Pikfyve (NM_011086) Mouse Untagged Clone
CAT#: MC225150
Pikfyve (untagged) - Mouse phosphoinositide kinase, FYVE finger containing (Pikfyve), (10ug)
"NM_011086" in other vectors (2)
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Specifications
Product Data | |
Type | Mouse Untagged Clone |
Tag | Tag Free |
Symbol | Pikfyve |
Synonyms | 5230400C17Rik; p235; Pip5k; Pip5k3; Pipk5k3; PipkIII |
Vector | pCMV6-Entry |
E. coli Selection | Kanamycin (25 ug/mL) |
Mammalian Cell Selection | Neomycin |
Sequence Data |
>MC225150 representing NM_011086
Red=Cloning site Blue=ORF Orange=Stop codon TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC GCCGCGATCGCC ATGGCCACAGATGACAAGAGTTCCCCGACACTGGACTCTGCTAATGATTTGCCTCGCTCTCCTGCCAGTC CTTCTCACCTCACTCACTTTAAACCCTTGACTCCTGACCAGGATGAGCCCCCCTTCAAGTCAGCATATAG TTCTTTTGTAAACCTTTTTCGTTTTAACAAAGAGCGAGGAGAAGGGGGCCAAGGAGAGCAGCAGTCTCCG AGTTCAAGTTGGGCCAGCCCTCAGATCCCTTCAAGAACACAGTCTGTGAGGTCGCCTGTACCTTATAAAA AACAGCTTAATGAGGAGCTCCACCGGCGCTCTTCAGTGTTAGAGAACACTTTGCCACATCCTCAGGAGAG CACAGACTCCAGAAGGAAAGCAGAACCAGCCTGTGGAGGTCATGACCCACGTACAGCTGTTCAGCTTCGA AGCCTCAGCACAGTATTGAAACGCCTCAAAGAAATCATGGAAGGAAAAAGCCAGGACAGTGACCTGAAGC AATATTGGATGCCAGATAGCCAGTGTAAAGAGTGCTATGACTGCAGTGAAAAGTTTACAACATTTAGGCG CAGACACCATTGCAGACTGTGTGGGCAGATTTTCTGCAGTCGTTGTTGTAATCAAGAAATCCCTGGAAAA TTTATGGGCTATACAGGAGACCTCCGAGCATGCACCTACTGTAGAAAAATAGCCTTAAGTTATGCTCATT CTACAGACAGTAATTCCATTGGGGAAGACTTGAATGCTCTTTCAGATTCAACTTGCTCTGTGTCTATACT TGATCCAAGCGAACCTCGGACACCAGTTGGGAGTAGAAAAGCCAGTCGTAACATATTCTTAGAGGATGAT TTAGCCTGGCAAAGCTTGATTCATCCGGATTCCTCAAATAGTGCTCTTTCAACAAGACTCGTATCTGTTC AAGAGGATGCTGGGAAGTCTCCTGCTCGAAACAGATCAGCCAGCATTACTAATCTGTCACTGGATCGGTC TGGTTCTCCTATGGTTCCTTCATATGAGACATCTGTCAGTCCCCAGGCTAACCGAAACTACATTAGGACA GAGACGACTGAGGATGAACGCAAAATTCTTCTGGACAGTGCTCAGTTAAAGGATCTGTGGAAGAAAATCT GCCATCACACCAGTGGGATGGAATTTCAAGATCACCGTTACTGGTTGAGAACACATCCCAACTGCATTGT AGGGAAGGAATTAGTCAACTGGCTAATCAGAAATGGACACATCGCTACAAGGGCACAAGCTATAGCAATT GGACAAGCAATGGTTGATGGACGTTGGTTGGATTGTGTTAGTCATCATGATCAGCTTTTCAGGGACGAAT ATGCGTTGTATAGACCACTTCAGAGTACAGAATTTTCTGAGACACCTTCTCCAGACAGTGACTCTGTGAA CTCTGTGGAAGGACACTCCGAGCCATCCTGGTTTAAAGACATAAAATTTGATGACAGTGACACAGAACAG ATTGCTGAAGAAGGTGACGATAATTTGGCTAAGTATTTGGTTTCTGACACTGGAGGACAGCAGCTCTCAA TAAGTGATGCCTTCATCAAAGAGTCCTTATTTAATCGACGAGTAGAGGAAAAATCCAAAGAGCTGCCTTT TACCCCTTTGGGCTGGCATCATAACAACCTGGAACTCTTGCGAGAGGAGAATGAGGAGAAGCAAGCCATG GAAAGGCTGCTTTCAGCTAATCATAACCACATGATGGCCCTACTCCAGCAGTTGCTTCAAAACGAGTCAT TGTCATCGTCTTGGAGGGACATCATTGTGTCACTAGTCTGCCAGGTTGTTCAGACAGTCCGACCTGATGT CAAGCACCAGGATGATGACATGGATATCCGTCAGTTTGTCCATATCAAGAAGATCCCAGGTGGAAAGAAA TTTGACTCTGTGGTTGTCAATGGCTTTGTTTGTACCAAGAACATTGCACATAAAAAGATGAATTCCTGTA TTAAAAACCCCAAAATCCTTCTGTTGAAGTGTTCTATTGAGTATCTCTATAGAGAAGAAACTAAGTTTAC CTGCATTGATCCTATTGTGCTTCAGGAAAGGGAATTCTTGAAGAATTATGTTCAACGAATAGTTGATGTT CGACCCACATTGGTTCTTGTTGAGAAAACAGTGTCTCGGATTGCTCAGGACATGTTACTGGAACATGGCA TTACTCTGGTCATTAATGTAAAGTCACAAGTTTTAGAAAGAATCAGTCGAATGACCCAAGGTGATTTAGT GGTGTCCATGGACCAGCTGCTCACCAAACCCCACTTGGGCACTTGCCACAAATTTTATATGCAGATATTT CAGCTGCCTAATGAACAAACCAAAACACTGATGTTTTTTGAAGGCTGTCCACAGCATCTAGGCTGCACAA TCAAGCTCAGAGGAGGCTCTGATTATGAGCTGGCTCGAGTTAAGGAGATCCTAATATTTATGATCTGTGT AGCTTATCATTCTCAGCTAGAAATCTCTTTTCTCATGGATGAGTTCGCTATGCCTCCAACATTAATGCAA AGCCCTTCATTCCATCTTCTGACGGAGGGACGAGGTGAAGAGGGAGCCTCTCAGGAGCAGGTCAGTGGCA GCTCCCTTCCTCAGGATCCTGAGTGCCCTCGTGAGGCCCTGTCTTCTGAGGATAGCACTTTGTTGGAATC AAGGACTGTGCTAGAGAAGGGTGAACTAGACAATAAAAGTATTCCACAAGCTGTTGCCTCTTTGAAGCAT CAAGATTATACCACCCCCACTTGCCCAGCAGGTATTCCCTGTGCTCTTTTTGCATTGGTACCAGAGTCAT TGTTGCCTCTCCATATGGATCAACAGGATGCCGTAGGAAATGAACAGCCAGAGACTTCACAGCAAACGGA TGAGCAACAGGATCCCAAAAGCCAGATGAAAGCTTTTAGAGACCCTTTACAGGATGACACTGGAATGTAC GTTACTGAGGAAGTCACCTCCTCTGAAGATCAACGAAAGACTTATGCCTTGACATTTAAACAGGAGTTAA AAGATGTAATCCTCTGTATCTCTCCAGTTATTACATTCCGTGAACCTTTCCTTTTAACTGAAAAGGGGAT GAGATGCTCAACTCGAGATTATTTTCCAGAGCAGATTTACTGGTCTCCTCTTCTCAACAAAGAGGTGAAG GAAATGGAGAGCAGGAGGAAGAAACAGCTGCTCAGGGATCTCTCTGGACTTCAGGGCATGAATGGCAGTG TTCAGGCCAAGTCTATTCAAGTCTTACCCTCACATGAGCTAGTGAGCACCAGGATTGCTGAACATCTGGG TGACAGCCAGACCTTGGGTAGAATGCTAGCTGATTATCGAGCTAGAGGAGGAAGAATTCAGTCAAAACAT TTGGACCCCTTTGTCCATTCAAAAGATGCATCATGTACTTCAGGTGGCAAATCAGGAAACAAAACTGAGA GTGATGAAGAGAGGGGATTGATTCCAAGTGATGTAATATGGCCAACAAAGGTGGACTGTCTGAACCCTGC TAACCACCAGAGGCTCTGTGTGCTCTTCAGCAGCTCTTCTGCCCAGTCCAGCAATGCTCCCAGTGCTTGT GTCAGTCCTTGGATTGTAACAATGGAGTTTTATGGAAAGAATGACCTTACACTGGGGATATTTTTAGAAA GATACTGTTTCAGGTCTTCTTACCAGTGTCCGAGCATGTTCTGTGACACCCCCATGGTTCATCACATTCG ACGCTTTGTTCATGGCCAAGGCTGTGTACAGATAATTCTGAAGGAGTTGGATTCTCCAGTGCCTGGATAT CAACATACAATTCTCACATATTCCTGGTGCAGAATCTGCAAACAAGTAACACCAGTTGTTGCTCTTTCAA ATGAATCCTGGTCTATGTCATTTGCAAAGTACCTTGAACTTCGATTTTATGGCCACCAGTACACACGCAG AGCCAACGCTGAGCCCTGCGGTCACTCTATCCACCATGATTATCACCAGTATTTCTCTTATAACCAGATG GTGGCATCTTTCAGTTACTCTCCTATTCGGCTTCTTGAAGTATGTGTTCCACTACCAAAAATATTCATTA AGCGTCAAGCCCCACTGAAGGTATCTCTTCTTCAGGACCTCAAAGACTTTTTTCAGAAGGTTTCACAGGT GTACCTAGCTGTTGATGAGAGACTTGCATCCTTGAAAACGGATACATTTAGCAAAACTAGAGAGGAAAAG ATGGAAGATATCTTTGCACAAAAGGAGATGGAAGAGGGTGAGTTTAAGAACTGGACAGAGAAGATGCAAG CAAGGCTCATGTCTTCCTCTGTGGATACCCCTCAGCAACTGCAGTCCATTTTTGAGTCACTGATTGCCAA GAAGCAAAGCCTCTGTGAGGTGCTCCAGGCGTGGAACAGCAGGTTGCAGGACCTCTTCCAGCAGGAAAAA GGTAGAAAGAGGCCTTCAGTTCCTCCCAGTCCTGGGAGACTGAGACAAGGTGAAGAAAGCAAGATAAATG CAATGGACACATCTCCAAGGAATATTTCTCCAGGACTTCACAATGGAGAAAAAGAGGATCGCTTCTTGAC AACCCTGTCCAGCCAGAGCTCTACGAGCTCCACCCACCTCCAGCTGCCCACTCCTCCCGAGGCCCTGGCC GAGCAGGTAGTGGGAGGGCCGACTGATCTGGATTCAGCCAGTGGCTCTGAAGATGTATTTGATGGTCATT TGCTGGGATCCACAGACAGCCAGGTGAAGGAAAAGTCAACCATGAAAGCCATCTTTGCTAATTTGCTTCC AGGAAACAGCTACAATCCCATTCCATTTCCTTTTGATCCAGATAAACACTACTTAATGTATGAACATGAA CGGGTGCCCATTGCTGTCTGTGAGAAAGAGCCCAGCTCCATCATTGCTTTTGCACTCAGTTGTAAAGAAT ACCGCAATGCCTTAGAGGAATTGTCCAAAGCAACTCTGCGGAACAGTGCTGAAGAAGGGCTCCCAGCCAA TAGTGCTTTAGATAACAGACCTAAGAGTAGCAGCCCTATTAGACTACCTGAAATCAGTGGAGGACAGACA AACCGCACAGTAGAAGCAGAACCTCAGCCAACCAAAAAAGCTTCAGGAATGTTGTCCTTCTTCAGAGGAA CAGCAGGGAAGAGCCCTGATCTGTCTTCCCAGAAGAGGGAGACCTTGCGAGGGGCAGACAGTGCTTACTA CCAGGTTGGGCAGGCCGGCAAGGAGGGGTTGGAGAGTCAAGGCCTGGAGCCTCAAGATGAAGTAGATGGA GGAGATACACAGAAGAAACAACTCACAAATCCTCATGTGGAACTTCAATTTTCTGATGCTAATGCCAAGT TTTACTGTCGGCTGTACTACGCGGGAGAGTTCCACAAGATGCGTGAAGTGATTCTGGGCAGCAGTGAGGA GGAATTCATCCGTTCCCTTTCTCACTCATCTCCCTGGCAGGCCCGGGGAGGCAAGTCAGGAGCTGCTTTC TATGCCACCGAAGATGATAGATTCATTCTGAAGCAAATGCCTCGTTTGGAAGTCCAGTCTTTCCTTGACT TTGCACCACACTACTTCAATTATATCACAAATGCTGTTCAACAAAAGAGGCCCACCGCCTTGGCTAAAAT TCTTGGAGTTTACAGAATTGGTTATAAGAACTCTCAGAACAACACTGAGAAGAAGTTAGATCTCCTTGTC ATGGAAAATCTTTTCTATGGGAGAAAGATGGCACAGGTTTTTGATTTGAAGGGTTCACTTAGGAATCGAA ATGTAAAAACTGACACTGGGAAAGAGAGCTGTGATGTGGTTCTGTTGGATGAAAACCTCCTAAAGATGGT TCGAGACAACCCTCTCTATATTCGTTCCCATTCCAAATCTGTGCTGAGAACCTCCATCCACAGCGACGCC CATTTCCTTTCCAGCCACCTCATTATAGACTATTCTCTGCTGGTTGGGCGAGATGACACTAGCAATGAGC TTGTGGTTGGCATCATAGATTACATTCGAACATTTACATGGGACAAAAAACTTGAGATGGTTGTGAAGTC AACAGGAATTTTAGGAGGACAAGGTAAAATGCCAACTGTGGTCTCTCCAGAGTTGTATAGGACTAGATTT TGTGAAGCAATGGACAAGTATTTCTTGATGGTGCCAGACCACTGGACAGGGTTGGATCTGAATTGCTGA ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGATT ACAAGGATGACGACGATAAGGTTTAA |
Restriction Sites | SgfI-MluI |
ACCN | NM_011086 |
ORF Size | 6159 bp |
Insert Size | 6159 |
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). |
Reference Data | |
RefSeq | NM_011086.2, NP_035216.2 |
RefSeq Size | 11255 |
RefSeq ORF | 6159 |
Locus ID | 18711 |
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