Chd5 (NM_001271226) Rat Untagged Clone

CAT#: RN217713

Chd5 (untagged) - Rat chromodomain helicase DNA binding protein 5 (Chd5)


  "NM_001271226" in other vectors (1)

Reconstitution Protocol

USD 1,970.00

8 Weeks*

Size
    • 10 ug

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Specifications

Product Data
Type Rat Untagged Clone
Tag Tag Free
Symbol Chd5
Synonyms CHD-5
Vector pCMV6-Entry
E. coli Selection Kanamycin (25 ug/mL)
Mammalian Cell Selection Neomycin
Sequence Data
>RN217713 representing NM_001271226
Red=Cloning site Blue=ORF Orange=Stop codon

TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC
GCCGCGATCGCC

ATGCGGGGCCCGCTGGGCACCGAGGAGGAGCTGCCGCGGCTGTTCGCGGAGGAGATGGAGAACGAGGAGG
AGATGTCAGAAGAAGAAGACGGTGGCCTTGAAGGCTTTGAGGACTTCTTTCCTGCAGAGCCCGTGAGCCT
TCCCAAGAAGAAGCCGAAGAAGCTGAAGGAGAGCAAGTCCAAAGGGAAGAGGAAGAAGAAAGAGGGGAGC
AATGATGAGCTGTCAGAAAATGAGGAGGATCTGGAGGAGAAGTCAGAGAGCGAAGGTAGCGACTACAGCC
CCACCAAGAAGAAGAAGAAGAAACTGAAGGAGAAAAAGGAGAAGAAGGCTAAGCGGAAAAAGAGGGATGA
GGATGAAGAGGATAATGAGGACGGAGGCTTGAAGGAGCCCAAGTCCTCGGGACAGCTCATGGCCGAATGG
GGGCTTGACGATGTGGATTACCTATTTTCTGAGGATGACTACCACACGCTGACCAACTACAAGGCCTTCA
GCCAGTTCCTCCGGCCTCTTATTGCTAAGAAGAACCCGAAGATCCCCATGTCCAAAATGATGACTGTCCT
GGGGGCCAAGTGGCGAGAATTCAGCGCCAACAACCCATTCAAGGGCAGCTCGGCGGCGGCAGCTGCGGCG
GCCGTGGCTGCGGCCGTGGAGACGGTGACCATCGCTCCTCCACTGGCCATCAGTCCCCAGCAAGTGCCCC
AGCCTCTGCCCGTACGCAAGGCCAAGACCAAAGAGGGCAAGGGGCCCGGAGTGAGGAAGAAGAACAAAGG
CGCCAAAGATTCCAAGAAAAAGGGCAGGGGCAAGAGAGTGGCAGGGCTCAAGTTCCGCTTCGGAGGGATC
AGCAAGAGGAAGAAGGGTTCCTCGAGCGAGGAGGATGAACCGGAGGACTCAGATTTGGACAATGCCAGCA
TCCACAGCTCTTCTGTGCGTTCTGAGTGCTCTGCAGCTCTGGGCAAGAAGAATAAGAGGAGGCGCAAGAA
GAAGAGGATTGATGATGGTGACGGCTATGAGACAGACCACCAGGACTACTGCGAGGTGTGCCAGCAGGGA
GGGGAGATCATTCTCTGTGATACCTGCCCGAGGGCGTACCACCTGGTCTGCCTGGACCCGGAGCTGGAGA
AGGCTCCAGAGGGCAAGTGGAGCTGCCCACACTGTGAGAAGGAGGGGATCCAGTGGGAGCCGAAGGATGA
TGATGAGGAAGAGGAGGAGGGCGGTTGCGAGGAGGAGGAGGATGACCACATGGAGTTCTGCCGCGTGTGC
AAGGACGGTGGCGAGCTTCTGTGCTGTGATGCTTGTCCCTCCTCCTACCACTTGCACTGCCTCAACCCGC
CGCTGCCGGAGATCCCGAACGGTGAATGGCTCTGCCCGCGCTGTACATGTCCCCCACTGAAGGGCAAGGT
TCAGCGGATCCTACACTGGAGGTGGACGGAACCCCCGGCTCCCTTTATGGTGGGGCTGCCAGGACCAGAG
GTGGAGCCCGGTATGCCCCCGCCCAGGCCTCTGGAGGGCATACCTGAGAGAGAGTTCTTTGTCAAGTGGG
CTGGTCTCTCCTACTGGCACTGCTCCTGGGTGAAGGAGCTACAGTTGGAGCTGTACCACACCGTGATGTA
TCGCAACTACCAAAGAAAGAATGACATGGACGAACCACCACCCTTCGATTACGGCTCTGGTGATGAGGAC
GGTAAGAGCGAGAAACGGAAGAACAAGGACCCTCTCTACGCCAAGATGGAGGAACGCTTCTACCGCTACG
GCATCAAGCCCGAGTGGATGATGGTCCACCGCATCCTGAACCACAGCTTTGACAAGAAGGGGGATGTACA
TTACCTGATCAAGTGGAAGGACCTGCCCTACGACCAGTGCACCTGGGAGATTGACGAGATTGACATCCCC
TACTATGACAACCTGAAGCAGACCTACTGGGGCCACAGGGAACTGATGCTGGGAGAGGACGCTAGGCTGC
CCAAGAGGCTGGTCAAGAAGGGCAAGAAGCTGAAGGATGATAAACAAGAGAAGCCACCCGATACACCCAT
CGTGGACCCCACAGTCAAGTTCGACAAGCAGCCGTGGTACATCGACTCCACAGGAGGCACGCTGCACCCT
TACCAGCTGGAGGGCCTCAACTGGTTACGCTTCTCCTGGGCCCAGGGCACCGACACTATCCTGGCTGATG
AGATGGGTTTGGGGAAGACAGTACAGACCATTGTGTTTCTCTATTCTCTGTACAAGGAGGGCCACTCCAA
GGGGCCTTACCTGGTCAGCGCGCCCCTGTCCACCATCATCAACTGGGAACGGGAGTTTGAGATGTGGGCT
CCTGACTTTTACGTGGTCACCTACACGGGGGACAAGGAGAGCCGCTCTGTGATCCGTGAGAACGAGTTTT
CTTTTGAGGACAACGCGATTCGAGGCGGGAAGAAAGTATTCCGCATGAAGAAGGAGGTGCAGATCAAATT
CCACGTGTTGCTTACCTCCTATGAGCTCATCACCATTGACCAAGCCATCCTGGGCTCCATCGAGTGGGCC
TGCCTCGTGGTGGATGAGGCCCATCGGCTCAAGAACAACCAGTCCAAGTTCTTTAGGGTCTTGAATAGCT
ACAAGATCGACTACAAGCTGCTGCTGACGGGGACCCCCCTCCAGAACAACCTGGAGGAGCTGTTCCACCT
CCTCAACTTCCTGACTCCAGAGAGGTTCAACAATCTGGAAGGCTTCTTGGAGGAGTTTGCCGACATCTCC
AAGGAAGATCAGATCAAGAAGCTGCATGACCTGCTGGGGCCACACATGCTTCGGCGGCTCAAGGCCGACG
TGTTCAAGAACATGCCGGCCAAGACGGAGCTGATTGTCCGCGTGGAGCTGAGCCAGATGCAGAAGAAGTA
CTACAAGTTCATCCTGACGCGGAACTTCGAGGCGCTCAACTCCAAGGGGGGTGGCAACCAGGTGTCTCTG
CTCAACATCATGATGGATCTGAAGAAGTGCTGCAACCACCCGTACCTCTTCCCCGTGGCTGCCGTGGAAG
CCCCCATGTTGCCCAACGGCTCCTATGACGGCAGCTCCCTGGTCAAGTCTTCAGGGAAGCTGATGCTACT
TCAGAAGATGCTGAAGAAGCTGCGGGATGAGGGGCACCGAGTGCTCATCTTCTCCCAGATGACCAAGATG
TTGGACCTGTTGGAGGACTTCCTGGAGTATGAGGGCTACAAGTATGAGCGGATCGACGGGGGTATCACTG
GGGGCCTCCGGCAAGAAGCCATCGACAGATTCAATGCTCCTGGGGCCCAACAGTTCTGCTTCCTGCTCTC
AACACGTGCCGGTGGCCTGGGCATCAATCTGGCCACGGCCGACACAGTCATCATTTACGACTCGGACTGG
AACCCCCACAATGACATCCAGGCCTTCAGCCGTGCTCACCGCATCGGGCAGAACAAGAAGGTCATGATCT
ACCGCTTCGTGACACGGGCCTCGGTGGAGGAACGCATCACTCAGGTGGCCAAGCGCAAGATGATGCTCAC
GCACCTGGTGGTGCGACCCGGCCTGGGCTCCAAGTCGGGCTCCATGACCAAGCAGGAGCTGGACGATATC
CTTAAGTTCGGGACAGAGGAGCTCTTCAAGGATGACGTGGAGGGTATGATGTCCCAGGGCCAGAGGCCGA
CCACGCCCATCCCTGATGTACAGTCCACCAAGGGCGGATCTCTGGCTGCCGGTGCAAAGAAAAAGCACGG
CGGCACCCCGCCAGGCGACAACAAAGATGTAGAAGACAGCAGTGTGATCCACTACGACGACGCAGCCATA
TCAAAGCTGCTGGACCGGAACCAGGACGCCACGGATGACACTGAGCTGCAGAACATGAACGAGTACCTGA
GCTCCTTCAAAGTGGCCCAGTACGTGGTCCGTGAGGAAGATGGCGTGGAGGAGGTGGAGAGGGAGGTGAT
CAAGCAGGAGGAGAATGTGGATCCTGACTACTGGGAGAAGCTTTTGCGCCATCACTACGAGCAGCAGCAG
GAGGACTTGGCCCGCAACCTGGGCAAAGGCAAGCGCATCCGTAAGCAGGTCAACTACAACGACGCCTCCC
AGGAGGACCAGGAGTGGCAGGATGAGCTCTCGGACAACCAGTCGGAATATTCCATCGGCTCTGAGGACGA
GGACGAGGACTTCGAGGAGAGGCCAGAAGGGCAGAGCGGACGTCGACAATCCAGGAGGCAGCTGAAGAGT
GACAGGGACAAGCCCCTGCCGCCTCTTCTGGCCCGAGTTGGGGGCAACATTGAGGTTCTGGGCTTCAATG
CCAGACAGAGGAAGGCATTTTTGAATGCCATCATGCGTTGGGGCATGCCACCTCAGGATGCCTTCAACTC
CCACTGGCTGGTGCGCGACCTTCGTGGGAAGAGTGAGAAGGAATTTAGAGCCTATGTATCACTCTTCATG
CGCCACCTGTGTGAGCCCGGCGCAGACGGCGCGGAGACCTTTGCAGACGGCGTGCCCCGGGAGGGCCTGT
CCAGGCAGCACGTACTCACGCGCATTGGGGTCATGTCGCTGGTTAGGAAGAAGGTGCAGGAGTTTGAACA
TGTCAACGGCAAGTACAGCACCCCAGACCTGGTCCCCGAGGGGCCCGAGGGCAAGAAGCCAGGCGAGGTC
ATCTCCTCGGACCCCAACACACCCGTGCCTGCCAGCCCTGCACAGCTCCCACCGGCTCCGCTGGGCCTGC
CAGACAAAATGGAAGCCCAGCTGGGCTACACGGACGAGAAGGAGTCAGGCACACAGAAGCCAAAGAAGTC
CCTGGAAATCCAGGCCCTGCCAACTGCCCTGGACAGAGTAGAGGCTGAAGACAAACATCAGAGCTCAGAC
AGCAAGGACAGAGCTCGGGAGGAGAGGATGGAGGAGGTGGAGAAGGCTCAGGGCTCTCCGGAGCAGCCAC
TGAAAGAGGAAACACTACCGGACAAGGAACCTGTCCCAGACAAGCTGGAGCTAAGCCTGAGTCACAGCAA
CGATTTCAGGCCAGATGACCCCAAGGCCGAGGAGAAGGAGCCCACAGAGACCCAGCAAAACGGCGACAGA
GAGGAAGACGAGGAGGGCAAGAAAGAAGACAAGAACGGGAAATTCAAGTTCATGTTCAACATTGCAGATG
GTGGTTTCACAGAGCTGCACACGCTGTGGCAGAATGAGGAACGGGCAGCTGTGTCCTCGGGGAAAATCTA
CGAAATCTGGCACCGTCGCCATGACTACTGGCTGCTGGCAGGCATTGTGACGCATGGCTATGCCCGCTGG
CAGGACATTCAGAATGACCCGAGGTACATGATCCTAAATGAGCCTTTCAAGTCTGAGGTTCATAAGGGTA
ACTACCTGGAGATGAAGAATAAGTTCTTGGCCCGTCGGTTCAAGCTGCTGGAGCAGGCGCTGGTGATCGA
GGAGCAGCTCCGGAGGGCAGCGTACCTCAACATGACCCAGGATCCCAACCACCCAGCCATGGCGCTCAAT
GCTCGCCTGGCAGAGGTGGAGTGCCTTGCCGAGAGCCACCAGCACCTATCCAAGGAGTCCCTTGCCGGGA
ACAAGCCCGCCAACGCTGTCCTGCACAAGGTCCTGAACCAGCTGGAAGAGCTGCTGAGTGATATGAAAGC
AGATGTGACACGCTTGCCCTCCATGTTATCACGCATCCCCCCGGTGGCCGCCCGTCTGCAGATGTCGGAA
CGCAGCATCCTGAGTCGCCTGACCAACCGCGCCGGTGACCCTACCATCCAGCAGGGCGCTTTCGGCTCCT
CTCAGATGTACAACAACAGCTTTGGGCCCAACTTCCGGGGCCCCGGACCGGGAGGGATTGTCAACTACAA
CCAGATGCCCCTGGGGCCCTATGTGACTGACATCTAG


ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGATT
ACAAGGATGACGACGATAAGGTTTAA
Restriction Sites SgfI-MluI     
ACCN NM_001271226
ORF Size 5847 bp
Insert Size 5847
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 clone expresses the complete ORF with c-terminal tags of Myc-DDK.
Reference Data
RefSeq NM_001271226.2, NP_001258155.1
RefSeq Size 6528
RefSeq ORF 5847
Locus ID 691589

Other Versions

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