SCN11A (NM_014139) Human Untagged Clone

CAT#: SC304049

SCN11A (untagged)-Human sodium channel, voltage-gated, type XI, alpha subunit (SCN11A)



  "NM_014139" in other vectors (2)

CNY 12,048.00


货期*
现货

规格
    • 10 ug

Product images

经常一起买 (4)
Anti-SCN11A Rabbit Polyclonal Antibody
    • 100 ul

CNY 1,999.00
CNY 3,280.00


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 Human Untagged Clone
Tag Tag Free
Synonyms FEPS3; HSAN7; NaN; NAV1.9; PN5; SCN12A; SNS-2
Vector pCMV6-XL5
E. coli Selection Ampicillin (100 ug/mL)
Mammalian Cell Selection None
Sequence Data
>OriGene sequence for NM_014139 edited
GGTACCATGGATGACAGATGCTACCCAGTAATCTTTCCAGATGAGCGGAATTTCCGCCCC
TTCACTTCCGACTCTCTGGCTGCAATTGAGAAGCGGATTGCCATCCAAAAGGAGAAAAAG
AAGTCTAAAGACCAGACAGGAGAAGTACCCCAGCCTCGGCCTCAGCTTGACCTAAAGGCC
TCCAGGAAGTTGCCCAAGCTCTATGGCGACATTCCTCGTGAGCTCATAGGAAAGCCTCTG
GAAGACTTGGACCCATTCTACCGAAATCATAAGACATTTATGGTGTTAAACAGAAAGAGG
ACAATCTACCGCTTCAGTGCCAAGCATGCCTTGTTCATTTTTGGGCCTTTCAATTCAATC
AGAAGTTTAGCCATTAGAGTCTCAGTCCATTCATTGTTCAGCATGTTCATTATCGGCACC
GTTATCATCAACTGCGTGTTCATGGCTACAGGGCCTGCTAAAAACAGCAACAGTAACAAT
ACTGACATTGCAGAGTGTGTCTTCACTGGGATTTATATTTTTGAAGCTTTGATTAAAATA
TTGGCAAGAGGTTTCATTCTGGATGAGTTTTCTTTCCTTCGAGATCCATGGAACTGGCTG
GACTCCATTGTCATTGGAATAGCGATTGTGTCATATATTCCAGGAATCACCATCAAACTA
TTGCCCCTGCGTACCTTCCGTGTGTTCAGAGCTTTGAAAGCAATTTCAGTAGTTTCACGT
CTGAAGGTCATCGTGGGGGCCTTGCTACGCTCTGTGAAGAAGCTGGTCAACGTGATTATC
CTCACCTTCTTTTGCCTCAGCATCTTTGCCCTGGTAGGTCAGCAGCTCTTCATGGGAAGT
CTGAACCTGAAATGCATCTCGAGGGACTGTAAAAATATCAGTAACCCGGAAGCTTATGAC
CATTGCTTTGAAAAGAAAGAAAATTCACCTGAATTCAAAATGTGTGGCATCTGGATGGGT
AACAGTGCCTGTTCCATACAATATGAATGTAAGCACACCAAAATTAATCCTGACTATAAT
TATACGAATTTTGACAACTTTGGCTGGTCTTTTCTTGCCATGTTCCGGCTGATGACCCAA
GATTCCTGGGAGAAGCTTTATCAACAGACCCTGCGTACTACTGGGCTCTACTCAGTCTTC
TTCTTCATTGTGGTCATTTTCCTGGGCTCCTTCTACCTGATTAACTTAACCCTGGCTGTT
GTTACCATGGCATATGAGGAGCAGAACAAGAATGTAGCTGCAGAGATAGAGGCCAAGGAA
AAGATGTTTCAGGAAGCCCAGCAGCTGTTAAAGGAGGAAAAGGAGGCTCTGGTTGCCATG
GGAATTGACAGAAGTTCACTTACTTCCCTTGAAACATCATATTTTACCCCAAAAAAGAGA
AAGCTCTTTGGTAATAAGAAAAGGAAGTCCTTCTTTTTGAGAGAGTCTGGGAAAGACCAG
CCTCCTGGGTCAGATTCTGATGAAGATTGCCAAAAAAAGCCACAGCTCCTAGAGCAAACC
AAACGACTGTCCCAGAATCTATCACTGGACCACTTTGATGAGCATGGAGATCCTCTCCAA
AGGCAGAGAGCACTGAGTGCTGTCAGCATCCTCACCATCACCATGAAGGAACAAGAAAAA
TCACAAGAGCCTTGTCTCCCTTGTGGAGAAAACCTGGCATCCAAGTACCTCGTGTGGAAC
TGTTGCCCCCAGTGGCTGTGCGTTAAGAAGGTCCTGAGAACTGTGATGACTGACCCGTTT
ACTGAGCTGGCCATCACCATCTGCATCATCATCAACACTGTCTTCTTGGCCATGGAGCAT
CACAAGATGGAGGCCAGTTTTGAGAAGATGTTGAATATAGGGAATTTGGTTTTCACTAGC
ATTTTTATAGCAGAAATGTGCCTAAAAATCATTGCGCTCGATCCCTACCACTACTTTCGC
CGAGGCTGGAACATTTTTGACAGCATTGTTGCTCTTCTGAGTTTTGCAGATGTAATGAAC
TGTGTACTTCAAAAGAGAAGCTGGCCATTCTTGCGTTCCTTCAGAGTGCTCAGGGTCTTC
AAGTTAGCCAAATCCTGGCCAACTTTGAACACACTAATTAAGATAATCGGCAACTCTGTC
GGAGCCCTTGGAAGCCTGACTGTGGTCCTGGTCATTGTGATCTTTATTTTCTCAGTAGTT
GGCATGCAGCTTTTTGGCCGTAGCTTCAATTCCCAAAAGAGTCCAAAACTCTGTAACCCG
ACAGGCCCGACAGTCTCATGTTTACGGCACTGGCACATGGGGGATTTCTGGCACTCCTTC
CTAGTGGTATTCCGCATCCTCTGCGGGGAATGGATCGAAAATATGTGGGAATGTATGCAA
GAAGCGAATGCATCATCATCATTGTGTGTTATTGTCTTCATATTGATCACGGTGATAGGA
AAACTTGTGGTGCTCAACCTCTTCATTGCCTTACTGCTCAATTCCTTTAGCAATGAGGAA
AGAAATGGAAACTTAGAAGGAGAGGCCAGGAAAACTAAAGTCCAGTTAGCACTGGATCGA
TTCCGCCGGGCTTTTTGTTTTGTGAGACACACTCTTGAGCATTTCTGTCACAAGTGGTGC
AGGAAGCAAAACTTACCACAGCAAAAAGAGGTGGCAGGAGGCTGTGCTGCACAAAGCAAA
GACATCATTCCCCTGGTCATGGAGATGAAAAGGGGCTCAGAGACCCAGGAGGAGCTTGGT
ATACTAACCTCTGTACCAAAGACCCTGGGCGTCAGGCATGATTGGACTTGGTTGGCACCA
CTTGCGGAGGAGGAAGATGACGTTGAATTTTCTGGTGAAGATAATGCACAGCGCATCACA
CAACCTGAGCCTGAACAACAGGCCTATGAGCTCCATCAGGAGAACAAGAAGCCCACGAGC
CAGAGAGTTCAAAGTGTGGAAATTGACATGTTCTCTGAAGATGAGCCTCATCTGACCATA
CAGGATCCCCGAAAGAAGTCTGATGTTACCAGTATACTATCAGAATGTAGCACCATTGAT
CTTCAGGATGGCTTTGGATGGTTACCTGAGATGGTTCCCAAAAAGCAACCAGAGAGATGT
TTGCCCAAAGGCTTTGGTTGCTGCTTTCCATGCTGTAGCGTGGACAAGAGAAAGCCTCCC
TGGGTCATTTGGTGGAACCTGCGGAAAACCTGCTACCAAATAGTGAAACACAGCTGGTTT
GAGAGCTTTATTATCTTTGTGATTCTGCTGAGCAGTGGGGCACTGATATTTGAAGATGTT
CACCTTGAGAACCAACCCAAAATCCAAGAATTACTAAATTGTACTGACATTATTTTTACA
CATATTTTTATCCTGGAGATGGTACTAAAATGGGTAGCCTTCGGATTTGGAAAGTATTTC
ACCAGTGCCTGGTGCTGCCTTGATTTCATCATTGTGATTGTCTCTGTGACCACCCTCATT
AACTTAATGGAATTGAAGTCCTTCCGGACTCTACGAGCACTGAGGCCTCTTCGTGCGCTG
TCCCAGTTTGAAGGAATGAAGGTGGTGGTCAATGCTCTCATAGGTGCCATACCTGCCATT
CTGAATGTTTTGCTTGTCTGCCTCATTTTCTGGCTCGTATTTTGTATTCTGGGAGTATAC
TTCTTTTCTGGAAAATTTGGGAAATGCATTAATGGAACAGACTCAGTTATAAATTATACC
ATCATTACAAATAAAAGTCAATGTGAAAGTGGCAATTTCTCTTGGATCAACCAGAAAGTC
AACTTTGACAATGTGGGAAATGCTTACCTCGCTCTGCTGCAAGTGGCAACATTTAAGGGC
TGGATGGATATTATATATGCAGCTGTTGATTCCACAGAGAAAGAACAACAGCCAGAGTTT
GAGAGCAATTCACTCGGTTACATTTACTTCGTAGTCTTTATCATCTTTGGCTCATTCTTC
ACTCTGAATCTCTTCATTGGCGTTATCATTGACAACTTCAACCAACAGCAGAAAAAGTTA
GGTGGCCAAGACATTTTTATGACAGAAGAACAGAAGAAATACTATAATGCAATGAAAAAA
TTAGGATCCAAAAAACCTCAAAAACCCATTCCACGGCCTCTGAACAAATGTCAAGGTCTC
GTGTTCGACATAGTCACAAGCCAGATCTTTGACATCATCATCATAAGTCTCATTATCCTA
AACATGATTAGCATGATGGCTGAATCATACAACCAACCCAAAGCCATGAAATCCATCCTT
GACCATCTCAACTGGGTCTTTGTGGTCATCTTTACGTTAGAATGTCTCATCAAAATCTTT
GCTTTGAGGCAATACTACTTCACCAATGGCTGGAATTTATTTGACTGTGTGGTCGTGCTT
CTTTCCATTGTTAGTACAATGATTTCTACCTTGGAAAATCAGGAGCACATTCCTTTCCCT
CCGACGCTCTTCAGAATTGTCCGCTTGGCTCGGATTGGCCGAATCCTGAGGCTTGTCCGG
GCTGCACGAGGAATCAGGACTCTCCTCTTTGCTCTGATGATGTCGCTTCCTTCTCTGTTC
AACATTGGTCTTCTACTCTTTCTGATTATGTTTATCTATGCCATTCTGGGTATGAACTGG
TTTTCCAAAGTGAATCCAGAGTCTGGAATCGATGACATATTCAACTTCAAGACTTTTGCC
AGCAGCATGCTCTGTCTCTTCCAGATAAGCACATCAGCAGGTTGGGATTCCCTGCTCAGC
CCCATGCTGCGATCAAAAGAATCATGTAACTCTTCCTCAGAAAACTGCCACCTCCCTGGC
ATAGCCACATCCTACTTTGTCAGTTACATTATCATCTCCTTTCTCATTGTTGTCAACATG
TACATTGCTGTGATTTTAGAGAACTTCAATACAGCCACTGAAGAAAGTGAGGACCCTTTG
GGTGAAGATGACTTTGACATATTTTATGAAGTGTGGGAAAAGTTTGACCCAGAAGCAACA
CAATTTATCAAATATTCTGCCCTTTCTGACTTTGCTGATGCCTTGCCTGAGCCTTTGCGT
GTCGCAAAGCCAAATAAATATCAATTTCTAGTAATGGACTTGCCCATGGTGAGTGAAGAT
CGCCTCCACTGCATGGATATTCTTTTCGCCTTCACCGCTAGGGTACTCGGTGGCTCTGAT
GGCCTAGATAGTATGAAAGCAATGATGGAAGAGAAGTTCATGGAAGCCAATCCTCTCAAG
AAGTTGTATGAACCCATAGTCACCACCACCAAGAGAAAGGAAGAGGAAAGAGGTGCTGCT
ATTATTCAAAAGGCCTTTCGAAAGTACATGATGAAGGTGACCAAGGGTGACCAAGGTGAC
CAAAATGACTTGGAAAACGGGCCTCATTCACCACTCCAGACTCTTTGCAATGGAGACTTG
TCTAGCTTTGGGGTGGCCAAGGGCAAGGTCCACTGTGACTGATCTAGA
Restriction Sites Please inquire     
ACCN NM_014139
Insert Size 5376 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).
OTI Annotation The open reading frame of this TrueClone was fully sequenced and found to be a perfect match to the protein associated to this reference. This clone may be unstable or toxic at high copy number in common E. coli strain. We recommend using a lower copy number E. coli strain, such as CopyCutter strain (http://www.epibio.com/item.asp?ID=435) for transformation and plasmid preparation. Please be aware that the DNA yield could be low. Additional aliquots of this clone can be ordered from OriGene.
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.
Note Plasmids are not sterile.  For experiments where strict sterility is required, filtration with 0.22um filter is required.
Reference Data
RefSeq NM_014139.1, NP_054858.1
RefSeq Size 6528 bp
RefSeq ORF 5376 bp
Locus ID 11280
UniProt ID Q9UI33
Protein Families Druggable Genome, Ion Channels: Sodium, Transmembrane
Gene Summary Voltage-gated sodium channels are transmembrane glycoprotein complexes composed of a large alpha subunit with 24 transmembrane domains and one or more regulatory beta subunits. They are responsible for the generation and propagation of action potentials in neurons and muscle. This gene encodes one member of the sodium channel alpha subunit gene family, and is highly expressed in nociceptive neurons of dorsal root ganglia and trigeminal ganglia. It mediates brain-derived neurotrophic factor-evoked membrane depolarization and is a major effector of peripheral inflammatory pain hypersensitivity. Mutations in this gene have been associated with hereditary sensory and autonomic neuropathy type VII and familial episodic pain syndrome-3. Alternative splicing results in multiple transcript variants. [provided by RefSeq, Mar 2017]
Transcript Variant: This variant (1) differs in the 5' UTR compared to variant 1. Both variants 1 and 2 encode the same protein.
*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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