Flna (NM_001134599) Rat Untagged Clone

CAT#: RN206931

Flna (untagged ORF) - Rat filamin, alpha (Flna), (10 ug)


  "NM_001134599" in other vectors (1)

Reconstitution Protocol

USD 5,350.00

11 Weeks*

Size
    • 10 ug

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Specifications

Product Data
Type Rat Untagged Clone
Tag Tag Free
Symbol Flna
Synonyms RGD1560614
Vector pCMV6-Entry
E. coli Selection Kanamycin (25 ug/mL)
Mammalian Cell Selection Neomycin
Sequence Data
>RN206931 representing NM_001134599
Red=Cloning site Blue=ORF Orange=Stop codon

TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC
GCCGCGATCGCC

ATGAGTAGCTCTCACTCCCGCTCCGGCCAGAGTGCGGCAGGCGCGTCTCCGGCAGGCGGTATTGATACAC
GGGACGCTGAGATGCCGGCTACCGAAAAAGACCTAGCAGAAGATGCACCATGGAAGAAGATCCAGCAGAA
CACATTTACCCGCTGGTGCAATGAGCACCTTAAGTGCGTGAGCAAGCGCATCGCCAATCTGCAGACGGAC
CTGAGCGATGGATTGCGGCTCATCGCGCTGCTTGAGGTACTCAGCCAGAAGAAGATGCACCGCAAGCACA
ACCAACGACCCACTTTCCGCCAGATGCAGCTGGAAAATGTGTCTGTGGCGCTTGAATTCCTGGACCGTGA
GAGCATCAAGCTCGTGTCCATAGACAGCAAGGCCATTGTGGATGGGAATCTGAAACTGATCTTAGGACTC
ATCTGGACCCTGATCCTGCACTACTCCATCTCGATGCCCATGTGGGATGAGGAAGAGGATGAGGAGGCCA
AGAAGCAAACACCCAAACAGAGGCTTCTAGGCTGGATTCAGAACAAGCTGCCACAGCTGCCCATTACCAA
CTTCAGTCGAGACTGGCAGAGTGGCCGGGCCCTGGGTGCTCTTGTTGATAGCTGTGCCCCAGGCCTATGT
CCTGACTGGGACTCCTGGGATGCTAGTAAGCCTGTGAACAATGCACGGGAAGCCATGCAGCAGGCTGACG
ACTGGCTGGGCATTCCTCAGGTGATTACCCCAGAAGAAATTGTGGACCCCAACGTAGATGAGCATTCTGT
TATGACTTACCTGTCTCAGTTTCCCAAGGCCAAACTGAAGCCAGGGGCTCCTCTTCGGCCCAAACTGAAC
CCAAAGAAAGCCCGAGCCTATGGGCCAGGCATCGAGCCCACAGGCAATATGGTGAAGAAGAGAGCAGAAT
TCACTGTGGAGACCCGAAGTGCAGGACAGGGAGAGGTGCTGGTATATGTGGAGGACCCAGCTGGACACCA
GGAAGAGGCAAAAGTGACTGCCAATAACGACAAGAACCGTACTTTCTCTGTCTGGTATGTCCCTGAAGTA
ACAGGAACTCATAAGGTGACTGTGCTCTTTGCTGGCCAACATATTGCCAAGAGCCCCTTTGAGGTGTATG
TGGACAAGTCACAGGGTGATGCCAGCAAAGTGACTGCCCAGGGCCCTGGTCTGGAGCCCAGCGGCAATAT
CGCCAACAAGACTACCTACTTTGAGATCTTCACTGCAGGAGCTGGCATAGGCGAGGTGGAAGTTGTCATC
CAGGACCCTACAGGACAGAAAGGCACAGTGGAACCTCAGCTGGAGGCCAGGGGTGACAGCACCTATCGCT
GTAGCTATCAGCCTACCATGGAGGGTGTCCATACAGTACATGTCACCTTCGCTGGTGTTCCCATCCCTCG
CAGCCCCTACACTGTCACTGTTGGTCAAGCTTGTAACCCAACTGCCTGCCGGGCTGTTGGTAGAGGCCTC
CAGCCTAAGGGTGTGCGAGTGAAGGAAACAGCTGACTTCAAGGTGTACACAAAAGGCGCTGGCAGTGGGG
AGCTAAAGGTCACTGTAAAGGGTCCCAAGGGTGAAGAGCGTGTAAAGCAGAAGGACTTAGGGGATGGTGT
GTATGGCTTTGAATATTACCCCACAATCCCTGGCACATACACTGTCACCATCACATGGGGTGGCCAGAAC
ATTGGCCGCAGTCCGTTCGAGGTGAAGGTAGGCACTGAGTGTGGCAATCAGAAGGTTCGGGCATGGGGTC
CTGGTCTGGAAGGTGGCATTGTTGGCAAGTCAGCAGACTTCGTAGTAGAGGCCATTGGTGATGATGTGGG
CACCTTGGGTTTCTCTGTGGAAGGTCCATCACAGGCAAAGATTGAATGTGACGACAAGGGTGATGGCTCT
TGTGATGTGCGCTATTGGCCCCAGGAGGCTGGCGAGTATGCTGTTCATGTGCTATGTAACAGTGAGGATA
TCCGGCTCAGTCCCTTCATGGCTGACATCCGTGAGGCACCTCAGGATTTTCACCCAGACCGGGTGAAGGC
ACGTGGGCCTGGATTGGAGAAGACTGGTGTAGCTATCAACAAGCCAGCAGAGTTCACAGTTGATGCCAAG
CATGCTGGGAAGGCCCCTCTTCGAGTTCAAGTTCAGGACAATGAAGGACACTCTGTGGAGACAACAGTCA
AGGACAATGGCAATGGTACTTACAGCTGTTCTTATGTGCCCAGAAAGCCAGTGAAGCACACAGCCATGGT
TTCTTGGGGAGGTGTCAGCATCCCCAATAGTCCTTTCCGGGTGAATGTGGGAGCTGGCAGCCACCCAAAC
AAAGTCAAGGTGTATGGTCCAGGAGTGGCCAAGACTGGGCTCAAGGCCCATGAACCTACCTACTTTACTG
TGGATTGTACTGAGGCGGGCCAGGGAGATGTCAGCATTGGTATCAAGTGTGCCCCTGGAGTAGTGGGCCC
CACTGAGGCTGATATTGACTTTGATATCATCCGTAATGACAATGACACCTTCACTGTGAAATACACACCC
TGTGGGGCTGGCAGCTATACCATCATGGTTCTTTTTGCTGACCAGGCCACACCCACCAGCCCCATCAGAG
TCAAAGTGGAGCCTTCTCATGATGCCAGTAAAGTGAAGGCTGAGGGTCCTGGCCTAAATCGCACTGGTGT
TGAGCTTGGCAAACCCACCCATTTCACAGTCAATGCTAAAACTGCTGGGAAAGGCAAGCTGGATGTTCAG
TTCTCAGGACTGGCTAAGGGAGATGCAGTGCGAGATGTGGACATCATTGACCACCATGATAATACCTACA
CCGTAAAGTATACTCCTGTGCAGCAGGGCCCAGTAGGTGTCAGTGTCACTTATGGAGGAGATCACATACC
CAAGAGTCCATTTTCAGTGGGAGTATCTCCAAGCCTGGATCTCAGCAAGATTAAGGTGTCTGGCCTTGTT
GACAAAGTGGATGTTGGCAAAGATCAAGAGTTCACAGTAAAGTCAAAGGGTGCAGGTGGTCAAGGCAAAG
TAGCATCCAAGATTGTGAGTCCCTCAGGTGCAGCAGTGCCCTGCAAGGTAGAGCCAGGCCTGGGAGCTGA
CAACAGTGTGGTCCGTTTTGTGCCCCGTGAAGAGGGGCCTTATGAGGTGGAAGTGACCTATGATGGTGTG
CCTGTACCTGGCAGTCCCTTTCCAGTAGAAGCTGTGGCTCCTACCAAACCCAGCAAGGTGAAGGCATTTG
GACCAGGGCTGCAGGGGGGCAATGCAGGCTCCCCTGCCCGCTTCACCATTGATACAAAGGGAGCTGGCAC
TGGTGGCCTGGGCCTGACAGTGGAAGGCCCCTGTGAAGCACAGCTTGAGTGCCTGGACAATGGGGACGGT
ACATGCTCTGTGTCTTATGTGCCCACTGAGCCTGGGGACTACAACATCAACATCCTTTTTGCTGACACCC
ACATTCCTGGATCCCCATTCAAGGCCCATGTGGTTCCTTGTTTTGATGCATCCAAGGTGAAGTGCTCAGG
CCCTGGGCTGGAGCGGGCTACTGCTGGTGAGGTAGGGCAGTTCCAAGTAGACTGCTCAAGTGCTGGCAGT
GCCGAGTTGACGATTGAGATCTGCTCTGAGGCAGGACTGCCAGCTGAAGTATACATTCAGGACCATGGTG
ATGGCACACACACCATTACCTATATTCCTCTTTGTCCTGGGGCTTACACTGTTACCATCAAGTATGGTGG
CCAGCCTGTGCCCAACTTCCCCAGCAAGCTACAGGTGGAGCCTGCTGTAGATACCTCAGGCGTACAGTGC
TATGGGCCTGGGATTGAAGGTCAAGGTGTCTTCCGAGAGGCAACCACTGAGTTCAGTGTAGATGCCCGGG
CTCTTACACAGACTGGAGGGCCACATGTCAAGGCCCGTGTGGCCAACCCCTCAGGCAATCTGACAGATAC
CTATGTGCAAGACTGTGGTGATGGCACATACAAAGTGGAATATACTCCATATGAGGAAGGAGTACACTCC
GTGGATGTGACTTATGATGGCAGCCCTGTACCCAGCAGCCCCTTCCAGGTGCCTGTAACAGAGGGCTGTG
ACCCCTCCCGGGTGCGTGTCCATGGGCCAGGCATCCAAAGTGGTACCACCAACAAACCCAACAAGTTCAC
AGTAGAGACTAGGGGAGCTGGCACAGGTGGCCTGGGCTTGGCTGTTGAGGGTCCCTCAGAGGCCAAGATG
TCTTGTATGGATAATAAAGATGGCAGCTGCTCGGTAGAATACATCCCCTATGAAGCTGGAACCTATAGCC
TTAACGTCACTTATGGTGGTCACCAAGTGCCAGGTAGCCCCTTCAAGGTTCCTGTACATGATGTGACAGA
TGCATCTAAAGTCAAGTGTTCTGGACCTGGCTTAAGCCCAGGCATGGTCCGTGCCAACCTCCCTCAGTCC
TTTCAGGTAGACACAAGCAAAGCCGGAGTTGCCCCACTGCAGGTCAAAGTACAGGGGCCCAAAGGCCTGG
TGGAGCCAGTGGATGTAGTGGACAATGCTGATGGTACTCAGACTGTCAACTATGTGCCCAGCCGAGAAGG
GTCCTATAGCATTTCTGTGCTGTATGGTGAAGAAGAAGTGCCACGGAGCCCCTTCAAGGTCAAGGTGCTG
CCCACGCATGATGCCAGTAAGGTGAAGGCCAGTGGACCTGGACTCAACACCACTGGTGTGCCTGCCAGCC
TGCCTGTGGAGTTCACCATTGATGCCAAGGATGCTGGGGAGGGTCTGTTGGCTGTCCAGATTACGGACCC
TGAAGGCAAGCCCAAGAAGACACACATCCAAGATAATCATGATGGCACATACACAGTGGCCTATGTGCCA
GATGTGACAGGCCGGTACACAATCCTCATCAAGTATGGTGGTGATGAGATCCCCTTTTCCCCATACCGTG
TCCGGGCTGTGCCCACTGGGGATGCCAGCAAGTGCACAGTCACAGGTGCTGGCATTGGCCCCACCATCCA
GATTGGAGAGGAGACAGTGATTACTGTGGACACAAAAGCAGCAGGCAAAGGCAAAGTGACTTGCACAGTG
TGCACACCTGATGGCTCAGAGGTAGATGTGGACGTGGTGGAGAATGAGGATGGCACCTTTGACATCTTCT
ACACAGCCCCGCAACCGGGCAAATATGTCATCTGTGTGCGCTTCGGTGGCGAGCATGTGCCCAACAGCCC
CTTCCAAGTTACAGCTTTAGCTGGGGACCAACCAACAGTGCAGACCCCATTAAGGCCTCAGCAGCTGCCT
TCACAGTATACCTATCCTCAGGGTAGCCAGCAAACATGGATTCCAGAGAGGCCCATGGTGGGCGTTAATG
GGCTGGATGTGACCAGCCTGAGGCCCTTTGATCTTGTCATCCCCTTCACTATCAAGAAGGGTGAGATCAC
TGGGGAAGTTCGAATGCCCTCTGGCAAGGTGGCCCAGCCTTCCATCACTGACAACAAAGATGGCACTGTT
ACTGTGCGTTACTCACCCAGTGAAGCTGGCCTGCATGAAATGGACATTCGCTATGACAATATGCATATCC
CAGGAAGCCCTCTGCAGTTCTATGTTGATTATGTCAACTGTGGTCACATCACTGCCTATGGTCCTGGCCT
TACCCATGGAGTGGTCAACAAACCTGCCACCTTCACTGTCAACACCAAGGATGCAGGAGAAGGGGGCTTG
TCTCTGGCCATTGAGGGTCCATCTAAAGCAGAAATCAGCTGCACTGACAACCAGGATGGGACATGCAGTG
TCTCTTACCTGCCTGTGCTGCCTGGTGACTACAGCATCCTAGTCAAGTACAATGACCAGCACATCCCAGG
CAGCCCCTTCACTGCCAGAGTAACAGGTGATGATTCCATGCGTATGTCCCACCTAAAGGTGGGTTCTGCT
GCTGATATCCCCATCAACATCTCAGAAACAGACCTCAGCCTACTCACAGCCACTGTGGTGCCACCTTCAG
GTCGAGAGGAACCCTGTCTGCTGAAACGGTTGCGTAATGGCCACGTGGGGATTTCCTTCGTGCCCAAGGA
GACAGGGGAGCACCTGGTACACGTGAAGAAGAATGGCCAGCATGTGGCAAGCAGTCCCATCCCAGTAGTG
ATCAGCCAGTCGGAGATAGGTGATGCCAGCCGTGTAAGGGTCTCTGGTCAAGGCCTCCATGAAGGCCATA
CCTTTGAGCCTGCAGAGTTTATTATTGACACCAGAGATGCAGGCTATGGTGGGCTCAGTCTGTCCATTGA
GGGCCCTAGCAAAGTAGACATCAACACAGAGGACCTGGAGGACGGCACATGCAGGGTCACCTACTGTCCC
ACAGAGCCTGGAAACTACATTATAAACATCAAATTTGCTGACCAACATGTGCCTGGCAGTCCTTTTTCTG
TGAAGGTGACAGGTGAGGGCCGGGTAAAAGAGAGTATCACACGCAGGCGACGTGCCCCTTCTGTGGCCAA
TGTTGGCAGTCATTGTGACCTCAGCTTGAAGATTCCTGAAATTAGCATCCAAGATATGACAGCCCAGGTG
ACCAGCCCATCAGGCAAGACCCATGAGGCAGAGATTGTAGAAGGAGAGAACCATACTTACTGTATCCGAT
TTGTGCCTGCTGAGATGGGGATGCATACAGTCAGTGTCAAGTACAAGGGCCAGCATGTACCTGGGAGCCC
CTTCCAGTTCACTGTGGGACCTCTGGGGGAAGGGGGTGCTCACAAGGTCCGTGCTGGAGGCCCTGGCCTA
GAGAGGGCTGAAGCTGGAGTACCAGCGGAGTTCGGCATTTGGACTAGGGAAGCTGGCGCTGGAGGCCTGG
CCATTGCTGTTGAAGGCCCTAGCAAGGCTGAGATCTCTTTTGAGGACCGAAAGGATGGCTCTTGTGGTGT
GGCCTACGTAGTTCAGGAGCCAGGTGACTATGAGGTCTCAGTCAAGTTCAACGAGGAACACATACCTGAT
AGCCCCTTCGTGGTGCCTGTGGCTTCTCCGTCTGGTGACGCCCGCCGCCTTACTGTTTCTAGTCTTCAGG
AGTCAGGGTTAAAGGTCAACCAGCCAGCATCTTTTGCAGTCAGCCTGAATGGAGCCAAAGGGGCAATTGA
TGCCAAGGTGCATAGCCCCTCAGGAGCTCTGGAGGAGTGCTATGTCACAGAGATTGACCAAGATAAGTAT
GCTGTGCGTTTCATCCCACGAGAGAATGGCGTCTACTTGATCGATGTCAAGTTCAATGGTACTCACATCC
CTGGAAGTCCCTTCAAGATTCGAGTTGGGGAGCCTGGTCATGGAGGGGACCCAGGCTTAGTATCCGCCTA
TGGAGCAGGCCTGGAAGGTGGTGTCACAGGGAGCCCAGCTGAGTTTATTGTGAACACAAGCAATGCAGGA
GCTGGTGCCCTTTCGGTTACCATTGATGGCCCCTCCAAGGTGAAGATGGATTGCCAGGAGTGCCCTGAGG
GCTACCGTGTCACCTATACCCCCATGGCACCTGGCAGCTACCTCATCTCCATCAAGTATGGTGGCCCCTA
TCACATTGGGGGAAGCCCCTTCAAAGCCAAGGTCACAGGTCCCCGTCTTGTTAGCAACCACAGCCTCCAT
GAGACATCATCTGTGTTTGTGGACTCTCTGACTAAAGTTGCTACTGTTCCCCAGCATGCAACCTCAGGCC
CAGGTCCTGCTGATGTCAGCAAGGTAGTAGCCAAAGGCCTGGGGCTAAGCAAAGCTTATGTAGGCCAGAA
GAGCAACTTCACAGTAGATTGCAGCAAAGCAGGTAACAACATGTTGCTGGTGGGCGTGCATGGCCCAAGG
ACACCCTGTGAAGAGATCCTGGTGAAACACATGGGCAGTCGCCTCTATAGTGTCTCCTACCTGCTCAAAG
ACAAAGGGGAATACACATTGGTGGTCAAGTGGGGTGATGAGCATATCCCAGGCAGCCCATACCGCATTAT
GGTGCCCTGA


ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGATT
ACAAGGATGACGACGATAAGGTTTAA
Restriction Sites SgfI-MluI     
ACCN NM_001134599
ORF Size 7920 bp
Insert Size 7920
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_001134599.1, NP_001128071.1
RefSeq Size 8412
RefSeq ORF 7920
Locus ID 293860

Other Versions

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