Ankyrin brain (ANK2) (NM_001148) Human Untagged Clone
CAT#: SC309444
ANK2 (untagged)-Human ankyrin 2, neuronal (ANK2), transcript variant 1
CNY 76,100.00
货期*
详询
规格
Product images
经常一起买 (4)
Specifications
Product Data | |
Type | Human Untagged Clone |
Tag | Tag Free |
Synonyms | ANK-2; brank-2; CFAP87; FAP87; LQT4 |
Vector | pCMV6 series |
Sequence Data |
>NCBI ORF sequence for NM_001148, the custom clone sequence may differ by one or more nucleotides
ATGATGAACGAAGATGCAGCTCAGAAAAGCGACAGTGGAGAGAAGTTCAACGGCAGTAGT CAGAGGAGAAAAAGACCCAAGAAGTCTGACAGCAATGCAAGCTTCCTCCGTGCTGCCAGA GCAGGCAACCTGGACAAAGTTGTGGAATATCTGAAGGGGGGCATAGACATCAATACCTGC AATCAGAATGGACTCAACGCTCTCCATCTGGCTGCCAAGGAAGGCCACGTGGGGCTGGTG CAGGAGCTGCTGGGAAGAGGGTCCTCTGTGGATTCTGCCACTAAGAAGGGAAATACCGCT CTTCACATTGCATCTTTGGCTGGACAAGCAGAAGTTGTCAAAGTTCTTGTTAAGGAAGGA GCCAATATTAATGCACAGTCTCAGAATGGCTTTACTCCTTTATACATGGCTGCCCAAGAG AATCACATTGATGTTGTAAAATATTTGCTGGAAAATGGAGCTAATCAGAGCACTGCTACA GAGGATGGCTTTACTCCTCTAGCTGTGGCACTCCAGCAAGGACACAACCAGGCGGTGGCC ATCCTCTTGGAGAATGACACCAAAGGGAAAGTGAGGCTGCCAGCTCTGCATATTGCCGCT AGGAAAGACGACACCAAATCTGCCGCACTTCTGCTTCAGAATGACCACAATGCTGACGTA CAATCCAAGATGATGGTGAATAGGACAACTGAGAGTGGTTTTACCCCTTTGCACATAGCT GCACATTACGGAAATGTCAACGTGGCAACTCTTCTTCTAAACCGGGGAGCTGCTGTGGAC TTCACAGCCAGGAATGGAATCACTCCTCTGCATGTGGCTTCCAAAAGAGGAAATACAAAC ATGGTGAAGCTCTTACTGGATCGAGGCGGTCAGATCGATGCCAAAACTAGGGATGGGTTG ACACCACTTCACTGTGCTGCACGAAGTGGGCATGACCAAGTGGTGGAACTTCTGTTGGAA CGGGGTGCCCCCTTGCTGGCAAGGACTAAGAATGGGCTGTCTCCACTACACATGGCTGCC CAGGGAGACCACGTGGAATGTGTGAAGCACCTGTTACAGCACAAGGCACCTGTTGATGAT GTCACCCTAGACTACCTGACAGCCCTCCACGTTGCTGCGCACTGTGGCCACTACCGTGTA ACCAAACTCCTTTTAGACAAGAGAGCCAATCCGAACGCCAGAGCCCTGAATGGTTTTACT CCACTGCACATTGCCTGCAAGAAAAACCGCATCAAAGTCATGGAACTGCTGGTGAAATAT GGGGCTTCAATCCAAGCTATAACAGAGTCTGGCCTCACACCAATACATGTGGCTGCCTTC ATGGGCCACTTGAACATTGTCCTCCTTCTGCTGCAGAACGGAGCCTCTCCAGATGTCACT AACATTCGTGGTGAGACGGCACTACACATGGCAGCCCGAGCCGGGCAGGTGGAAGTGGTC CGATGCCTCCTGAGAAATGGTGCCCTTGTTGATGCCAGAGCCAGGGAGGAACAGACACCT TTACATATTGCCTCCCGCCTGGGTAAGACAGAAATTGTCCAGCTGCTTCTACAACATATG GCTCATCCAGATGCGGCCACTACAAATGGGTACACACCACTGCACATCTCTGCCCGGGAG GGCCAGGTGGATGTGGCATCAGTCCTATTGGAAGCAGGAGCAGCCCACTCCTTAGCTACC AAGAAGGGTTTTACTCCCCTGCATGTAGCAGCCAAGTATGGAAGCCTGGATGTGGCAAAA CTTCTCTTGCAACGCCGTGCTGCCGCAGATTCTGCAGGGAAGAACGGCCTTACCCCGCTC CATGTTGCTGCTCATTATGACAACCAGAAGGTGGCGCTGCTGTTACTGGAGAAGGGTGCT TCCCCTCATGCCACTGCCAAGAATGGCTATACTCCGTTACATATTGCTGCCAAGAAGAAT CAAATGCAGATAGCTTCCACACTCCTGAACTATGGAGCAGAGACAAACATTGTGACAAAG CAAGGAGTAACTCCACTCCATCTGGCCTCGCAGGAGGGGCACACAGATATGGTTACCTTG CTTCTGGATAAGGGAGCCAATATCCACATGTCAACTAAGAGTGGACTCACATCCTTACAC CTTGCAGCCCAGGAAGATAAAGTGAATGTTGCTGATATTCTCACCAAGCATGGAGCTGAT CAGGATGCTCATACAAAGCTTGGTTACACACCTTTAATTGTGGCCTGTCACTATGGAAAT GTGAAAATGGTCAACTTTCTTCTGAAGCAGGGAGCAAATGTTAACGCAAAAACCAAGAAC GGCTACACGCCTTTGCACCAGGCCGCTCAGCAGGGTCACACGCACATCATCAACGTCCTG CTCCAGCATGGGGCCAAGCCCAACGCCACCACTGCGAATGGCAACACTGCCTTGGCGATT GCTAAGCGTCTGGGCTACATCTCCGTGGTCGACACCCTGAAGGTTGTGACTGAGGAGGTC ACCACCACCACCACAACTATTACAGAAAAACACAAACTAAATGTACCTGAGACGATGACT GAGGTTCTTGATGTTTCTGATGAAGAGGGTGATGACACAATGACTGGTGATGGGGGAGAA TACCTTAGGCCTGAGGACCTAAAAGAACTGGGTGATGACTCACTACCCAGCAGTCAGTTC CTGGATGGTATGAATTACCTGCGATACAGCTTGGAGGGAGGACGATCTGACAGCCTTCGA TCCTTCAGTTCCGACAGGTCTCACACTCTGAGCCATGCCTCCTACCTGAGGGACAGTGCC GTGATGGATGACTCAGTTGTGATTCCCAGTCACCAGGTGTCAACTCTAGCCAAGGAGGCA GAAAGGAATTCTTATCGCCTAAGCTGGGGCACTGAGAACTTAGACAACGTGGCTCTTTCT TCTAGTCCTATTCATTCAGGTTTCCTGGTTAGTTTTATGGTGGATGCCCGAGGTGGTGCT ATGCGAGGATGCAGACACAATGGGCTCCGAATCATTATTCCACCTCGGAAATGTACTGCT CCAACGCGAGTCACCTGCCGACTGGTCAAGCGCCACAGACTGGCAACAATGCCTCCAATG GTGGAAGGAGAAGGCCTGGCCAGTCGCCTGATCGAAGTTGGACCTTCTGGTGCTCAGTTC CTTGGTAAACTTCACCTGCCAACGGCTCCTCCCCCACTTAATGAGGGAGAAAGTTTGGTC AGCCGCATTCTTCAGCTGGGGCCTCCTGGAACCAAATTCCTTGGGCCTGTGATCGTGGAG ATCCCTCACTTTGCGGCCCTTCGAGGAAAGGAAAGGGAACTGGTGGTCCTGCGCAGTGAG AATGGGGACAGCTGGAAAGAGCATTTCTGTGACTACACTGAAGATGAATTGAATGAAATT CTTAACGGCATGGATGAAGTACTGGATAGCCCAGAAGACCTAGAAAAGAAACGAATCTGC CGCATCATCACCCGAGACTTCCCACAGTACTTTGCAGTGGTGTCTCGTATCAAACAGGAC AGCAATCTGATTGGCCCAGAAGGAGGTGTACTGAGCAGCACAGTGGTGCCCCAGGTGCAG GCCGTCTTCCCAGAGGGGGCACTCACCAAGCGGATCCGCGTAGGCCTGCAGGCTCAACCT ATGCACAGTGAGCTGGTTAAGAAGATCCTAGGCAACAAAGCTACCTTCAGCCCTATAGTC ACTTTGGAACCTAGAAGAAGAAAATTCCACAAACCAATTACCATGACCATTCCTGTCCCC AAAGCTTCAAGTGATGTCATGTTGAATGGTTTTGGGGGAGATGCACCAACCTTAAGATTA CTATGCAGCATAACAGGTGGAACCACCCCTGCCCAGTGGGAAGATATTACAGGAACTACG CCATTAACATTTGTCAATGAATGTGTTTCCTTTACAACAAACGTGTCTGCCAGGTTCTGG CTGATAGATTGTCGACAGATCCAGGAATCCGTTACTTTTGCATCACAAGTATACAGAGAA ATTATCTGCGTACCTTATATGGCCAAATTTGTAGTGTTTGCCAAATCACATGACCCCATT GAAGCCAGGTTGAGGTGTTTCTGCATGACTGATGATAAAGTGGATAAGACCCTTGAACAA CAAGAAAATTTTGCTGAGGTGGCCAGAAGCAGGGATGTGGAGGTGTTAGAAGGAAAACCC ATCTACGTTGATTGTTTCGGCAACTTGGTACCATTAACTAAAAGTGGCCAGCATCATATA TTCAGTTTTTTTGCCTTCAAAGAAAATAGACTTCCTCTATTTGTCAAGGTACGCGATACG ACTCAGGAACCTTGCGGACGACTATCATTTATGAAGGAGCCAAAATCCACGAGAGGCCTG GTGCATCAAGCTATTTGCAACTTAAACATCACTTTGCCGATTTATACAAAGGAATCAGAG TCAGATCAAGAACAGGAGGAAGAGATCGATATGACATCAGAAAAAAATGATGAGACAGAA TCTACAGAAACATCTGTCCTGAAAAGTCACCTGGTTAATGAAGTTCCTGTCCTAGCAAGT CCGGACTTGCTCTCTGAAGTTTCTGAGATGAAACAAGATTTGATCAAAATGACCGCCATC TTGACCACAGATGTGTCTGATAAGGCAGGTTCTATTAAAGTGAAGGAGCTGGTGAAGGCT GCTGAGGAAGAGCCAGGAGAGCCTTTTGAAATCGTTGAAAGAGTTAAAGAGGACTTAGAG AAAGTGAATGAAATCCTGAGAAGTGGAACCTGCACAAGAGATGAAAGCAGTGTGCAGAGC TCTCGGTCTGAGAGAGGATTAGTTGAAGAGGAATGGGTTATTGTCAGTGATGAGGAAATA GAAGAGGCTAGGCAAAAAGCACCTTTAGAAATCACTGAATATCCATGTGTAGAAGTTAGA ATAGATAAAGAGATCAAAGGAAAAGTAGAGAAAGACTCAACTGGGCTAGTGAACTACCTT ACTGATGATCTGAATACCTGTGTGCCTCTTCCCAAAGAGCAGCTGCAGACAGTTCAAGAT AAGGCAGGGAAGAAATGTGAGGCTCTGGCTGTTGGCAGGAGCTCTGAAAAGGAAGGGAAA GACATACCCCCAGATGAGACACAGAGTACACAGAAACAGCACAAACCAAGCTTGGGAATA AAGAAGCCAGTAAGAAGGAAATTAAAAGAAAAGCAGAAACAAAAAGAGGAAGGTTTACAA GCTAGTGCAGAGAAAGCTGAACTTAAAAAAGGTAGTTCAGAAGAGTCATTAGGTGAAGAC CCAGGTTTAGCCCCTGAACCCCTTCCCACTGTCAAGGCCACATCTCCTTTGATAGAAGAA ACTCCCATTGGTTCCATAAAGGACAAAGTAAAGGCCCTTCAGAAGCGAGTGGAAGATGAA CAGAAAGGTCGAAGCAAGTTGCCCATCAGAGTCAAAGGCAAGGAGGACGTGCCAAAAAAG ACCACCCACAGGCCACATCCAGCTGCGTCACCCTCTCTGAAGTCAGAGAGACATGCGCCA GGGTCTCCCTCCCCTAAAACAGAAAGACACTCTACTCTTTCCTCTTCCGCAAAAACTGAA AGGCACCCTCCAGTATCACCATCAAGTAAAACTGAGAAACACTCACCTGTGTCACCCTCT GCAAAAACGGAAAGACATTCACCTGCGTCATCATCGAGTAAAACTGAGAAACACTCACCT GTATCACCCTCGACAAAAACTGAAAGGCACTCTCCTGTGTCATCTACAAAAACAGAAAGA CACCCACCTGTTTCGCCTTCAGGCAAAACAGACAAACGTCCACCTGTATCGCCCTCCGGG AGGACAGAAAAACACCCGCCAGTATCGCCTGGGAGAACAGAAAAACGCTTGCCTGTTTCA CCCTCCGGAAGAACGGACAAGCACCAACCTGTATCAACAGCTGGGAAAACTGAGAAGCAC CTGCCTGTGTCACCTTCTGGCAAAACAGAAAAGCAACCACCTGTATCCCCCACTTCAAAA ACAGAGAGGATTGAGGAAACCATGTCTGTTCGGGAGCTGATGAAGGCTTTCCAGTCAGGT CAGGACCCTTCTAAACATAAAACTGGACTCTTTGAGCACAAATCAGCAAAACAAAAGCAG CCACAAGAGAAAGGTAAAGTTCGGGTAGAAAAAGAAAAGGGGCCGATACTAACCCAGAGA GAAGCTCAGAAAACAGAGAATCAGACAATCAAACGAGGCCAGAGACTCCCGGTAACGGGC ACAGCAGAATCCAAAAGAGGAGTTCGTGTTTCCTCCATAGGAGTTAAGAAAGAAGATGCA GCTGGAGGAAAGGAGAAAGTTCTCAGCCACAAAATACCTGAACCTGTTCAGTCAGTGCCT GAAGAAGAAAGCCACAGAGAGAGCGAAGTGCCCAAAGAAAAGATGGCTGATGAGCAGGGA GACATGGATCTACAGATCAGCCCAGATAGGAAAACCTCCACTGACTTCTCTGAGGTCATT AAGCAAGAGTTGGAAGACAATGACAAATACCAACAATTCCGCCTGAGTGAGGAGACAGAA AAGGCACAGCTTCACTTAGACCAAGTACTCACTAGTCCTTTCAACACAACATTTCCACTC GACTACATGAAAGATGAGTTCCTTCCAGCTCTGTCTTTACAAAGCGGTGCTTTAGATGGC AGTTCTGAAAGCCTAAAGAATGAGGGGGTAGCCGGCTCTCCGTGTGGCAGCCTGATGGAG GGGACCCCTCAGATTAGTTCAGAAGAAAGCTATAAGCATGAAGGCCTAGCAGAGACCCCT GAGACGAGCCCAGAAAGCCTTTCTTTCTCACCAAAGAAAAGTGAGGAGCAAACTGGGGAA ACAAAGGAAAGCACCAAGACAGAAACCACCACAGAAATTCGTTCAGAAAAAGAGCATCCC ACGACCAAAGACATTACTGGTGGCTCTGAAGAGCGAGGTGCCACAGTCACTGAGGACTCA GAGACCTCTACTGAGAGTTTTCAGAAAGAGGCCACTCTAGGCTCTCCCAAAGACACAAGC CCTAAAAGACAAGATGATTGCACAGGCAGCTGTAGTGTAGCATTAGCTAAAGAGACACCT ACAGGACTGACTGAGGAGGCAGCCTGTGATGAAGGTCAACGTACCTTTGGTAGTTCAGCC CACAAGACACAAACTGATAGTGAGGTTCAAGAATCCACAGCCACCTCAGACGAGACAAAG GCCTTGCCGCTGCCTGAGGCTTCTGTAAAGACAGATACAGGAACTGAATCAAAACCTCAG GGAGTCATTAGAAGTCCCCAAGGGTTAGAACTTGCACTCCCTAGCCGAGATAGCGAAGTC CTCAGCGCTGTGGCTGATGACTCATTAGCAGTGAGCCACAAAGACTCTCTGGAAGCCAGC CCTGTGCTAGAAGATAACTCTTCACACAAAACCCCTGATTCTCTGGAGCCAAGTCCTCTG AAAGAATCCCCTTGCCGTGACTCTCTGGAAAGCAGCCCTGTTGAACCAAAGATGAAGGCT GGAATTTTTCCAAGTCACTTTCCTCTTCCTGCAGCTGTTGCCAAAACAGAACTCTTGACG GAAGTGGCCTCTGTGCGGTCCCGGCTACTCCGAGACCCTGATGGCAGTGCTGAGGATGAC AGTCTTGAGCAGACATCGCTCATGGAGAGCTCAGGGAAGAGCCCCCTTTCTCCTGACACC CCCAGCTCTGAAGAAGTCAGCTATGAGGTTACACCCAAAACCACAGATGTAAGTACACCA AAACCAGCTGTGATTCATGAATGTGCAGAGGAGGATGATTCAGAAAACGGGGAGAAAAAG AGGTTCACACCTGAAGAGGAGATGTTTAAAATGGTAACCAAAATCAAAATGTTTGATGAA CTTGAACAAGAAGCAAAGCAGAAAAGGGACTACAAAAAAGAACCCAAACAAGAAGAATCT TCTTCATCTTCTGACCCAGATGCTGACTGTTCAGTAGATGTGGATGAACCAAAACATACA GGCAGTGGGGAGGATGAAAGTGGTGTCCCTGTGTTAGTAACTTCGGAGAGCAGGAAGGTG TCTTCCTCCTCAGAAAGTGAACCTGAGTTGGCACAGCTTAAAAAAGGTGCTGACTCAGGC CTTTTACCAGAACCAGTGATTCGAGTACAACCTCCTTCTCCACTTCCATCAAGCATGGAC TCCAATTCCAGTCCAGAAGAAGTACAATTCCAGCCTGTCGTTTCCAAACAATATACTTTC AAGATGAATGAAGATACTCAGGAAGAGCCAGGCAAATCAGAAGAAGAAAAAGATTCTGAA TCCCATTTAGCTGAAGACCGTCATGCTGTTTCCACTGAGGCTGAAGACAGGTCTTATGAT AAGCTAAACAGAGACACTGATCAGCCAAAAATCTGTGATGGCCATGGATGTGAGGCCATG AGTCCTAGCAGCTCAGCTGCTCCTGTCTCTTCAGGTCTACAGAGTCCGACTGGTGATGAT GTTGATGAACAGCCAGTCATCTATAAAGAATCATTAGCTCTCCAAGGCACTCATGAAAAA GACACAGAGGGAGAAGAGCTTGATGTTTCTAGAGCAGAATCTCCACAAGCAGATTGCCCC AGTGAAAGCTTTTCATCTTCATCCTCTTTGCCTCATTGTTTGGTATCTGAAGGAAAAGAA TTAGATGAAGACATATCTGCCACATCTTCTATTCAAAAAACAGAGGTCACAAAAACTGAT GAAACATTTGAGAACTTACCAAAGGACTGCCCCTCTCAAGACTCATCCATTACTACTCAA ACAGATAGATTTTCCATGGATGTTCCCGTGTCTGACCTAGCTGAGAATGATGAAATCTAT GATCCACAAATCACTAGCCCTTATGAAAATGTCCCTTCCCAATCTTTTTTCTCTAGTGAA GAAAGCAAAACCCAAACAGATGCAAATCACACCACAAGTTTTCACTCTTCTGAAGTGTAT TCTGTTACCATCACATCCCCTGTTGAAGACGTTGTAGTGGCAAGCTCCTCTAGTGGAACT GTTTTAAGCAAAGAATCTAATTTTGAGGGCCAGGACATAAAAATGGAATCCCAACAGGAA AGTACCTTGTGGGAAATGCAATCAGACAGTGTCTCTTCATCTTTCGAGCCTACTATGTCC GCTACAACAACAGTTGTTGGTGAACAAATAAGCAAAGTCATCATCACAAAAACTGATGTG GATTCTGATTCTTGGAGTGAAATTCGGGAAGACGATGAAGCCTTTGAGGCTCGTGTGAAA GAGGAAGAACAAAAGATATTTGGTTTGATGGTAGACAGACAATCACAGGGTACCACCCCT GACACCACTCCTGCTAGGACCCCAACTGAAGAGGGGACCCCAACAAGTGAGCAAAACCCA TTTCTGTTTCAGGAAGGAAAATTGTTTGAAATGACCCGAAGTGGTGCCATTGATATGACC AAAAGGTCCTATGCAGATGAAAGTTTTCACTTTTTCCAAATTGGTCAAGAATCCAGGGAA GAGACTCTCTCTGAAGATGTGAAAGAAGGGGCTACTGGGGCTGATCCCCTACCGCTGGAG ACATCAGCTGAATCACTAGCACTTTCAGAATCAAAAGAAACAGTGGATGATGAGGCAGAC TTACTTCCAGATGACGTGAGTGAGGAAGTAGAGGAAATACCTGCTTCGGATGCTCAACTT AACTCCCAAATGGGGATTTCAGCCTCCACTGAAACACCTACAAAAGAAGCTGTTAGTGTA GGGACCAAGGACCTCCCCACCGTGCAAACGGGTGATATACCTCCTCTCTCTGGTGTAAAG CAGATATCCTGCCCCGACTCTTCTGAACCAGCTGTACAAGTCCAGTTAGATTTTTCCACA CTCACCAGGTCTGTTTATTCAGATAGGGGTGATGATTCTCCCGATTCTTCCCCAGAAGAA CAGAAATCAGTAATCGAGATTCCTACTGCACCCATGGAGAATGTGCCTTTTACTGAAAGC AAATCCAAAATTCCTGTAAGGACTATGCCCACTTCCACCCCAGCACCTCCATCTGCAGAG TATGAGAGTTCAGTTTCTGAAGATTTTCTATCCAGTGTAGATGAGGAAAATAAGGCGGAT GAAGCAAAACCAAAGTCCAAACTCCCTGTCAAAGTACCCCTCCAAAGAGTTGAACAGCAG CTCTCAGATCTAGACACCTCTGTCCAGAAGACAGTGGCTCCTCAGGGACAGGACATGGCA AGCATCGCACCAGATAATAGAAGCAAATCTGAATCTGATGCTAGTTCTTTGGATTCAAAG ACCAAATGCCCAGTAAAAACCCGAAGTTACACTGAGACAGAAACAGAGAGCAGAGAGAGG GCCGAGGAACTTGAGTTAGAATCAGAAGAAGGGGCCACAAGACCAAAGATACTTACATCC CGATTGCCAGTTAAGAGCAGAAGCACTACATCTTCCTGCAGGGGGGGCACGAGCCCCACA AAAGAAAGTAAGGAGCATTTCTTTGACCTTTACAGAAATTCCATAGAATTCTTTGAGGAG ATTAGTGATGAGGCTTCCAAATTAGTGGATAGGCTGACACAGTCAGAGAGGGAGCAGGAA ATAGTTTCAGACGATGAAAGTAGTAGTGCCCTGGAAGTATCAGTAATTGAAAATCTGCCA CCTGTTGAGACCGAGCACTCAGTTCCTGAGGACATCTTTGACACAAGGCCCATTTGGGAT GAGTCTATTGAGACTCTGATTGAACGCATCCCTGATGAAAATGGCCATGACCATGCTGAA GATCCACAGGATGAGCAGGAACGGATCGAGGAAAGGCTGGCTTATATTGCTGATCACCTT GGCTTCAGCTGGACAGAATTAGCAAGAGAACTGGATTTCACTGAGGAGCAAATTCATCAA ATTCGAATTGAAAATCCCAACTCTCTTCAAGACCAGAGTCATGCACTGTTGAAGTACTGG CTAGAGAGGGATGGGAAACATGCTACAGATACCAACCTCGTTGAATGTCTCACCAAGATC AACCGAATGGATATTGTTCATCTCATGGAGACCAACACAGAACCTCTCCAGGAGCGCATC AGTCATAGTTATGCAGAAATTGAACAGACCATTACACTGGATCATAGTGAAGGGTTCTCG GTACTTCAAGAGGAGTTATGCACTGCACAGCACAAGCAGAAAGAGGAGCAAGCTGTTTCT AAAGAAAGTGAGACCTGCGATCACCCTCCTATCGTCTCAGAGGAAGACATTTCTGTTGGT TATTCCACTTTTCAGGATGGCGTCCCCAAAACTGAGGGGGACAGCTCAGCAACAGCACTC TTTCCCCAAACTCACAAGGAGCAAGTTCAACAGGATTTCTCAGGGAAAATGCAAGACCTG CCTGAAGAGTCATCTCTGGAATATCAGCAGGAATATTTTGTGACAACTCCAGGAACAGAA ACATCAGAGACTCAGAAGGCTATGATAGTACCCAGCTCTCCCAGCAAGACACCTGAGGAA GTTAGCACCCCTGCAGAGGAGGAGAAGCTGTACCTCCAGACCCCAACATCCAGCGAGCGG GGAGGCTCTCCCATCATACAAGAACCCGAAGAGCCCTCAGAGCACAGAGAGGAGAGCTCT CCGCGGAAAACCAGCCTCGTAATAGTGGAGTCTGCCGATAACCAGCCTGAGACCTGTGAA AGACTCGATGAAGATGCAGCTTTTGAAAAGGGAGACGATATGCCTGAAATACCCCCAGAA ACAGTCACAGAAGAAGAATACATTGATGAGCATGGACACACCGTGGTAAAGAAGGTTACT AGGAAAATCATTAGGCGGTATGTATCCTCTGAAGGCACAGAGAAAGAAGAGATTATGGTG CAGGGAATGCCACAGGAACCTGTCAACATCGAGGAAGGGGATGGCTATTCCAAAGTTATA AAGCGTGTTGTATTGAAGAGTGACACCGAGCAGTCAGAGGACAACAATGAGTAA |
Restriction Sites | Please inquire |
ACCN | NM_001148 |
OTI Disclaimer | Due to the inherent nature of this plasmid, standard methods to replicate additional amounts of DNA in E. coli are highly likely to result in mutations and/or rearrangements. Therefore, OriGene does not guarantee the capability to replicate this plasmid DNA. Additional amounts of DNA can be purchased from OriGene with batch-specific, full-sequence verification at a reduced cost. Please contact our customer care team at custsupport@origene.com or by calling 301.340.3188 option 3 for pricing and delivery. 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 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_001148.3, NP_001139.3 |
RefSeq Size | 14166 bp |
RefSeq ORF | 11874 bp |
Locus ID | 287 |
UniProt ID | Q01484 |
Domains | DEATH, ZU5, ANK |
Protein Families | Druggable Genome |
Gene Summary | This gene encodes a member of the ankyrin family of proteins that link the integral membrane proteins to the underlying spectrin-actin cytoskeleton. Ankyrins play key roles in activities such as cell motility, activation, proliferation, contact and the maintenance of specialized membrane domains. Most ankyrins are typically composed of three structural domains: an amino-terminal domain containing multiple ankyrin repeats; a central region with a highly conserved spectrin binding domain; and a carboxy-terminal regulatory domain which is the least conserved and subject to variation. The protein encoded by this gene is required for targeting and stability of Na/Ca exchanger 1 in cardiomyocytes. Mutations in this gene cause long QT syndrome 4 and cardiac arrhythmia syndrome. Multiple transcript variants encoding different isoforms have been described. [provided by RefSeq, Dec 2011] Transcript Variant: This variant (1) represents the longest transcript and encodes the longest isoform (1). Sequence Note: The RefSeq transcript and protein were derived from genomic sequence to make the sequence consistent with the reference genome assembly. The genomic coordinates used for the transcript record were based on alignments. |
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