Alpha Fodrin (SPTAN1) (NM_001130438) Human Untagged Clone

CAT#: SC326440

SPTAN1 (untagged)-Human spectrin, alpha, non-erythrocytic 1 (alpha-fodrin) (SPTAN1), transcript variant 1


  "NM_001130438" in other vectors (3)

Reconstitution Protocol

USD 5,020.00

3 Weeks*

Size
    • 10 ug

Product Images

Other products for "SPTAN1"

Specifications

Product Data
Type Human Untagged Clone
Tag Tag Free
Symbol SPTAN1
Synonyms EIEE5; NEAS; SPTA2
Vector pCMV6-Entry
E. coli Selection Kanamycin (25 ug/mL)
Mammalian Cell Selection Neomycin
Sequence Data
>NCBI ORF sequence for NM_001130438, the custom clone sequence may differ by one or more nucleotides


ATGGACCCAAGTGGGGTCAAAGTGCTGGAAACAGCAGAGGACATCCAGGAGAGGCGGCAGCAGGTCCTAG
ACCGATACCACCGCTTCAAGGAACTCTCAACCCTTAGGCGTCAGAAGCTGGAAGATTCCTATCGATTCCA
GTTCTTTCAAAGAGATGCTGAAGAGCTGGAGAAATGGATACAGGAAAAACTTCAGATTGCATCTGATGAG
AATTATAAAGACCCAACCAACTTGCAGGGAAAGCTTCAGAAGCATCAAGCATTTGAAGCTGAAGTGCAGG
CCAACTCAGGAGCCATTGTTAAGCTGGATGAAACTGGAAACCTGATGATCTCAGAAGGGCATTTTGCATC
TGAAACCATACGGACCCGTTTGATGGAGCTGCACCGCCAGTGGGAATTACTTTTGGAGAAGATGCGAGAA
AAAGGAATCAAACTGCTGCAGGCCCAGAAGTTGGTGCAGTACTTACGAGAATGTGAGGACGTGATGGACT
GGATCAATGACAAGGAAGCAATTGTTACTTCTGAAGAGCTGGGCCAGGATCTGGAGCATGTAGAGGTTTT
ACAGAAGAAATTTGAAGAGTTTCAAACAGATATGGCTGCTCATGAAGAAAGAGTTAATGAAGTGAACCAG
TTTGCTGCCAAACTCATACAGGAGCAGCACCCTGAGGAGGAACTGATCAAGACTAAGCAGGATGAAGTCA
ATGCAGCCTGGCAGCGGCTGAAGGGCCTGGCTCTGCAGAGGCAGGGGAAGCTCTTTGGGGCAGCAGAAGT
TCAGCGCTTTAACAGGGATGTGGATGAGACTATCAGTTGGATTAAGGAAAAGGAGCAGTTAATGGCCTCT
GATGATTTTGGCCGAGACCTGGCAAGTGTTCAGGCTCTGCTTCGGAAGCACGAGGGTCTGGAGAGAGATC
TTGCTGCTCTAGAAGACAAGGTCAAAGCCCTGTGTGCTGAGGCTGACCGCCTGCAACAGTCCCACCCTCT
GAGTGCAACACAGATTCAAGTGAAGCGAGAGGAACTGATTACAAACTGGGAGCAGATCCGCACCTTGGCG
GCAGAGAGACATGCACGGCTCAATGATTCATACAGGCTTCAACGCTTCCTTGCTGACTTCCGTGACCTCA
CCAGCTGGGTGACTGAGATGAAAGCCCTCATCAATGCAGATGAGCTTGCCAGTGATGTGGCTGGGGCTGA
AGCCCTGCTAGATAGACACCAAGAGCACAAGGGTGAAATTGATGCCCATGAAGACAGCTTCAAATCTGCA
GATGAATCTGGACAGGCACTGCTTGCTGCTGGTCACTATGCCTCAGATGAAGTGAGGGAGAAGCTGACCG
TCCTTTCCGAGGAGAGAGCGGCGCTGCTGGAGCTGTGGGAGCTGCGCAGGCAGCAGTACGAGCAGTGCAT
GGACCTGCAGCTCTTCTACCGGGACACTGAGCAGGTGGACAACTGGATGAGCAAGCAGGAGGCGTTCCTG
TTGAATGAAGACTTGGGAGATTCCTTGGATAGTGTGGAAGCGCTTCTTAAGAAGCACGAAGACTTTGAGA
AATCCCTTAGTGCCCAGGAGGAAAAGATTACAGCATTAGATGAATTTGCAACCAAGCTAATTCAGAACAA
CCACTATGCAATGGAAGATGTGGCCACTCGCCGAGATGCTCTGTTGAGCCGCCGCAATGCCCTTCACGAG
AGAGCCATGCGTCGCCGGGCCCAGCTAGCCGATTCTTTCCATCTGCAGCAGTTTTTCCGTGATTCTGATG
AGCTCAAGAGTTGGGTCAATGAGAAGATGAAAACTGCCACAGATGAAGCTTATAAAGATCCATCCAACCT
ACAAGGAAAAGTACAGAAGCATCAGGCTTTTGAGGCTGAGCTCTCAGCAAACCAGAGCCGAATTGATGCC
TTGGAGAAAGCTGGCCAAAAGCTGATTGATGTCAACCACTATGCCAAGGATGAAGTGGCAGCTCGTATGA
ATGAGGTGATCAGTTTGTGGAAGAAACTGCTAGAGGCCACTGAACTGAAAGGAATAAAGCTTCGTGAAGC
CAACCAGCAACAGCAATTTAATCGCAATGTTGAGGATATTGAATTGTGGCTATATGAAGTAGAAGGTCAC
TTGGCTTCGGATGATTACGGCAAAGATCTTACCAATGTGCAGAACCTCCAGAAGAAACATGCCCTGCTAG
AGGCAGATGTGGCTGCTCACCAGGACCGAATTGATGGCATCACCATTCAGGCCCGCCAGTTCCAAGATGC
TGGCCATTTTGATGCAGAAAACATCAAGAAGAAACAGGAAGCCCTCGTGGCTCGCTATGAGGCACTCAAG
GAGCCCATGGTTGCCCGGAAGCAGAAGCTGGCCGATTCTCTGCGGTTGCAGCAGCTCTTCCGGGATGTTG
AGGATGAGGAGACGTGGATTCGAGAGAAAGAGCCCATTGCCGCATCTACCAACAGAGGTAAGGATTTAAT
TGGGGTCCAGAATCTGCTAAAGAAACATCAAGCCTTACAAGCAGAAATTGCTGGACATGAACCACGCATC
AAAGCAGTTACACAGAAGGGGAATGCCATGGTGGAGGAAGGCCATTTTGCTGCAGAGGATGTGAAGGCCA
AGCTTCACGAGCTGAACCAAAAGTGGGAGGCACTGAAAGCCAAAGCTTCCCAGCGTCGGCAGGACCTGGA
GGACTCTCTGCAGGCCCAGCAGTACTTTGCTGATGCTAACGAGGCTGAATCCTGGATGCGGGAGAAGGAA
CCCATTGTGGGCAGCACTGACTATGGCAAGGACGAAGACTCTGCTGAGGCTCTACTGAAGAAACACGAAG
CTTTGATGTCAGATCTCAGTGCCTACGGCAGCAGCATCCAGGCTTTGCGAGAACAAGCACAGTCCTGCCG
GCAACAAGTGGCCCCCACGGATGATGAGACTGGGAAGGAGCTGGTCTTGGCTCTCTACGACTATCAGGAG
AAGAGTCCCCGAGAGGTCACCATGAAGAAGGGAGATATCCTTACCTTACTCAACAGCACCAACAAGGATT
GGTGGAAAGTGGAAGTGAACGATCGTCAGGGTTTTGTGCCGGCTGCGTACGTGAAGAAATTGGACCCCGC
CCAGTCAGCCTCCCGGGAGAATCTCCTGGAGGAGCAAGGCAGCATAGCACTGCGGCAGGAGCAGATTGAC
AATCAGACACGCATAACTAAGGAGGCCGGCAGTGTATCTCTGCGTATGAAGCAGGTGGAAGAACTATATC
ATTCTCTGCTGGAACTGGGTGAGAAGCGTAAAGGCATGTTGGAGAAGAGTTGCAAGAAGTTTATGTTGTT
CCGTGAAGCGAATGAACTACAGCAATGGATCAATGAGAAGGAAGCCGCTCTGACAAGTGAGGAGGTCGGA
GCAGACTTGGAGCAGGTTGAGGTGCTCCAGAAGAAGTTTGATGACTTCCAGAAGGACCTGAAGGCCAATG
AGTCACGGTTGAAGGACATTAACAAGGTAGCTGAAGACCTGGAGTCTGAAGGTCTCATGGCAGAGGAGGT
GCAGGCTGTGCAACAACAGGAAGTGTATGGCATGATGCCCAGGGATGAAACTGATTCCAAGACAGCCTCC
CCGTGGAAGTCTGCTCGTCTGATGGTTCACACCGTGGCCACCTTTAATTCCATCAAGGAGCTGAATGAGC
GCTGGCGGTCCCTACAGCAGCTGGCCGAGGAACGGAGCCAGCTCTTGGGCAGCGCCCATGAAGTACAGAG
GTTCCACAGAGATGCTGATGAAACCAAAGAATGGATTGAAGAGAAGAATCAAGCTCTAAACACAGACAAT
TATGGACATGATCTCGCCAGTGTCCAGGCCCTGCAACGCAAGCATGAGGGCTTCGAGAGGGACCTTGCGG
CTCTCGGTGACAAGGTAAACTCCCTTGGTGAAACAGCAGAGCGCCTGATCCAGTCCCATCCCGAGTCAGC
AGAAGACCTGCAGGAAAAGTGCACAGAGTTAAACCAGGCCTGGAGCAGCCTGGGGAAACGTGCAGATCAG
CGCAAGGCAAAGTTGGGTGACTCCCACGACCTGCAGCGCTTCCTTAGCGATTTCCGGGACCTCATGTCTT
GGATCAATGGAATACGGGGGTTGGTGTCCTCAGATGAGCTAGCCAAGGATGTCACCGGAGCTGAGGCATT
GCTGGAGCGACACCAGGAACACCGGACAGAAATCGATGCCAGGGCTGGCACTTTCCAGGCATTTGAGCAG
TTTGGACAGCAGCTGTTGGCTCACGGACACTATGCCAGCCCTGAGATCAAGCAGAAACTTGATATTCTTG
ACCAGGAGCGTGCAGACCTGGAGAAGGCCTGGGTTCAGCGCAGGATGATGCTGGATCAGTGCCTTGAACT
GCAGCTGTTCCATCGGGACTGTGAGCAAGCTGAGAACTGGATGGCTGCCCGGGAGGCCTTCTTGAATACC
GAAGACAAAGGAGACTCACTGGACAGCGTAGAGGCTCTGATCAAAAAACATGAAGACTTTGACAAAGCGA
TTAACGTCCAGGAAGAGAAGATTGCTGCTCTGCAGGCCTTTGCCGACCAGCTCATCGCTGCCGGCCATTA
TGCCAAGGGAGACATTTCTAGCCGGCGCAATGAGGTCTTGGACAGGTGGCGACGTCTGAAAGCCCAGATG
ATTGAGAAAAGGTCAAAGCTAGGAGAATCTCAAACCCTCCAACAGTTCAGCCGGGATGTGGATGAGATTG
AGGCTTGGATCAGTGAAAAATTGCAAACAGCGAGTGATGAGTCGTACAAGGATCCCACCAACATCCAGCT
TTCCAAGCTGCTGAGCAAGCACCAGAAGCACCAGGCTTTTGAAGCAGAGCTGCATGCCAACGCTGACCGG
ATCCGTGGGGTTATCGACATGGGCAACTCCCTCATTGAACGTGGAGCCTGTGCCGGCAGTGAGGATGCTG
TCAAGGCCCGCCTGGCTGCCTTAGCTGACCAGTGGCAGTTCTTGGTGCAAAAGTCAGCGGAAAAGAGCCA
GAAACTGAAAGAAGCCAACAAGCAGCAGAACTTCAACACAGGGATCAAGGACTTTGACTTCTGGCTGTCT
GAGGTGGAGGCCCTGCTGGCATCCGAAGATTATGGCAAAGACCTGGCTTCTGTGAACAACCTGCTGAAAA
AGCATCAACTGCTGGAAGCAGATATATCTGCCCATGAGGATCGCCTGAAGGACCTGAACAGCCAGGCAGA
CAGCCTGATGACCAGCAGTGCCTTCGACACCTCCCAAGTAAAGGACAAGAGGGACACCATCAACGGGCGC
TTCCAGAAGATCAAGAGCATGGCGGCCTCCCGGCGAGCCAAGCTGAATGAATCCCATCGCCTGCACCAGT
TCTTCCGGGACATGGATGACGAGGAGTCCTGGATCAAGGAGAAGAAGCTGCTGGTGGGCTCAGAGGACTA
CGGCCGGGACCTAACCGGCGTGCAGAACCTGAGGAAGAAGCACAAGCGGCTGGAAGCAGAACTGGCTGCG
CATGAGCCGGCTATTCAGGGTGTCCTGGACACTGGCAAGAAGCTGTCCGATGACAACACCATCGGGAAAG
AGGAGATCCAGCAGCGGCTGGCGCAGTTTGTGGAGCACTGGAAAGAGCTGAAGCAGCTGGCAGCTGCCCG
GGGTCAGCGGCTGGAAGAGTCCTTGGAATATCAGCAGTTTGTAGCCAATGTGGAAGAGGAAGAAGCCTGG
ATCAATGAGAAAATGACCCTGGTGGCCAGCGAAGATTATGGCGACACTCTTGCCGCCATCCAGGGCTTAC
TGAAGAAACATGAAGCTTTTGAGACAGACTTCACCGTCCACAAGGATCGCGTGAATGATGTCTGCACCAA
TGGACAAGACCTCATTAAGAAGAACAATCACCATGAGGAGAACATCTCTTCAAAGATGAAGGGCCTGAAC
GGGAAAGTGTCAGACCTGGAGAAAGCTGCAGCCCAGAGAAAGGCGAAGCTGGATGAGAACTCGGCCTTCC
TTCAGTTCAACTGGAAGGCGGACGTGGTGGAGTCCTGGATCGGTGAAAAGGAGAACAGCTTGAAGACAGA
TGATTATGGCCGAGACCTGTCTTCTGTGCAGACGCTCCTCACCAAACAGGAAACTTTTGACGCTGGGCTG
CAGGCCTTCCAGCAGGAAGGCATTGCCAACATCACTGCCCTCAAAGATCAGCTTCTCGCCGCCAAACACG
TTCAGTCCAAGGCCATCGAGGCCCGGCACGCCTCCCTCATGAAGAGGTGGAGCCAGCTTCTGGCCAACTC
AGCCGCCCGCAAGAAGAAGCTTCTGGAGGCTCAGAGTCACTTCCGCAAGGTGGAGGACCTCTTCCTGACC
TTCGCCAAAAAGGCTTCTGCCTTCAACAGCTGGTTTGAAAATGCAGAGGAGGACTTAACAGACCCCGTGC
GCTGCAACTCCTTGGAAGAAATCAAAGCTTTGCGCGAGGCCCACGACGCCTTCCGCTCCTCCCTCAGCTC
TGCCCAGGCTGACTTCAACCAGCTGGCCGAGCTGGACCGCCAGATCAAGAGCTTCCGCGTAGCCTCCAAC
CCCTACACCTGGTTTACCATGGAGGCCCTGGAGGAGACCTGGAGGAACCTACAGAAAATCATCAAGGAGA
GGGAGCTGGAGCTGCAGAAGGAACAGCGGCGGCAGGAGGAGAACGACAAGCTGCGCCAGGAGTTTGCCCA
GCACGCCAACGCCTTCCACCAGTGGATCCAAGAGACCAGGACATACCTCCTCGATGGGTCCTGTATGGTG
GAAGAGTCGGGGACCCTCGAATCCCAGCTTGAAGCTACCAAACGCAAGCACCAGGAAATCCGAGCCATGA
GAAGTCAGCTCAAAAAGATCGAGGACCTGGGGGCCGCCATGGAGGAGGCCCTCATCCTGGACAACAAGTA
CACGGAGCACAGCACCGTGGGCCTCGCCCAGCAGTGGGACCAGCTGGACCAGCTGGGCATGCGCATGCAG
CACAACCTGGAGCAGCAGATCCAGGCCAGGAACACAACAGGTGTGACTGAGGAGGCCCTCAAAGAATTCA
GCATGATGTTTAAACACTTTGACAAGGACAAGTCTGGCAGGCTGAACCATCAGGAGTTCAAATCTTGCCT
GCGCTCCCTGGGCTATGACCTGCCCATGGTGGAGGAAGGGGAACCTGACCCTGAGTTCGAGGCAATCCTG
GACACGGTGGATCCGAACAGAGATGGCCATGTCTCCTTGCAAGAATACATGGCTTTCATGATCAGCCGCG
AAACTGAGAACGTCAAGTCCAGCGAGGAGATTGAGAGCGCCTTCCGGGCCCTCAGCTCAGAGGGAAAGCC
TTACGTGACCAAGGAGGAGCTCTACCAGAACCTGACCCGGGAACAAGCCGACTACTGCGTCTCCCACATG
AAGCCCTACGTGGACGGCAAGGGCCGCGAGCTCCCCACCGCGTTCGACTACGTGGAGTTCACCCGCTCGC
TTTTCGTGAACTGA


Restriction Sites SgfI-MluI     
ACCN NM_001130438
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 TrueClone is provided through our Custom Cloning Process that includes sub-cloning into OriGene's pCMV6 vector and full sequencing to provide a non-variant match to the expected reference without frameshifts, and is delivered as lyophilized plasmid DNA.
Product Components The cDNA clone is shipped in a 2-D bar-coded Matrix tube as dried plasmid DNA. The package also includes 100 pmols of both the corresponding 5' and 3' vector primers in separate vials. Every lot of primer is tested to provide clean sequencing of OriGene TrueClones.
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_001130438.2, NP_001123910.1
RefSeq Size 7907 bp
RefSeq ORF 7434 bp
Locus ID 6709
Cytogenetics 9q34.11
Protein Families Druggable Genome
Protein Pathways Tight junction
Gene Summary 'Spectrins are a family of filamentous cytoskeletal proteins that function as essential scaffold proteins that stabilize the plasma membrane and organize intracellular organelles. Spectrins are composed of alpha and beta dimers that associate to form tetramers linked in a head-to-head arrangement. This gene encodes an alpha spectrin that is specifically expressed in nonerythrocytic cells. The encoded protein has been implicated in other cellular functions including DNA repair and cell cycle regulation. Mutations in this gene are the cause of early infantile epileptic encephalopathy-5. Alternate splicing results in multiple transcript variants.[provided by RefSeq, Sep 2010]'
Transcript Variant: This variant (1) encodes the longest isoform (1).

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*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.