Sptan1 (NM_171983) Rat Untagged Clone

CAT#: RN205584

Sptan1 (untagged ORF) - Rat alpha-spectrin 2 (Spna2), (10 ug)



  "NM_171983" in other vectors (1)

CNY 47,600.00


货期*
12周

规格
    • 10 ug

Product images

经常一起买 (3)
TurboFectin Transfection Reagent (1 mL in 1 vial)
    • 1 ml in 1 vial

CNY 4,090.00


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

Specifications

Product Data
Type Rat Untagged Clone
Tag Tag Free
Synonyms A2a; IPF; Spna2
Vector pCMV6-Entry
E. coli Selection Kanamycin (25 ug/mL)
Mammalian Cell Selection Neomycin
Sequence Data
>RN205584 representing NM_171983
Red=Cloning site Blue=ORF Orange=Stop codon

TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC
GCCGCGATCGCC

ATGGATCCAAGTGGGGTCAAAGTGCTGGAAACAGCCGAGGACATCCAGGAGAGACGACAGCAGGTTCTGG
ATCGGTACCACCGCTTCAAGGAGCTCTCTACCTTGCGGCGGCAGAAACTGGAGGATTCCTATCGCTTCCA
GTTTTTTCAGAGAGATGCTGAGGAGCTGGAGAAGTGGATTCAGGAGAAGCTTCAAGTTGCCTCTGATGAG
AACTACAAAGACCCCACCAACTTGCAGGGAAAGCTCCAGAAACACCAAGCCTTTGAAGCTGAAGTACAGG
CCAACTCAGGAGCCATTGTGAAGCTGGATGAGACAGGAAACTTGATGATTTCTGAAGGGCACTTTGCATC
TGAGACCATCCGGACACGTTTAATGGAGCTGCACCGCCAGTGGGAGTTGCTTTTGGAGAAGATGCGGGAG
AAAGGAATCAAACTGCTGCAGGCACAGAAGCTGGTGCAGTATTTGCGGGAGTGTGAGGATGTAATGGACT
GGATCAATGACAAGGAAGCAATTGTGACATCTGAGGAGCTGGGCCAGGATTTGGAGCATGTAGAGGTACT
ACAGAAGAAGTTTGAAGAGTTTCAAACTGATCTGGCTGCTCATGAAGAAAGAGTTAATGAAGTAAACCAG
TTTGCTGCCAAACTTATCCAGGAGCAGCACCCGGAAGAGGAGCTGATCAAGACCAAGCAGGAGGAGGTGA
ATGCAGCTTGGCAGCGACTGAAAGGCCTGGCTCTTCAAAGGCAGGGGAAGCTCTTTGGTGCTGCCGAGGT
TCAGCGCTTTAACAGGGATGTAGATGAGACCATTGGTTGGATTAAGGAGAAAGAGCAGTTAATGGCCTCT
GATGACTTTGGCAGAGACTTAGCAAGTGTTCAAGCTCTGCTTCGGAAGCATGAGGGTCTGGAGAGAGATC
TTGCTGCTCTAGAGGACAAGGTGAAAGCCCTGTGTGCCGAGGCTGACCGCCTGCAACAGTCACACCCTCT
GAGTGCCAACCAGATCCAGGTGAAGCGAGAGGAACTAATTACCAACTGGGAGCAGATCCGAACTCTGGCC
GCAGAGAGACATGCACGGCTTGATGACTCATACAGGCTTCAGCGCTTTCTTGCTGACTTCCGTGACCTCA
CGAGCTGGGTGACTGAAATGAAAGCCCTCATCAATGCAGATGAACTGGCCAATGACGTGGCTGGTGCTGA
GGCCCTGCTGGACAGGCATCAAGAGCACAAGGGTGAAATCGATGCTCATGAAGATAGCTTTAAGTCTGCA
GATGAGTCTGGGCAGGCCCTACTCGCTGCTGGTCACTATGCCTCAGATGAAGTGAGGGAGAAGCTGAGCA
TCCTCTCTGAGGAGAGAGCTGCCCTGCTGGAGCTGTGGGAGCTTCGGAGGCAGCAGTATGAGCAGTGCAT
GGACTTGCAGCTCTTCTACCGAGACACTGAGCAGGTGGACAACTGGATGAGCAAACAGGAGGCATTCCTG
CTAAATGAAGATTTGGGTGACTCCTTAGACAGTGTGGAAGCTCTTTTGAAGAAGCATGAGGACTTTGAGA
AATCTCTCAGTGCCCAGGAAGAAAAAATCACAGCACTTGATGAGTTTGCAACCAAGCTTATTCAGAACAA
CCACTACGCAATGGAAGATGTAGCCACTCGACGAGATGCTCTCCTGAGCCGCCGCAATGCCCTCCATGAG
CGAGCCATGCATCGCCGGGCACAGCTGGCCGATTCCTTCCACCTGCAGCAGTTCTTCCGCGATTCCGATG
AGCTCAAAAGTTGGGTCAATGAGAAGATGAAAACGGCCACTGATGAAGCTTACAAAGATCCGTCCAACCT
GCAAGGGAAAGTCCAAAAGCACCAGGCTTTTGAGGCTGAGCTCTCAGCCAACCAGAGCCGTATTGATGCC
CTAGAGAAAGCTGGGCAAAAACTAATAGATGTGAACCACTATGCCAAGGAAGAAGTAGCAGCTCGGATGA
ATGAGGTCATCAGTTTGTGGAAGAAACTTCTAGAGGCCACAGAACTGAAAGGAGTCAAGCTCCGAGAAGC
CAACCAGCAGCAACAATTTAATCGCAATGTTGAGGACATTGAGTTGTGGCTGTATGAAGTTGAAGGTCAC
TTGGCTTCAGATGATTATGGTAAAGACCTCACTAATGTCCAGAACCTCCAGAAGAAGCATGCTCTGCTAG
AGGCAGATGTTGCTGCTCACCAGGATCGAATTGACGGCATCACAATTCAGGCCCGCCAGTTCCAAGATGC
TGGCCATTTCGATGCCGAAAACATTAAAAAGAAGCAAGAGGCCCTTGTAGCTCGCTATGAGGCTCTCAAG
GAACCCATGGTGGCCCGGAAGCAGAAGCTGGCAGATTCTCTTCGTCTGCAGCAGCTCTTCCGAGATGTGG
AGGATGAGGAAACCTGGATTCGAGAAAAGGAGCCTATTGCTGCGTCCACTAACAGAGGCAAAGATCTTAT
TGGAGTCCAGAATCTGCTAAAGAAGCACCAAGCTTTACAGGCAGAAATTGCTGGCCATGAACCTCGCATC
AAAGCAGTGACACAAAAGGGCAATGCCATGGTGGAGGAAGGCCATTTTGCTGCTGAGGATGTGAAGGCCA
AACTGAGTGAGCTCAACCAGAAGTGGGAGGCACTGAAAGCCAAAGCCTCCCAGCGGAGGCAGGATCTGGA
GGACTCACTACAGGCCCAGCAGTACTTTGCCGACGCCAATGAAGCTGAGTCCTGGATGCGGGAGAAGGAG
CCCATTGTGGGCAGTACCGACTATGGGAAGGATGAAGACTCTGCTGAGGCTCTGCTCAAGAAGCATGAAG
CTTTGATGTCCGATCTCAGTGCCTACGGCAGCAGCATTCAAGCTTTGCGAGAGCAGGCTCAGTCATGCCG
GCAACAAGTGGCCCCCATGGATGATGAGACTGGCAAGGAGCTGGTCTTGGCTCTCTATGACTATCAAGAG
AAGAGCCCTCGTGAGGTCACCATGAAGAAAGGGGATATCCTCACCTTGCTCAACAGCACAAACAAGGACT
GGTGGAAAGTGGAAGTGAATGACCGTCAGGGTTTTGTGCCAGCTGCGTATGTGAAGAAGCTGGACCCCGC
CCAGTCAGCCTCAAGGGAGAACCTCCTGGAAGAACAGGGCAGCATTGCTCTGCGGCAGGGGCAGATCGAC
AACCAGACACGCATAACTAAGGAGGCCGGCAGTGTATCTCTGCGTATGAAACAGGTGGAAGAACTGTATC
AGTCTCTGCTGGAGCTGGGTGAGAAGAGAAAAGGCATGTTGGAGAAGAGTTGCAAGAAGTTCATGTTGTT
CCGGGAAGCGAACGAGCTACAGCAGTGGATCAACGAGAAGGAAGCTGCTCTAACGAGTGAAGAGGTTGGC
GCTGACTTGGAGCAGGTCGAGGTGCTGCAGAAGAAGTTCGATGACTTCCAGAAGGATCTGAAAGCCAATG
AGTCCCGCCTGAAGGACATTAACAAAGTGGCCGAGGACCTGGAGTCTGAAGGTCTCATGGCGGAAGAAGT
GCAGGCCGTGCAGCAGCAGGAGGTGTATGGTATGATGCCCAGGGATGAAGCAGATTCCAAGACCGCCTCC
CCATGGAAGTCTGCTCGACTGATGGTCCACACAGTGGCCACCTTCAACTCCATCAAGGAGCTGAATGAGC
GCTGGCGGTCCCTGCAACAGCTGGCTGAGGAACGTAGCCAGCTCCTGGGCAGTGCACACGAAGTACAGAG
GTTCCACAGGGATGCGGATGAAACCAAAGAATGGATTGAGGAGAAGAACCAGGCTCTGAACACAGACAAC
TATGGCCATGATCTAGCTAGCGTCCAGGCCCTGCAGCGCAAACACGAAGGCTTCGAGAGGGACCTTGCAG
CTCTTGGTGACAAGGTGAATTCCCTTGGGGAAACAGCCCAGAGGCTGATCCAGTCCCACCCTGAATCTGC
AGAGGACTTAAAGGAAAAGTGCACAGAGTTAAACCAGGCCTGGACCAGCCTAGGGAAGCGTGCAGACCAG
CGCAAGGCCAAACTGGGTGACTCCCATGACCTGCAGCGCTTCCTTAGCGATTTCCGGGACCTCATGTCTT
GGATCAATGGAATACGAGGGTTGGTATCTTCAGATGAACTGGCCAAGGATGTCACTGGAGCTGAGGCTTT
GCTGGAGCGACACCAGGAACACCGGACAGAAATTGATGCCAGGGCTGGCACTTTCCAGGCATTTGAGCAG
TTTGGGCAGCAGCTGTTGGCTCATGGGCACTATGCCAGCCCAGAGATCAAGGAGAAACTTGATATTCTTG
ACCAGGAGCGCACAGACCTGGAGAAGGCCTGGGTTCAGCGCAGAATGATGCTGGACCACTGCCTGGAGTT
GCAGCTGTTCCATCGAGACTGTGAGCAAGCAGAGAACTGGATGGCTGCCCGGGAAGCCTTCCTAAACACA
GAAGACAAAGGAGACTCGCTGGACAGTGTGGAGGCTCTGATCAAAAAACATGAAGACTTCGACAAAGCTA
TCAATGTCCAGGAGGAGAAGATAGCTGCCCTGCAGGCCTTTGCCGACCAGCTCATTGCTCTGGACCACTA
TGCCAAGGGAGACATTGCAAACCGACGCAATGAGGTCCTGGACAGGTGGCGCCGCCTAAAAGCCCAGATG
ATTGAGAAAAGGTCAAAGCTCGGAGAATCTCAAACACTTCAGCAGTTCAGCCGGGATGTAGATGAGATTG
AAGCTTGGATCAGTGAGAAGTTACAAACAGCCAGCGATGAGTCATACAAGGACCCCACCAACATCCAGAG
CAAGCACCAGAAGCACCAAGCCTTTGAGGCAGAACTGCACGCCAATGCTGACCGAATCCGTGGAGTTATT
GACATGGGCAACTCCCTCATTGAGCGTGGGGCCTGTGCTGGCAGTGAGGATGCTGTCAAGGCCCGCCTGG
CTGCCCTTGCAGACCAGTGGCAGTTCCTGGTGCAGAAGTCAGCTGAGAAGAGCCAGAAGCTGAAAGAGGC
CAATAAGCAGCAGAACTTCAACACCGGGATCAAAGACTTTGACTTCTGGCTTTCTGAGGTGGAGGCTCTC
CTGGCATCTGAAGACTACGGCAAAGACCTGGCTTCCGTGAACAACCTGCTCAAAAAGCATCAGCTGCTGG
AGGCAGACATATCGGCCCACGAGGATCGTCTGAAGGACCTGAACAGCCAGGCTGACAGCCTGATGACTAG
CAGTGCCTTCGACACCTCCCAAGTGAAAGAGAAGCGGGACACCATCAATGGACGCTTTCAGAAGATCAAG
AGCATGGCAACCTCCCGAAGAGCAAAACTGAGCGAGTCCCATCGCCTGCACCAGTTTTTCCGAGACATGG
ATGACGAGGAGTCCTGGATCAAGGAGAAGAAGTTGTTAGTGAGCTCTGAGGACTATGGCAGAGACCTCAC
TGGTGTTCAAAATCTGAGGAAGAAACACAAGCGGCTAGAAGCCGAACTGGCCGCACACGAACCAGCCATT
CAGGGTGTCCTGGACACGGGGAAGAAGCTGTCTGATGACAACACCATCGGGCAGGAGGAGATCCAGCAGC
GTCTCGCACAGTTTGTGGAGCACTGGAAGGAACTGAAACAGCTAGCAGCTGCACGGGGCCAGCGGCTGGA
GGAGTCCTTGGAGTATCAGCAGTTTGTGGCCAACGTGGAGGAGGAGGAGGCTTGGATCAATGAGAAGATG
ACCCTGGTGGCCAGCGAAGACTACGGGGACACTCTTGCTGCCATCCAGGGCTTACTGAAGAAACATGAAG
CATTTGAGACAGACTTCACTGTCCACAAGGATCGAGTGAATGATGTCTGTACTAATGGACAAGACCTCAT
TAAGAAGAACAATCACCATGAGGAGAACATCTCTTCAAAGATGAAGGGTCTGAATGGTAAAGTGTCTGAC
CTGGAGAAAGCAGCAGCTCAGCGGAAAGCGAACGTGGATGAGAACTCGGCCTTCCTTCAGTTCAATTGGA
AGGCTGACGTGGTGGAGTCCTGGATTGGTGAAAAGGAGAACAGCTTGAAAACAGATGATTATGGCCGAGA
TCTGTCTTCTGTCCAAACTCTGCTCACCAAGCAGGAGACATTTGATGCTGGCCTGCAGGCCTTCCAGCAG
GAGGGCATTGCCAATATCACTGCCCTCAAAGACCAGCTGCTAGCTGCCAAGCACATTCAGTCGAAGGCCA
TCGAGGCCCGACATGCCTCCCTCATGAAGAGGTGGACCCAGCTGTTGGCCAATTCAGCTACCCGCAAGAA
GAAGTTGCTAGAGGCCCAGAGTCATTTCCGAAAGGTAGAAGACCTCTTCCTGACCTTTGCCAAAAAGGCA
TCGGCTTTCAACAGCTGGTTTGAGAATGCAGAAGAGGACCTCACAGACCCAGTGCGCTGCAACTCTCTGG
AAGAAATCAAAGCCCTCCGAGAGGCTCATGATGCCTTCCGCTCATCGCTCAGCTCTGCGCAGGCCGACTT
CAACCAGCTAGCCGAGCTGGACCGTCAGATCAAGAGTTTCCGAGTGGCCTCCAATCCCTACACCTGGTTC
ACCATGGAGGCCCTGGAAGAGACGTGGAGGAACCTACAGAAGATCATTAAGGAGCGAGAACTGGAGCTGC
AGAAGGAACAGCGGCGGCAGGAGGAGAATGACAACGTACGCCAAGAGTTTGCCCAGCATGCCAACGCGTT
CCACCAGTGGATCCAGGAAACAAGAACGTATCTCCTCGACGGGTCCTGCATGGTCGAAGAGTCGGGAACT
CTGGAATCTCAGCTTGAAGCTACCAAACGCAAGCACCAGGAGATTCGGGCCATGAGAAGTCAGCTGAAGA
AGATTGAGGACCTGGGTGCTGCCATGGAGGAAGCCCTCATCCTGGACAACAAGTACACTGAGCACAGCAC
TGTGGGCCTGGCCCAGCAGTGGGACCAGTTAGACCAGCTGGGCATGCGCATGCAGCACAACCTGGAGCAG
CAGATCCAGGCCAGGAACACAACAGGAGTCACTGAGGAGGCCCTCAAGGAGTTCAGCATGATGTTCAAAC
ACTTCGACAAGGACAAGTCTGGCCGGCTGAATCATCAAGAGTTCAAATCCTGCCTTCGTTCTCTGGGTTA
CGACCTGCCAATGGTTGAGGAAGGAGAGCCTGATCCTGAGTTTGAGGCCATACTGGACACTGTTGATCCC
AACAGGGACGGCCACGTCTCCCTGCAAGAGTACATGGCTTTCATGATCAGCCGTGAAACCGAGAATGTCA
AGTCCAGTGAAGAGATCGAGAGTGCTTTCCGGGCCCTCAGCTCCGAGGGCAAGCCTTATGTGACCAAGGA
GGAGCTCTACCAGAACCTGACCCGGGAACAAGCTGACTACTGTGTCTCCCACATGAAGCCCTATGTGGAT
GGCAAGGGCCGCGAACTTCCAACTGCCTTCGACTACGTGGAGTTCACCCGTTCTCTCTTTGTGAATTGA


AGCGGACCGACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCC
TGGATTACAAGGATGACGACGATAAGGTTTAA
Restriction Sites SgfI-RsrII     
ACCN NM_171983
Insert Size 7419 bp
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).
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_171983.2, NP_741984.2
RefSeq Size 7866 bp
RefSeq ORF 7419 bp
Locus ID 64159
UniProt ID P16086
Gene Summary a filamentous protein that plays an important role in membrane organization [RGD, Feb 2006]
*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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