AKAP9 (NM_005751) Human Untagged Clone
CAT#: SC303689
AKAP9 (untagged)-Human A kinase (PRKA) anchor protein (yotiao) 9 (AKAP9), transcript variant 2
CNY 75,150.00
货期*
13周
规格
Product images
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经常一起买 (3)
Specifications
Product Data | |
Type | Human Untagged Clone |
Tag | Tag Free |
Synonyms | AKAP-9; AKAP350; AKAP450; CG-NAP; HYPERION; LQT11; MU-RMS-40.16A; PPP1R45; PRKA9; YOTIAO |
Vector | pCMV6 series |
Sequence Data |
>NCBI ORF sequence for NM_005751, the custom clone sequence may differ by one or more nucleotides
ATGGAGGACGAGGAGAGACAGAAGAAGCTGGAGGCCGGCAAAGCCAAGCTTGCCCAGTTT CGACAAAGAAAAGCTCAGTCGGATGGGCAGAGTCCTTCCAAGAAGCAGAAAAAAAAGAGA AAAACGTCAAGCAGTAAACATGATGTGTCAGCACACCATGATTTGAATATTGATCAATCA CAGTGTAATGAAATGTACATAAATAGTTCTCAGAGAGTAGAATCAACTGTGATTCCTGAA TCTACAATAATGAGAACTCTACATAGTGGAGAAATAACCAGTCATGAGCAGGGCTTCTCT GTGGAACTGGAAAGTGAAATTTCAACCACAGCAGATGACTGCAGTTCAGAGGTAAATGGT TGCAGTTTTGTGATGAGAACAGGAAAGCCTACAAATTTATTAAGGGAAGAAGAATTTGGT GTTGATGATTCTTATTCTGAACAAGGAGCACAAGACAGTCCGACTCATCTAGAGATGATG GAAAGTGAGTTGGCTGGGAAGCAGCATGAGATTGAAGAGCTAAACAGAGAGCTGGAAGAA ATGAGGGTTACCTATGGGACTGAAGGACTGCAGCAGTTACAAGAATTTGAAGCTGCCATT AAACAAAGAGATGGCATTATAACCCAGCTCACTGCTAATTTACAACAAGCAAGAAGAGAA AAGGATGAGACAATGAGAGAATTTTTAGAGTTGACAGAACAGAGTCAAAAATTACAGATT CAATTTCAGCAATTACAGGCTAGTGAAACTCTGAGAAACAGCACTCATAGTAGCACAGCT GCAGACTTACTACAAGCCAAACAACAGATCCTCACTCATCAACAGCAGCTTGAAGAACAA GACCACTTATTAGAAGATTATCAGAAAAAGAAAGAAGACTTCACAATGCAAATTAGTTTC TTGCAAGAGAAAATTAAAGTATATGAAATGGAACAAGATAAAAAAGTAGAAAACTCAAAT AAAGAAGAAATACAGGAAAAGGAGACAATCATTGAAGAATTAAACACAAAAATAATAGAA GAAGAAAAGAAAACTCTTGAGCTAAAGGATAAATTAACAACTGCTGATAAATTACTAGGA GAATTACAAGAACAGATTGTGCAAAAGAACCAAGAAATAAAAAACATGAAATTAGAGCTG ACTAATTCTAAGCAAAAAGAAAGACAGTCTTCTGAAGAAATAAAACAGTTAATGGGGACA GTCGAAGAACTTCAGAAGAGAAATCATAAAGACAGCCAGTTCGAAACTGATATAGTACAA CGAATGGAACAAGAAACACAAAGAAAGTTAGAACAACTCCGGGCAGAGCTGGATGAGATG TATGGGCAGCAGATAGTGCAAATGAAACAAGAATTAATAAGACAACACATGGCACAGATG GAGGAAATGAAAACACGGCATAAGGGAGAAATGGAGAATGCTTTAAGGTCATATTCAAAT ATTACAGTTAATGAAGATCAGATAAAGTTAATGAATGTGGCAATAAATGAACTGAATATA AAATTGCAAGATACTAACTCTCAAAAGGAAAAACTCAAGGAAGAACTAGGACTAATTTTA GAAGAAAAGTGTGCTCTACAGAGACAGCTTGAAGACCTTGTTGAAGAATTGAGCTTTTCA AGGGAACAGATTCAGAGAGCTAGACAGACAATAGCTGAACAAGAAAGTAAACTTAATGAA GCACATAAGTCCCTTAGTACAGTGGAAGATTTGAAAGCTGAGATTGTTTCTGCATCTGAA TCCAGAAAGGAACTAGAATTAAAACATGAAGCAGAAGTTACAAATTACAAGATAAAACTT GAAATGTTAGAAAAAGAAAAGAATGCTGTGTTAGACAGAATGGCTGAATCACAAGAAGCT GAATTAGAGAGGCTGAGAACACAGCTTCTATTTAGTCACGAAGAAGAGCTTTCCAAACTG AAGGAAGATTTAGAAATTGAACATCGAATAAATATTGAAAAACTTAAAGATAATTTAGGC ATTCACTATAAACAGCAGATAGATGGTTTACAGAATGAAATGAGTCAAAAGATAGAAACC ATGCAGTTTGAAAAGGACAATTTGATAACTAAGCAGAATCAATTAATTTTGGAAATTTCA AAGCTAAAAGATTTACAGCAGTCTCTTGTAAATTCAAAGTCAGAAGAAATGACTCTTCAA ATCAATGAACTTCAAAAAGAAATTGAAATACTCAGACAAGAAGAAAAAGAAAAGGGTACA CTTGAACAAGAAGTTCAAGAATTACAACTTAAAACAGAATTGTTAGAAAAACAGATGAAG GAAAAAGAGAATGATCTTCAAGAAAAATTTGCACAACTTGAAGCAGAGAATAGCATTCTT AAAGATGAAAAGAAAACCCTTGAAGACATGTTGAAAATACATACTCCTGTTAGCCAAGAA GAAAGATTGATTTTCTTAGACTCCATTAAGTCCAAATCCAAAGACTCTGTGTGGGAAAAA GAAATAGAAATACTTATAGAGGAAAATGAGGACCTCAAACAACAATGTATTCAGCTAAAT GAAGAGATTGAAAAGCAAAGGAACACTTTTTCATTTGCTGAAAAAAACTTTGAAGTTAAC TATCAAGAGTTACAAGAGGAGTATGCTTGCCTTCTCAAAGTAAAAGATGATTTAGAAGAC AGTAAAAATAAACAGGAATTAGAGTATAAAAGTAAACTTAAAGCACTTAATGAAGAGCTT CATTTGCAAAGAATAAATCCAACTACAGTGAAAATGAAAAGTTCTGTCTTTGATGAAGAC AAAACTTTTGTAGCAGAAACATTGGAAATGGGTGAGGTTGTTGAAAAGGATACAACAGAA CTCATGGAAAAACTTGAGGTAACCAAGCGAGAGAAATTAGAGCTGTCACAGAGACTGTCT GATCTTTCTGAACAATTGAAACAGAAACATGGTGAGATTAGTTTTCTAAATGAAGAAGTT AAATCTTTAAAGCAAGAGAAAGAACAAGTTTCATTGAGATGTAGAGAGCTAGAAATCATT ATTAACCACAACAGGGCAGAAAATGTACAGTCATGTGATACTCAAGTAAGCTCTTTATTA GATGGAGTTGTGACCATGACAAGCAGGGGTGCTGAAGGATCAGTTTCTAAAGTAAATAAA AGTTTTGGTGAAGAATCAAAAATAATGGTGGAAGATAAAGTTTCTTTTGAAAATATGACT GTTGGAGAAGAAAGTAAGCAAGAACAGTTGATTTTGGATCACTTACCATCTGTAACAAAG GAATCATCACTTAGAGCAACTCAACCAAGTGAAAATGATAAACTTCAGAAAGAACTCAAT GTACTTAAATCAGAACAGAATGATTTAAGGCTACAGATGGAAGCCCAACGCATTTGCCTC TCTCTGGTTTATTCAACTCATGTGGATCAGGTTCGTGAATATATGGAAAATGAAAAAGAT AAAGCTCTTTGCAGTCTTAAAGAAGAGCTTATTTTTGCTCAAGAGGAAAAGATCAAGGAA CTTCAGAAAATACACCAGTTAGAACTACAGACTATGAAAACACAAGAAACAGGTGATGAA GGAAAGCCTTTACATCTGCTCATTGGAAAACTTCAAAAGGCAGTGTCTGAAGAATGTTCT TATTTTTTACAGACTTTATGCAGTGTCCTTGGTGAATATTATACTCCTGCTTTAAAATGT GAAGTAAATGCAGAAGACAAAGAGAATTCTGGTGATTACATTTCTGAAAATGAAGATCCA GAATTACAAGATTATAGATATGAAGTTCAAGACTTTCAAGAAAATATGCACACTCTTCTC AACAAAGTAACAGAAGAATACAACAAACTCTTGGTACTTCAAACACGACTAAGCAAGATC TGGGGACAGCAGACAGATGGTATGAAACTTGAATTTGGAGAAGAAAACCTTCCAAAAGAG GAAACAGAGTTTTTATCAATCCATTCTCAGATGACCAATTTGGAAGACATTGATGTCAAT CATAAAAGCAAGTTATCTTCTCTGCAAGATCTTGAAAAAACTAAACTTGAAGAACAAGTT CAAGAATTAGAAAGCCTCATATCCTCTTTGCAGCAACAGTTGAAAGAAACTGAACAAAAC TATGAGGCAGAGATCCACTGTTTACAGAAGAGGCTTCAAGCTGTTAGTGAGTCCACGGTT CCGCCAAGCTTACCTGTTGATTCGGTGGTAATTACAGAATCTGATGCACAGAGAACAATG TACCCTGGAAGTTGTGTGAAAAAGAATATTGATGGTACAATAGAGTTTTCTGGTGAATTT GGAGTGAAAGAGGAAACAAATATCGTTAAGTTGCTTGAAAAACAATACCAAGAACAATTA GAAGAAGAAGTAGCTAAGGTTATTGTGTCAATGAGTATAGCATTTGCTCAACAAACTGAA CTGTCTAGAATATCTGGGGGAAAAGAAAATACTGCATCATCAAAGCAAGCACATGCTGTG TGTCAGCAAGAACAACATTATTTTAATGAAATGAAATTATCACAGGATCAAATTGGTTTT CAGACTTTTGAGACAGTGGATGTGAAATTTAAAGAAGAATTTAAACCACTTAGTAAAGAG TTAGGAGAACATGGAAAGGAAATTTTATTATCAAATAGTGATCCCCATGATATACCAGAA TCAAAGGACTGTGTGCTGACTATTTCAGAAGAAATGTTCTCCAAAGATAAAACATTTATA GTTAGACAGTCTATTCATGATGAGATTTCAGTGTCAAGCATGGATGCTTCTAGACAACTA ATGTTGAATGAAGAACAGTTGGAAGATATGAGACAGGAACTTGTACGACAATACCAAGAA CATCAACAGGCAACGGAATTGTTAAGGCAAGCACATATGCGGCAAATGGAGAGACAGCGA GAAGACCAGGAACAGCTACAAGAAGAGATTAAGAGACTTAATAGACAATTAGCCCAGAGA TCCTCCATAGATAATGAAAACCTGGTTTCAGAGAGAGAGAGGGTGCTTTTAGAGGAGCTG GAAGCACTAAAGCAGCTGTCTTTAGCTGGAAGAGAGAAGCTGTGTTGTGAGCTGCGCAAC AGCAGTACGCAAACACAGAATGGAAATGAAAACCAAGGAGAAGTTGAAGAACAAACATTT AAAGAAAAGGAATTAGACAGAAAACCTGAAGATGTGCCTCCTGAGATTTTGTCTAATGAA AGGTATGCACTCCAGAAAGCTAATAATAGACTTTTGAAGATCCTCTTAGAAGTTGTAAAG ACAACAGCAGCTGTTGAAGAAACAATTGGTCGCCATGTCCTTGGGATTCTAGATAGATCT AGTAAAAGCCAGTCATCTGCCAGCCTAATTTGGAGGTCAGAAGCAGAGGCATCTGTAAAG TCATGTGTCCATGAGGAACATACAAGAGTTACAGATGAATCCATTCCCTCTTATTCTGGA AGTGATATGCCAAGAAATGACATTAACATGTGGTCAAAAGTAACTGAGGAAGGAACAGAG CTGTCACAACGACTTGTGAGGAGTGGTTTTGCTGGAACTGAAATAGACCCTGAAAATGAA GAACTTATGCTGAACATTAGCTCTCGACTACAAGCAGCAGTTGAAAAACTCCTAGAAGCC ATAAGTGAAACTAGCAGTCAGCTTGAACATGCGAAAGTGACACAGACAGAGTTGATGCGT GAGTCATTTAGACAGAAACAAGAAGCAACAGAGTCCCTTAAGTGCCAAGAGGAACTTCGA GAGCGCCTTCATGAGGAGTCCAGGGCCAGAGAACAGCTAGCTGTGGAGCTCAGTAAGGCT GAGGGCGTCATTGATGGCTATGCAGATGAAAAAACTCTTTTTGAAAGGCAAATTCAGGAA AAAACTGATATAATAGATCGTCTTGAGCAGGAGTTGTTATGTGCAAGTAACAGGTTGCAA GAATTGGAGGCAGAGCAACAGCAGATCCAAGAAGAAAGAGAATTACTGTCCAGACAAAAG GAAGCTATGAAAGCAGAGGCAGGCCCAGTTGAACAACAATTACTACAGGAGACAGAAAAA TTAATGAAGGAAAAACTAGAAGTACAATGTCAAGCTGAAAAAGTACGTGATGACCTTCAA AAACAAGTGAAAGCTCTAGAAATAGATGTGGAAGAACAAGTCAGTAGGTTTATAGAGCTG GAACAAGAAAAAAATACTGAACTAATGGATTTAAGACAGCAAAACCAAGCATTGGAAAAG CAGTTAGAAAAAATGAGAAAATTTTTAGATGAGCAAGCCATTGACAGAGAACATGAGAGA GATGTATTCCAACAGGAAATACAGAAACTAGAACAGCAACTTAAGGTTGTTCCTCGATTC CAGCCTATCAGTGAACATCAAACTAGAGAGGTTGAACAGTTAGCAAATCATCTGAAAGAA AAAACAGACAAATGCAGTGAGCTTTTGCTCTCTAAAGAGCAGCTTCAAAGGGATATACAA GAAAGGAATGAAGAAATAGAGAAACTGGAGTTCAGAGTAAGAGAACTGGAGCAGGCGCTT CTTGTGAGTGCAGATACTTTTCAAAAGGTAGAGGACCGAAAACACTTTGGAGCTGTAGAA GCTAAACCAGAATTGTCCCTAGAAGTACAATTGCAGGCTGAACGAGATGCCATAGACAGA AAGGAAAAAGAGATTACAAACTTAGAAGAGCAATTAGAACAGTTTAGAGAAGAACTGGAA AATAAGAATGAAGAAGTTCAACAATTACATATGCAATTAGAAATACAGAAAAAGGAATCT ACTACCCGCCTACAAGAACTTGAACAGGAAAACAAATTATTTAAGGATGACATGGAGAAA CTGGGACTTGCCATAAAGGAATCTGATGCCATGTCTACTCAAGACCAACATGTGCTATTT GGGAAATTTGCTCAAATAATACAGGAAAAAGAGGTAGAAATTGACCAATTAAATGAACAA GTTACGAAACTCCAGCAGCAACTTAAAATTACAACAGATAACAAGGTTATTGAAGAAAAA AATGAACTGATAAGGGATCTTGAAACCCAAATAGAATGTTTGATGAGTGATCAAGAATGT GTGAAGAGAAATAGAGAAGAAGAAATAGAGCAGCTCAATGAAGTGATTGAAAAACTTCAA CAGGAATTGGCAAATATTGGACAGAAGACATCAATGAATGCTCATTCCCTCTCAGAAGAA GCAGACAGTTTAAAACATCAATTGGATGTGGTTATAGCTGAAAAGCTGGCCTTGGAACAG CAAGTAGAAACCGCTAATGAAGAAATGACCTTCATGAAAAATGTACTTAAAGAAACCAAT TTTAAAATGAATCAGCTAACACAGGAATTATTCAGCTTAAAGAGAGAACGTGAAAGTGTG GAAAAGATTCAAAGCATACCAGAGAATAGTGTTAACGTGGCTATAGATCATCTGAGCAAA GACAAACCTGAACTAGAAGTAGTCCTTACAGAGGATGCTCTTAAATCCCTAGAAAATCAG ACATACTTCAAATCTTTTGAAGAAAATGGCAAAGGTTCCATAATTAATTTGGAAACAAGG TTGCTACAACTTGAGAGCACTGTTAGTGCAAAGGACTTAGAACTTACCCAGTGTTATAAA CAAATAAAAGACATGCAAGAACAAGGCCAGTTTGAAACAGAAATGCTTCAAAAGAAGATT GTAAACCTACAGAAAATAGTTGAAGAAAAAGTGGCTGCTGCTCTTGTCAGTCAAATCCAA CTTGAGGCAGTTCAGGAATATGCAAAATTCTGTCAAGATAATCAAACAATTTCATCAGAA CCTGAAAGAACAAATATTCAGAATTTAAATCAACTAAGAGAAGATGAGTTGGGGTCAGAT ATATCAGCATTAACCTTGAGAATATCAGAATTAGAAAGCCAGGTTGTTGAAATGCATACT AGTTTGATTTTAGAAAAAGAACAAGTAGAAATTGCAGAAAAAAATGTTTTAGAAAAAGAA AAGAAGCTGCTAGAACTACAGAAGCTATTGGAGGGCAATGAGAAAAAACAGAGAGAGAAA GAAAAGAAAAGAAGCCCTCAAGATGTTGAAGTTCTCAAGACAACTACTGAGCTATTTCAT AGCAATGAAGAAAGTGGATTTTTTAATGAACTCGAGGCTCTTAGAGCTGAATCAGTGGCT ACCAAAGCAGAACTTGCCAGTTATAAAGAAAAGGCTGAAAAACTTCAAGAAGAGCTTTTG GTAAAAGAAACAAATATGACATCTCTTCAGAAAGACTTAAGCCAAGTTAGGGATCACCTC GCAGAGGCAAAAGAGAAATTGTCCATTTTAGAAAAAGAAGATGAGACTGAGGTACAAGAA AGCAAAAAGGCCTGCATGTTTGAGCCACTTCCTATAAAACTGAGTAAGAGCATTGCATCC CAGACAGATGGGACTCTGAAGATCAGTAGCAGCAATCAGACTCCACAAATTCTTGTTAAA AATGCAGGAATACAAATTAATTTACAGAGTGAATGTTCCTCAGAAGAAGTTACTGAAATA ATCAGTCAGTTTACTGAAAAAATTGAGAAGATGCAAGAACTACATGCTGCTGAAATTTTG GACATGGAATCCAGACATATTTCAGAAACTGAAACCTTAAAGAGGGAACACTATGTTGCC GTTCAGTTACTGAAAGAGGAATGTGGTACCTTGAAGGCAGTGATACAGTGTCTGAGAAGT AAAGAGGGATCCTCAATTCCTGAGCTAGCACATTCTGATGCTTACCAGACTAGAGAAATA TGCTCCAGTGATTCTGGATCAGACTGGGGTCAGGGAATTTATCTTACACACAGTCAGGGA TTTGACATAGCATCAGAAGGCCGAGGAGAAGAAAGTGAAAGTGCAACAGATTCCTTTCCA AAGAAAATAAAGGGATTACTGAGAGCTGTCCATAATGAAGGCATGCAGGTGCTTTCTCTC ACTGAGTCTCCCTATAGTGATGGAGAGGACCATTCTATTCAGCAGGTTTCAGAACCTTGG CTAGAAGAGAGAAAAGCTTACATCAATACAATCTCATCTCTAAAGGATTTAATTACAAAG ATGCAACTGCAAAGAGAAGCCGAGGTTTATGATAGTTCTCAATCTCATGAGAGCTTCTCA GACTGGCGAGGTGAACTACTGCTTGCCCTTCAACAAGTTTTCTTAGAAGAGCGTAGTGTT TTACTAGCAGCATTTCGGACGGAGCTGACAGCTCTAGGTACTACAGATGCAGTTGGTTTA CTAAACTGTTTGGAACAGAGAATACAAGAACAGGGTGTTGAATATCAAGCAGCTATGGAA TGCCTCCAGAAAGCAGATAGAAGGAGTTTGTTATCTGAAATTCAGGCACTGCATGCACAA ATGAATGGTAGGAAAATTACTCTGAAAAGAGAACAAGAGAGTGAGAAACCAAGCCAAGAA CTCTTGGAATATAATATACAGCAGAAGCAGTCTCAAATGCTGGAGATGCAAGTGGAGCTC AGCAGTATGAAAGACAGAGCAACGGAACTGCAGGAGCAGCTGAGTTCTGAGAAAATGGTG GTTGCTGAACTGAAGAGTGAGCTTGCACAAACTAAATTGGAACTAGAAACAACACTCAAG GCACAGCATAAACACCTAAAAGAATTGGAGGCTTTCAGGTTGGAAGTTAAAGATAAGACA GATGAAGTACATTTGCTTAATGACACATTAGCAAGTGAACAGAAAAAATCAAGAGAGCTC CAGTGGGCTTTGGAGAAAGAGAAAGCCAAGTTGGGACGCAGTGAAGAACGGGATAAAGAA GAACTTGAGGATCTGAAGTTTTCACTTGAGAGTCAGAAACAAAGGAATCTTCAGCTAAAT CTACTTTTGGAACAACAGAAACAACTACTGAACGAATCCCAGCAAAAAATAGAATCACAG AGAATGCTATATGATGCCCAGTTGTCAGAAGAACAAGGTCGAAACTTAGAGCTTCAGGTA CTTCTTGAATCTGAGAAAGTTCGAATTCGGGAAATGAGTAGTACCCTAGATAGGGAGCGG GAATTGCACGCACAGCTGCAGAGCAGTGATGGTACTGGACAGTCTCGGCCACCCTTGCCC TCAGAGGACCTACTGAAAGAGCTGCAGAAACAGCTAGAGGAAAAACACAGTCGCATAGTA GAATTGTTAAATGAGACTGAAAAATATAAACTGGATTCTTTGCAAACACGACAGCAAATG GAAAAAGATAGGCAGGTTCACAGGAAAACACTGCAGACAGAACAGGAGGCCAACACTGAG GGACAGAAAAAAATGCATGAGCTCCAGTCCAAAGTGGAAGATCTTCAGCGCCAGCTGGAA GAGAAAAGACAACAAGTTTATAAGTTAGACCTTGAAGGACAGCGACTACAAGGAATCATG CAGGAATTCCAGAAGCAAGAACTAGAACGAGAAGAAAAACGAGAAAGTAGAAGAATTCTG TATCAGAACCTTAATGAGCCAACCACGTGGAGCTTAACCAGTGATAGAACTAGAAATTGG GTTCTTCAACAGAAAATAGAAGGAGAAACAAAAGAATCAAACTACGCTAAATTGATTGAA ATGAATGGAGGAGGAACCGGCTGTAATCATGAATTAGAAATGATCAGACAAAAGCTTCAA TGTGTAGCTTCAAAACTACAGGTTCTACCCCAGAAAGCCTCTGAGAGACTACAGTTTGAA ACAGCAGATGATGAAGATTTCATTTGGGTTCAGGAAAATATTGATGAAATTATTTTACAA CTACAGAAATTAACTGGCCAGCAAGGTGAAGAGCCCAGCTTGGTGTCCCCAAGTACTTCT TGTGGCTCATTGACTGAAAGACTACTGAGACAAAATGCTGAGCTGACAGGGCATATCAGT CAACTGACTGAAGAGAAGAATGACTTAAGGAACATGGTTATGAAGCTGGAAGAGCAGATC AGGTGGTATCGACAGACAGGAGCTGGTAGAGATAATTCTTCCAGGTTTTCATTGAATGGT GGTGCCAACATTGAAGCCATCATTGCCTCTGAAAAAGAAGTATGGAACAGAGAAAAATTG ACTCTCCAGAAATCTTTGAAAAGGGCAGAGGCTGAAGTATACAAACTGAAAGCTGAACTA AGAAATGACTCTTTACTTCAAACTCTGAGCCCTGATTCTGAACATGTCACTTTAAAGAGA ATTTATGGTAAATACTTGAGGGCAGAAAGTTTTCGAAAGGCTCTCATTTACCAGAAGAAA TACCTGCTGCTGTTACTGGGTGGGTTCCAGGAATGTGAAGATGCCACCTTGGCCCTGCTT GCCCGGATGGGGGGGCAGCCAGCTTTCACGGATCTAGAGGTGATCACCAATCGCCCAAAG GGCTTCACCAGGTTTCGGTCGGCCGTCAGAGTATCCATTGCAATTTCCAGAATGAAATTT TTGGTTCGACGGTGGCATCGAGTCACAGGTTCTGTTTCCATCAATATTAACAGAGATGGC TTTGGACTGAATCAAGGTGCAGAAAAGACTGACTCATTTTATCATTCTTCTGGTGGGCTG GAGTTATATGGAGAACCAAGACATACTACGTATCGCTCAAGATCAGATCTGGACTATATT AGGTCCCCTTTACCATTTCAGAATAGGTACCCAGGCACTCCAGCTGATTTCAATCCTGGT TCTTTAGCATGTTCTCAGCTTCAGAATTACGATCCTGACAGAGCCCTAACAGATTATATC ACTCGGCTAGAGGCACTGCAAAGACGACTTGGAACTATACAGTCAGGTTCAACTACTCAA TTTCATGCTGGCATGAGAAGATAA |
Restriction Sites | Please inquire |
ACCN | NM_005751 |
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_005751.3, NP_005742.4 |
RefSeq Size | 12462 bp |
RefSeq ORF | 11724 bp |
Locus ID | 10142 |
UniProt ID | Q99996 |
Protein Families | Druggable Genome |
Gene Summary | The A-kinase anchor proteins (AKAPs) are a group of structurally diverse proteins which have the common function of binding to the regulatory subunit of protein kinase A (PKA) and confining the holoenzyme to discrete locations within the cell. This gene encodes a member of the AKAP family. Alternate splicing of this gene results in at least two isoforms that localize to the centrosome and the Golgi apparatus, and interact with numerous signaling proteins from multiple signal transduction pathways. These signaling proteins include type II protein kinase A, serine/threonine kinase protein kinase N, protein phosphatase 1, protein phosphatase 2a, protein kinase C-epsilon and phosphodiesterase 4D3. [provided by RefSeq, Aug 2008] Transcript Variant: This variant (2) represents the longer transcript and encodes the longer isoform (2). |
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