGCCCGCGAGAAGACGACACCATTCCCCAGCCTGAAAGGAAATAGGAG
GGCCTTAGTGGACCAGAAGTCATCTGTCATTAAACACAGCCCAACCGTGAAAAGAGAACCTTCATCCCCA
CAGGGCCGGTCGAGCAACTCTAGCGAGAACCAGCAGTTCCTGAAGGAAGTAGTCCATAGTGTGCTGGACG
GCCAGGGAGTGGGCTGGCTCAATATGAAGAAGGTACGCCGGCTCCTGGAGAGTGAGCAGCTTAGAGTCTT
TGTACTGAGCAAGCTGAATCGCGCAGTGCAGTCAGAGGATGACGCCCGGCAGGATGTCATCCAAGACGTG
GAGATCAGCCGGAAGGTGTACAAGGGGATGCTAGACCTCCTCAAGTGCACAGTCCTCAGCCTCGAGCAGT
CCTATGCCCACGCAGGTCTGGGTGGTATGGCCAGCATCTTTGGGCTTTTGGAGATTGCCCAGACCCACTA
CTATAGTAAAGAACCAGACAAACGGAAGAGAAGTCCGACAGAGAATGTAAATACCCCAGTTGGCAAGGAT
CCTGGTCTGGCTGGGCGGGGGGACCCAAAGGCAATGGCCCAGCTAAGGGTCCCTCAACTGGGCCCTCGGG
CACCAAGTGCTACAGGAAAGGGTCCTAAAGAACTGGATACCAGAAGTTTAAAGGAAGAGAATTTTGTAGC
ATCTGTTGAATTGTGGAACAAGCACCAGGAAGTGAAAAAGCAAAAGGCTTTGGAAAAACAGAGGCCAGAG
GGCATCAAGCCTGTCTTTGACCTGGGTGAGACAGAGGAGAAAAAGTCCCAGATGAGCGCAGACAGTGGTG
TGAGCCTGACATCTGCCTCCCAGAGGACTGATCAAGACTCTGTCATCGGTGTGAGTCCAGCTGTTATGAT
CCGAAGCTCAAGTCAGGATTCTGAAGTTAGCACCGTGGTGAGTAATAGTTCCGGAGAGACCCTTGGAGCT
GACAGTGACCTGAGCAGCAATGCAGGTGACGGGCCAGGAGGCGAAGGCAGCGCCCACCTGGCAAGTTCCC
GGGCCACTCTGTCCGACAGTGAAATCGAAACCAATTCTGCTACAAGCGCCATCTTTGGTAAAGCCCATAG
CTTGAAGCCAAAGGAGAAGCCGGCTGGTAGTCCGATTCGCTCTTCCGAAGACGTAAGCCAGCGAGTCTAT
CTCTATGAGGGACTGCTAGGAAGGGACAAAGGATCCATGTGGGACCAGCTAGAGGATGCCGCTATGGAGA
CCTTTTCTCTGAGCAAAGAACGTTCTACCTTATGGGACCAAATGCAGTTCTGGGAAGATGCATTCTTAGA
TGCTGTAATGTTGGAAAGAGAAGGAATGGGTATGGACCAGGGTCCTCAGGAAATGATCGACAGGTACCTC
TCCCTAGGGGAACACGACCGGAAGCGCCTGGAGGATGATGAAGACCGCTTGCTGGCCACACTTTTACACA
ACCTCATATCCTATATGCTGCTGATGAAGGTGAACAAGAATGACATCAGGAAGAAAGTACGGCGCCTAAT
GGGAAAGTCCCACATTGGGCTGGTGTACAGCCAGCAAGTCAATGAGGTGCTCGATCAGCTGAACAGCCTG
AATGGACGTGATCTCTCCATCCGGTCCAGCGGCAGCCGGCACATGAAGAAGCAGACTTTTGTTGTGCATG
CAGGGACGGACACAAATGGAGACATCTTTTTCATGGAAGTGTGTGATGACTGCGTGGTGTTGCGTAGTAA
CATTGGGACGGTGTACGAGCGCTGGTGGTATGAGAAGCTCATCAATATGACCTACTGTCCCAAGACCAAG
GTCCTGTGCTTATGGCGGAGAAATGGCTCTGAGACCCAGCTCAACAAGTTCTATACCAAGAAGTGTCGAG
AGCTGTACTACTGTGTGAAGGACAGCATGGAACGTGCTGCTGCCCGACAGCAAAGCATCAAACCTGGGCC
TGAGCTAGGCGGTGAGTTCCCTGTGCAGGACATGAAGACTGGAGAGGGTGGCTTGCTTCAAGTCACCCTG
GAAGGGATCAATCTCAAGTTCATGCACAACCAGGAGCGGAAGGTTTTCATAGAGCTGAATCACATTAAAA
AGTGCAATACAGTTCGAGGCGTCTTTGTCCTGGAAGAATTTGTTCCTGAAATTAAAGAAGTGGTGAGCCA
CAAGTACAAGACGCCAATGGCCCACGAGATCTGCTACTCTGTGTTGTGTCTCTTCTCGTATGTGGCCGCA
GTTCGTAGCAGTGAAGAAGACCTTCGAACCCCACCTCGGCCTGTCTCTAGC


ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGATT
ACAAGGATGACGACGATAAG
GTTTAA
>MR219738 representing NM_001177720
Red=Cloning site Green=Tags(s)

MVQKKFCPRLLDYLVIVGARHPSSDSVAQTPELLRRYPLEDHPEFPLPPDVVFFCQPEGCLSVRQRRMSL
RDDTSFVFTLTDKDTGVTRYGICVNFYRSFQKRMPKEKVEGGAGPRGKEGAHTSGASEEAAAGSSESGST
LQPPSADSTPDVNQSPRGKRRAKAGSRSRNSTLTSLCVLSHYPFFSTFRECLYTLKRLVDCCSERLLGKK
LGIPRGVQRDTMWRIFTGSLLVEEKSSALLQDLREIEAWIYRLLRSPVPVSGQKRVDIEVLPQELQQALT
FALPDPSRFTLVDFPLHLPLELLGVDACLQVLTCILLEHKVVLQSRDYNALSMSVMAFVAMIYPLEYMFP
VIPLLPTCMASAEQLLLAPTPYIIGVPASFFLYKLDFKMPDDVWLVDLDSNRVIAPTNAEVLPILPEPES
LELKKHLKQALASMSLNTQPILNLEKFHEGQEIPLLLGRPSNDLQSTPSTEFNPLIYGNDVDSVDVATRV
AMVRFFNSANVLQGFQMHTRTLRLFPRPVVAFQAGSFLASRPRQTPFAEKLARTQAVEYFGEWILNPSNY
AFQRIHNNTFDPALIGDKPKWYAHQLQPIHYRVYDGNSQLAEALSVPPERDSDSDPTEDSGSDSQDYDDS
SSSYSSLGDFVSEMMKCDINGDTPNVDPLTHAALGDASEVEIDELQPQKEGEEPGPDSENSQENPPLRSS
SSTTASSSPSTVVHSAHSEAADSTEMGDKATAGISKPLPPVPPSICKSTVDRRQTETGEGSVCQRTYDNP
YFEPQYGFPPEEDEEEQGESYTPRFSQHVSGSRAQKLLRPNSLKLASDSDAESDSRASSPNSTVSNNSTE
GFGGIMSFASSLYRNHSTSFSLSNLTLPTKGAREKTTPFPSLKGNRRALVDQKSSVIKHSPTVKREPSSP
QGRSSNSSENQQFLKEVVHSVLDGQGVGWLNMKKVRRLLESEQLRVFVLSKLNRAVQSEDDARQDVIQDV
EISRKVYKGMLDLLKCTVLSLEQSYAHAGLGGMASIFGLLEIAQTHYYSKEPDKRKRSPTENVNTPVGKD
PGLAGRGDPKAMAQLRVPQLGPRAPSATGKGPKELDTRSLKEENFVASVELWNKHQEVKKQKALEKQRPE
GIKPVFDLGETEEKKSQMSADSGVSLTSASQRTDQDSVIGVSPAVMIRSSSQDSEVSTVVSNSSGETLGA
DSDLSSNAGDGPGGEGSAHLASSRATLSDSEIETNSATSAIFGKAHSLKPKEKPAGSPIRSSEDVSQRVY
LYEGLLGRDKGSMWDQLEDAAMETFSLSKERSTLWDQMQFWEDAFLDAVMLEREGMGMDQGPQEMIDRYL
SLGEHDRKRLEDDEDRLLATLLHNLISYMLLMKVNKNDIRKKVRRLMGKSHIGLVYSQQVNEVLDQLNSL
NGRDLSIRSSGSRHMKKQTFVVHAGTDTNGDIFFMEVCDDCVVLRSNIGTVYERWWYEKLINMTYCPKTK
VLCLWRRNGSETQLNKFYTKKCRELYYCVKDSMERAAARQQSIKPGPELGGEFPVQDMKTGEGGLLQVTL
EGINLKFMHNQERKVFIELNHIKKCNTVRGVFVLEEFVPEIKEVVSHKYKTPMAHEICYSVLCLFSYVAA
VRSSEEDLRTPPRPVSS

TRTRPLEQKLISEEDLAANDILDYKDDDDKV
Chromatograms CHROMATOGRAMS
Sequencher program is needed, download here.
Restriction Sites SgfI-MluI      Cloning Scheme for this gene      Plasmid Map     
ACCN NM_001177720
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.
Reference Data
RefSeq NM_001177720.1, NP_001171191.1
RefSeq Size 5905 bp
RefSeq ORF 4884 bp
Locus ID 228355
UniProt ID Q80U28
MW 181 kDa
Gene Summary Plays a significant role in regulating cell proliferation, survival and death through alternative mRNA splicing. Converts GDP-bound inactive form of RAB3A, RAB3C and RAB3D to the GTP-bound active forms. Component of the TNFRSF1A signaling complex: MADD links TNFRSF1A with MAP kinase activation. Plays an important regulatory role in physiological cell death (TNF-alpha-induced, caspase-mediated apoptosis).[UniProtKB/Swiss-Prot Function]
*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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