Dscam (NM_133587) Rat Untagged Clone

CAT#: RN209167

Dscam (untagged ORF) - Rat Down syndrome cell adhesion molecule (Dscam), (10 ug)


  "NM_133587" in other vectors (1)

Reconstitution Protocol

USD 4,080.00

11 Weeks*

Size
    • 10 ug

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Specifications

Product Data
Type Rat Untagged Clone
Tag Tag Free
Symbol Dscam
Vector pCMV6-Entry
E. coli Selection Kanamycin (25 ug/mL)
Mammalian Cell Selection Neomycin
Sequence Data
>RN209167 representing NM_133587
Red=Cloning site Blue=ORF Orange=Stop codon

TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC
GCCGCGATCGCC

ATGTGGATACTGGCTCTCTCCTTGTTCCAGAGCTTCGCGAATGTTTTCAGTGAAGAGCCCCACTCCAGCC
TCTACTTTGTCAATGCATCGCTGCAAGAGGTAGTGTTTGCAAGCACGTCGGGGACCCTGGTGCCCTGCCC
GGCTGCAGGCATCCCTCCTGTGACTCTCAGATGGTACCTAGCAACGGGCGAGGAGATCTACGATGTCCCT
GGGATCCGCCACGTCCATCCCAATGGCACTCTCCAAATTTTCCCCTTTCCTCCTTCAAGCTTCAGCACCT
TAATCCATGATAATACTTACTATTGCACAGCTGAAAACCCTTCAGGGAAAATTAGAAGTCAGGATGTCCA
CATCAAGGCTGTTTTACGGGAGCCCTATACAGTCCGTGTGGAGGACCAGAAAACCATGAGAGGCAATGTC
GCGGTGTTCAAGTGCATTATCCCCTCCTCGGTGGAGGCGTACGTCACTGTCGTCTCATGGGAGAAAGACA
CGGTTTCACTTGTCTCAGGATCTAGATTTCTCATCACATCCACGGGAGCCTTGTATATTAAAGATGTACA
GAACGAAGATGGGCTGTACAACTACCGCTGCATCACGCGGCACAGATACACAGGGGAGACGAGACAAAGC
AACAGCGCGAGACTGTTCGTGTCAGACCCAGCGAACTCAGCCCCATCCATCCTGGACGGGTTTGACCACC
GCAAAGCCATGGCAGGGCAGCGTGTGGAGCTGCCGTGCAAAGCTCTTGGGCACCCCGAGCCGGACTACCG
CTGGCTGAAAGATAACATGCCCCTGGAACTTTCCGGAAGGTTCCAAAAGACAGTGACCGGGCTGCTCATT
GAGAACAGCCGCCCTTCAGACTCAGGCAGCTACGTGTGTGAAGTATCCAACCGATACGGCACTGCCAAGG
TGATAGGCCGCCTGTACGTGAAACAGCCACTGAAAGCCACCATCAGTCCCAGAAAGGTTAAAAGCAGTGT
GGGCAGCCAGGTCTCCTTGTCCTGCAGTGTGACAGGAAACGAAGACCAGGAGCTCTCCTGGTACAGAAAT
GGTGAAATCCTCAACCCTGGGAAAAACGTGAGGATCACAGGACTCAACCACGCGAACCTTATAATGGATC
ACATGGTCAAGAGTGATGGGGGCGCCTACCAGTGCTTTGTTCGCAAGGACAAGCTATCTGCTCAAGACTA
TGTCCAGGTGGTCCTTGAAGACGGAACTCCCAAAATCATTTCCGCCTTTAGCGAGAAAGTGGTGAGCCCG
GCAGAGCCAGTGTCCCTCGTGTGTAATGTGAAGGGTACACCCTTGCCCACGGTCACCTGGACCCTGGACG
ATGACCCCATCCTCAAGGGCAGCGGCCACCGCATCAGCCAAATGATCACGTCCGAGGGGAACGTGGTCAG
CTACCTGAATATCTCCAGCTCCCAGGTCCGGGATGGGGGTGTCTACCGCTGCACTGCCAACAACTCGGCT
GGAGTCGTCCTGTACCAGGCTCGAATAAACGTAAGAGGGCCGGCAAGCATCAGACCGATGAAAAACATCA
CTGCGATAGCAGGGCGTGACACGTACATCCACTGCCGTGTGATTGGCTACCCTTATTACTCCATCAAGTG
GTACAAGAACGCTAACCTGCTTCCTTTCAACCACCGCCAGGTGGCGTTTGAGAACAATGGGACTCTGAAA
CTCTCAGATGTGCAGAAAGAAGTTGACGAGGGAGAGTACACATGTAACGTGCTGGTGCAGCCACAGCTCT
CCACCAGCCAGAGTGTCCACGTGACAGTCAAAGTTCCTCCTTTTATCCAACCCTTTGAGTTCCCAAGATT
CTCTATCGGTCAGCGGGTCTTCATCCCATGTGTGGTGGTCTCGGGGGACTTACCCATCACCATCACCTGG
CAGAAGGATGGCCGGCCGATTCCAGCAAGCCTCGGTGTAACCATCGACAACATCGACTTCACCAGCTCCC
TGAGGATCTCCAACCTCTCACTGATGCACAACGGGAATTACACCTGCATCGCGCGGAACGAGGCGGCCGC
CGTGGAACACCAGAGCCAGCTGATTGTAAGAGTTCCCCCTAAGTTCGTGGTCCAGCCCCGGGACCAGGAT
GGGATCTATGGCAAAGCAGTGATTCTCAATTGCTCTGCAGAGGGTTATCCTGTGCCTACAATTGTGTGGA
AATTCTCAAAAGGTGCTGGGGTCCCCCAGTTCCAGCCAATTGCCCTGAATGGCAGAATCCAGGTCCTGAG
TAATGGCTCACTCTTGATCAAGCATGTTGTGGAAGAAGACAGTGGCTACTACCTCTGCAAGGTCAGCAAC
GATGTGGGCGCAGACGTCAGCAAGTCCATGTACCTCACGGTGAAAATTCCTGCCATGATAACCTCTTATC
CCAACACCACCCTGGCCACTCAGGGTCAAAGGAAGGAGATGAGCTGCACAGCACACGGGGAGAAGCCCAT
CATTGTCCGCTGGGAGAAAGAGGACAGGATCATTAACCCTGAAATGGCCCGTTACCTGGTGTCCACCAAG
GAGGTGGGAGAGGAAGTGATTTCTACTCTGCAGATTTTGCCAACAGTGAGAGAAGATTCCGGCTTCTTCT
CCTGCCATGCTATCAATTCATATGGGGAGGACCGCGGAATAATTCAGCTCACGGTGCAAGAACCCCCAGA
CCCCCCCGAGATTGAGATCAAAGATGTCAAAGCCCGCACAATCACGCTCAGGTGGACCATGGGGTTTGAT
GGCAACAGCCCCATCACAGGCTACGACATTGAGTGCAAAAATAAATCAGACTCCTGGGATTCTGCTCAAA
GAACCAAAGATGTTTCCCCTCAGCTGAACTCGGCCACCATCATTGATATCCACCCTTCCTCCACCTACAG
CATCCGCATGTACGCCAAGAACCGGATTGGCAAGAGTGAGCCCAGCAACGAGATCACCATCACGGCAGAT
GAGGCAGCTCCTGATGGTCCACCTCAGGAAGTGCACCTGGAACCCACCTCATCTCAGAGTATCAGGGTTA
CCTGGAAGGCTCCCAAGAAACATTTACAAAATGGGATCATACGTGGCTACCAGATAGGCTACCGGGAGTA
CAGCACCGGGGGCAACTTCCAGTTCAACATCATCAGTATCGACACCACCGGGGACAGCGAAGTGTACACC
CTGGACAACCTGAATAAGTTCACCCAGTATGGCCTAGTAGTACAGGCCTGCAACCGGGCCGGCACGGGAC
CTTCTTCTCAGGAGATAATCACTACCACCCTGGAGGACGTACCCAGCTACCCTCCCGAAAATGTCCAAGC
CATAGCAACCTCACCAGAAAGCATATCAATCTCCTGGTCCACGCTGTCCAAGGAGGCCTTGAATGGGATT
CTCCAGGGGTTCAGGGTCATCTACTGGGCCAACCTCATAGACGGAGAGCTGGGCGAGATTAAGAACGTCA
CCACCACGCAGCCTTCCTTGGAGTTGGATGGACTAGAGAAATACACCAACTACAGTATCCAGGTGCTGGC
CTTCACCCGTGCAGGGGACGGCGTCCGGAGTGAGCAGATCTTTACCCGTACCAAGGAGGATGTTCCAGGT
CCTCCTGCTGGTGTCAAGGCAGCAGCAGCCTCGGCCTCCATGGTCTTTGTGTCCTGGCTGCCCCCGCTCA
AGCTGAATGGCATCATTCGGAAGTACACGGTGTTCTGCTCCCACCCCTACCCCACAGTCATCAGCGAGTT
TGAAGCCTCCCCTGACTCATTTTCCTACAGAATTCCTAACCTGAGTCGGAATCGACAGTATAGCGTCTGG
GTGGTGGCAGTGACTTCCGCCGGAAGAGGCAACAGCAGTGAGATCATCACCGTGGAGCCTCTGGCTAAAG
CTCCTGCACGGATCCTCACGTTCAGTGGGACAGTGACTACTCCGTGGATGAAGGACATCGTCTTGCCGTG
TAAAGCTGTTGGAGACCCATCACCTGCCGTAAAATGGATGAAGGATAGTAACGGGACGCCCAGCCTGGTG
ACGATTGATGGCCGCAGAAGCATCTTCAGCAATGGGAGTTTCGTTATTCGCACGGTGAAGGCCGAGGACT
CTGGCTACTACAGCTGTGTTGCCAATAACAACTGGGGATCAGATGAGATCATATTAAATTTGCAAGTACA
AGTTCCACCAGATCAGCCTCGGCTCACCGTATCCAAGACGACATCCTCCTCCATCACCCTTTCCTGGCTT
CCTGGAGACAATGGGGGCAGCTCCATCAGAGGCTACATCCTGCAATATTCCGAGGACAACAGTGAGCAGT
GGGGGAGCTTTCCCATCAGCCCCAGCGAGCGTTCCTACCGCTTGGAAAACCTAAAGTGTGGGACATGGTA
TAAGTTCACCCTTACTGCCCAAAATGGAGTGGGACCCGGACGCATAAGTGAAATCATAGAAGCCAAAACT
CTGGGGAAAGAACCCCAGTTCTCCAAGGAGCAGGAGCTCTTCGCCAGCATCAATACCACCCGAGTGAGGC
TGAATCTGATTGGCTGGAACGACGGCGGCTGTCCAATCACCTCATTCACTCTTGAGTACAGACCCTTCGG
GACCACGGTCTGGACCACAGCTCAGCGGACCTCCCTTTCCAAGTCTTACATTCTGTATGACCTCCAAGAA
GCCACATGGTATGAACTGCAGATGCGAGTGTGCAACAGCGCCGGCTGCGCAGAGAAGCAAGCCAACTTTG
CCACGCTGAACTACGATGGCAGTACAATCCCTCCACTCATTAAGTCAGTTGTCCAAAGCGAAGAAGGGCT
GACAACCAACGAAGGGCTCAAGATCCTCGTGACCATCTCCTGCATCCTGGTCGGGGTTCTGCTGCTCTTT
GTGCTTCTGCTGGTGGTGCGAAGGAGACGGAGGGAGCAGAGGCTGAAGAGGCTGAGAGATGCAAAGAGTT
TAGCTGAGATGCTCATGAGCAAGAACACACGGACTTCAGATACCTTGAGCAAACAGCAACAGACTCTGAG
GATGCACATTGATATACCCAGGGCTCAGCTTTTGATTGAAGAGAGAGACACAATGGAGACCATAGATGAC
CGCTCCACAGTCCTGTTAACGGATGCTGACTTTGGGGAGGCAGCCAAACAGAAGTCACTGACGGTGACTC
ACACGGTGCATTACCAATCGGTGTCTCAGGCCACCGGGCCCCTAGTGGATGTCTCCGATGCTCGGCCAGG
AACGAATCCCACCACCAGGAGGAATGCAAAGGCTGGACCCACAGCAAGAAACCGGTACGCCAGCCAGTGG
ACCCTCAACAGACCCCACCCCACCATCTCAGCACACACTCTCACCACAGACTGGAGACTGCCTACCCCCA
GGGCTACAGGCTCCGTGGACAAGGAAAGTGACAGCTACAGCGTCAGCCCATCACAAGACACAGACAGAGC
AAGGAGCAGCATGGTCTCCACAGAAAGTGCCTCCTCTACCTACGAAGAACTGGCCAGGGCCTACGAGCAC
GCCAAGATGGAGGAGCAGCTGAGGCACGCCAAGTTCACCATCACAGAGTGCTTCATATCCGACACGTCCT
CCGAGCAGCTGACGGCAGGGACAAACGAGTACACGGACAGTCTGACCTCCAGTACCCCTTCAGAATCGGG
GATCTGCAGATTCACTGCGTCTCCCCCCAAACCTCAGGATGGAGGTCGTGTGGTGAACATGGCGGTTCCA
AAGGCCCATCGGCCAGGCGACCTCATACACCTGCCTCCATACCTGCGAATGGACTTCTTGTTAAACCGGG
GCGCACCAGGCACCAGCAGGGACCTGAGCTTAGGACAAGCGTGCTTGGAACCCCAGAAAAGTCGGACCCT
GAAGCGCCCCACGGTCCTTGAGCCCACCCCTATGGAGGCTTCCTCCTCCACCTCTTCCACGAGAGAAGGA
CAGCAGTCGTGGCAACAAGGGGCCGTGGCCACCTTACCTCAGCGAGAGGGTGCAGAGCTGGGACAGGCAG
CTAAAATGAGCAGCTCCCAAGAGTCGCTGCTGGACTCTCGGGGCCACTTGAAAGGAAACAATCCCTACGC
AAAATCCTACACCTTGGTATAA


ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGATT
ACAAGGATGACGACGATAAGGTTTAA
Restriction Sites SgfI-MluI     
ACCN NM_133587
ORF Size 6042 bp
Insert Size 6042
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_133587.1, NP_598271.1
RefSeq Size 6656
RefSeq ORF 6042
Locus ID 171119
Gene Summary mouse homolog is a neural cell adhesion molecule; plays a role in axon guidance [RGD, Feb 2006]

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