Col6a3 (NM_001109008) Rat Untagged Clone
CAT#: RN202017
Col6a3 (untagged ORF) - Rat procollagen, type VI, alpha 3 (Col6a3), (10 ug)
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Specifications
Product Data | |
Type | Rat Untagged Clone |
Tag | Tag Free |
Symbol | Col6a3 |
Vector | pCMV6-Entry |
E. coli Selection | Kanamycin (25 ug/mL) |
Mammalian Cell Selection | Neomycin |
Sequence Data |
>RN202017 representing NM_001109008
Red=Cloning site Blue=ORF Orange=Stop codon TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC GCCGCGATCGCC ATGAGGAAACACCGGCATCTGCCCCTAGTGGCTGTCTTTAGCCTTCTCCTCTCTGGCATCACCATGACTC ATGCCCAACAACAATCAGATGTCAAAAACGGTGCGGCGGCTGACATATTGTTTCTAGTGGATTCCTCTTG GAGTGCTGGGAAGGACCGTTTCCTGCTTGTTCAAGAGTTTCTGTCTGATGTTGTAGAGTCTTTATCTGTG GGAGACAATGATTTTCATTTTGCTCTGGTCCGGCTCAACGGAAACCCACATACTGAGTTCCTGTTAAATG CATACCACTCTAAACAAGAAGTCCTTTCTCATATTTTGAACATGTCTTACATTGGGGAAAGCAATCAAAC TGGAAAAGGATTAGAATATATAATTCACAGCCACCTCACTGAGGCTTCTGGAAGCCGGGCCGCTGACGGA GTCCCTCAGGTTATCGTAGTATTAACTGATGGGCAATCGGAGGAGGACGGCTTCGCTCTGCCCTCAGCGG AACTTAAGTCTGCGGACGTTAACGTGTTTGCAGTTGGAGTTGAGGATGCAGATGAAAGAACCTTAAGGGA AATAGCAAGCGAACCGCTCAGTATGCATGTTTTCAACCTAGAGAACGTTACCTCACTTCATGACATGGTA GGGAACTTAGTGTCCTGTATACACTCCTCTGTGAATCCAGAAAGGGCTGGGGACAAGGAAAGCCTTAAAG ACATCACAGCACAAGACTCAGCTGACATTATTTTCCTTATTGATGGATCACAGAACACCGGAAAGGCCAA TTTCGATGTCATTCGAGACTTCCTTGTAAATGTCCTTGAGAGACTTTCAGTTGGAAATCAGCAGGTCCGA GTGGGGGTGGTACAGTATAGTGACGAGCCCAGAACCATGTTCTCCTTGGATAGCTACCCCTCCAAGGCTG CAGTTCTGGATGCTGTCAAAAGGCTCAGCTTTGCTGGTGGGGAGTTGGCCAATATAGGCCAGGCCCTTGA CTTTGTAGTAGAGAATCACTTCACTCGGACAGGTGGCAGCCGTGTGGAGGAAGGGGTCCCCCAGGTGCTG GTCCTCATAAGTGCTGGGCCTTCTAGTGATGAGATTCGAGATGCAGTGGTAGCTCTGAAGCAGGGTAGTG TGTTCTCATTTGGCCTCGGAGCCCAGGCTGCCTCCAGGGTAGAGCTTCAGCACATAGCTACCGATGACAA CTTGGTGTTTACTGTCCCGGAATTCCGTAGCTTTGGGGACCTCCAGGAGCAATTACTGCCATACCTTGTT GGTGTGGCCCAAAGGCACTTTGTCTTGCAACCACCAGCTATTGTCACACAAGTCATGGAAGTCAACAAGA GGGACATAGTCTTCCTGGTGGATGGTTCCTCCAGCCTGGGACAGGCTAACTTCAATGCCATCCGAGACTT CATTAGCAGAGTCATCCAGAGGCTGGAAATTGGTCAGGACCTGGTTCAGGTATCAGTGGCTCAGTATGCA GACACCGTCAAGCCCGAGTTCTATTTAAATACCTACTCTACCAAGAAGGATGCTATAACCACTGTGCGGA AGATGAAGGCCCTGGAAGGCTCAGCCCTGTACACGGGGTCTGCTCTGGACTTTGTTCGAAACAACCTCTT CACTAGCTCAGCCGGCCACAGGGCCGCTGAGGGGGTTCCGAAGCTCCTGGTGCTAATCACAGGTGGTAAG TCACTCGATGATGTCAGCCAGGCTGCCCAGGAGCTGCAGAAAGGCAGCATCATGGCCTTGGTCATTGGCA GCAGGGCCGCCGATGAAGACGAGCTGAAAGAGATCGCTTTCGACTCCTCCCTGGTCTTCATTCCTGCTGA GTTCCGCCCTGCTCCCTTACAAAGCATGCTGCCCAGCCTGATGGCACCCCTCAGGACCCTCACCGGAACC ACAGAAGTTCACGTAAACAAACGGGATATCATCTTCCTTTTGGATGGCTCCGACAACGTTGGGAAAAACA ATTTTCCTTATGTGCGTGACTTTGTAACCAACCTAGTTAACAGCCTCGATGTTGGAAGTGACAATATCCG TGTTGGCTTGGTGCAATTTAGTGACACTCCGGTCACGGAGTTCTCTCTAGACACGTATCAGACCAAGTCA GAGCTGCTTGCTCACCTGAGGCGCTTGCAGCTCAAGGGGGGCACCGGCTTGAATGCAGGCTCTGCCTTAA GCTATGTCCATGCCAATCACTTCACGGAGGCAGGCGGCAGCAGGATTCGTGAACATGTACCTCAGTTGCT GCTCCTGCTCATGGCCGGGCCTTCTGAGGATGTCTATTTGCAAGCTGCCAATGCCCTGGTGCGCTCAGGG GTGCTGACCTTCTGTGTGGGGACCAATCAGGCGGATAAGGCTGAGTTAGAGCGTATTGCTTTTAACCCCA GCCTGGTATACCTCATGGATGATTTCAGCGCCCTGCCAGCTTTGCCTCAACAGCTGATTCAACCCCTAAC CACATATGTTAGTGGAGGTGTACAGGAAGTTCCACTGTCCCAGCCAGAGGTCAAGCGGGACATTCTTTTC CTCTTTGATGGCTCAGTCAATGTCATGGGCCAGTTCCCTGCTGTCAGAGACTTTCTCTACAGGATCATTG AGGAGCTCGATGTGAAGCCAGATGGGACCCGGGTAGCAATAGCGCAGTTCAGTGATGACGTCAGGGTGGA GTCCCGTTTCAATGAGCACCAGACGAAGGCTGAAATCCTTAACCTCGTGAAGAAGATGAAGTTAAAGACA GGCAAAGGTCTCAACCTGGGCTTGGCCCTGGATCACGCCCTTAGGACCATCTTTGTGAGGTCGGCTGGCA GCCGCATCGAGGACAACGTGCAGCAGTTCCTGGTGCTCCTGGTGGCTGGAAGGTCGACAGATGCTGTGGC CGGGCCTGCAAGCTCTCTGAAGCAGAGAGGGGTGATACCTTTCATCTTCCAAGCCAAGAATGCCAATCCC AGTGAGCTGGAGCAGATTGTGCCATCCCCCGCATTCATCCTGGCTGCAGAGTCGCTCCCTAAGATCGGGG ACCTCCAGTCAGAGATTGTGGGCCTTCTGAAGGCTAAACAGACTTCAGACACTGTATCAGGTGAAAAGGA TGTGGTGTTTCTGATTGATGGCTCCGAGGGGGTCCGGAGTGGCTTCCCCCTGCTAAAGGAGTTTGTGCAG AGGGTCGTGGAGAGCCTGGATGTGGGTCCCAACCAGGTGCGTGTGGCACTGGTGCAGTACAGTGACCGGA CCAGGCCGGAGTTCTATCTGAATTCCCACATGGACCAGCAGGGTGTCATCAGCGCCATCCGCAGACTGAC ACTGCTGGGCGGCCCAACCCCCAACACAGGGGCGGCACTGGACTTTGTGTTAAGGAATATCCTGACCAGT TCTACTGGGAGCAGGATAGAAGAAGGTGTTCCTCAGCTCCTGATCGTCCTCACGGCGGAGCGGTCAGGGG ATGATGTGAGAGGCCCCTCGGTGGTCCTGAAGCAGGGAGGGGCTGTGCCCATTGGTATTGGCATTGGAAA TGCTGACATCTCTGAAATGCAGACCATCTCCTTCATCCCCGACTTCGCTGTGGCCATCCCCACCTTCCGG GAGCTTGGGACAATACAGCAGGTTATCTCTGAGAGGGTGATCCAGCTTAATCGTGAACAGCTGAGCAGTT TGACACCTGTTTTGATGCCCTCACCAAGTGCAGGTCCTGGTAACAAGAAAGACGTGGTCTTTCTCATCGA TGGATCCCAAAACGCTGGCGCAGAGTTCCAGCACATCCGTACCCTGATTGAGAGGCTAGTCGAGTACCTG GACATAGGCTTCGACACCACCCGGGTAGCCGTCATCCAGTTCAGTGAGGACACCAAGATGGAGTTTCCTC TGAACGCCCACTTCAGCAAGGACGAAGTACAGAACGCTGTGCGCAGGCTGCGGCCCAAGGGTGGGAGGCA AGTCTACATTGGAAACGCTCTGGAGTATGTGCTGAAGAACATCTTCCAGAGACCGCTTGGGAGCCGGATA GAAGAGGGTGTTCCACAGTTCCTAGTCCTCATTTCGTCTGGGAAGTCTGCTGATGAGGTGGACGACTCAG CTGTGGAACTCAAGCAGTTTGGCGTGGCCCCTCTCACCGTAGCCAGACACACAGACCAGGAAGAGCTGGT GAAGATCTCCCTGAGTCCTGAGTACGTGTTCTCCGTGAGCACCTTCAGGGAGCTGCCCAGACTGGAGCAG AGGCTGCTGACGCCCATCACCACTCTAACCTCACAGCAGATCCAGCAGATCCTGGCCAGTACACGATATC CCCCTTCAGTGGCTGAAAGTGATGCTGCGGACATCGTCTTTCTGATCGACAGCTCCGATGCCATGAAGCC TGACGGTATTGCTCATATCCGTGACTTTGTCAGCAGGATTGTCCGCAGACTCAACATCGGCCCCAATAAA GTGAGGATTGGGGTCGTGCAGTTCAGCAACGATGTCTTCCCTGAGTTCTACCTGAAGACCCACAAGTCAC AGAACAGTGTGCTTGAAGCCATCCGGCGTCTGAGGTTCAAAGGAGGGTCTCCCCTGAACACTGGCAGAGC CCTGGAGTTTGTGGCAAGAAACCTCTTTGTGAAGTCTGCTGGGAGCCGGATAGAAGATGGGGTCCCTCAA CACCTGGTCTTGTTCCTGGGTGGGAAGTCTCAGGACGATGTGTCTAGGCATGCCCAAGTCATAAGCTCCT CGGGGATCATGAGTTTAGGAATAGGAGACCGGAACATCGATAGGACAGACTTGCAAACCATCACCAACGA CCCCAGGCTGGTCTTCACAGTTCGGGAATTCAGAGAGCTTCCCAACATAGAAGAGAGGGTCATGCTTTCC TTTGGACCCTCTGGACCTACCCCTCAGCCTCCTGAGGTAGAATTCCCTTCTTCCCGGCCAGAGAAGAAGA AGGCCGACATCGTGTTCCTGCTGGATGGTTCCATCAACTTTCGGAGGGACAGTTTCCAGGAAGTGCTCCG TTTTGCATCTGAAATCGTGGACACGGTCTACGAAGATGGTGACTCCATCAGAGTGGGGCTGGTCCAGTAC AACTCAGACCCCACGGATGAATTCTTCCTGAGGGACTTTTCTACCAAAAGGCAGATTATCGATGCCATCA ACAAGGTCATCTACAAAGGAGGGAGGCACGCCAACACGAGGGTGGGCATTGAGCACCTGCTGAAGAATCA CTTTGTGTCCGAGGCTGGGAGCCGCCTGGACGAGCGGGTCCCTCAGATCGCCTTCGTGATCACGGGAGGA AAGTCAGTGGAGGATGCTCAGGATGTGAGCCTGGCTCTCACCCAGAAAGGTGTCAAGGTGTTTGCTGTCG GCGTGAGGAACATCGACTCTGAGGAGGTGGGGAAGATAGCCTCCAACAGTGCCACAGCCTTCCGGGTAGG CAGCGTACAGGAGCTGTCGGAACTGAGTGAGACGGTGCTCGAGACTCTGCATGACGCGATGCACGAGACC CTCTGTCCTGGTGTGACCGATGTTTCCAAAGCCTGTAATCTGGAAGTCATTCTGGGGTTCGATGGATCTC GAGATCAGAACGTGTTTGTGAGTCAGAAGGGTCTCGAGTCCAAGGTGGACACCATCTTGAATAGAATCAG CCAGATACAAAGGATCAGCTGCAGCAGTAACCAGCTGCCCACTGTGCGGGTGTCTGTGGTGGCCAACACG CCCTCTGGGCCAGTGGAAGCCTTTGACTTTGCCGAGTATCAGCCAGACCTGTTCGAGAAGTTCCGTACCA TGCGCAGCCAGCACCCATACGTCCTCACCGCTGACACGCTGAAGCTGTACCAGAACAAATTCAGGCAATC GTCACCTGACACTGTGAAGGTCGTCATTCACTTCACGGATGGAGCTGATGGAGACATGGCCGACTTATAC CGAGCATCTGAGGAGCTCCGTCAAGCAGGTGTCCAAGCCCTGATCCTGGTGGGTCTTGAACGTGTGGCTA ACCTGGAGCGGCTGATGCAAGTGGAGTTCGGGCGGGGCTTCATGTACGACAGGCCCCTGAGGCTCAACTT GCTTGACTTGGACTACGAATTGGCGGAGCAGCTTGATAATATTGCTGAGAAAGCTTGCTGTGGGGTTCCA TGCAAGTGCTCTGGAGAGAGGGGAGACAGAGGGCCCATCGGCAGCATCGGACCAAAGGGTATATCCGGGG AAGATGGCTACCGAGGCTATCCAGGCGATGAAGGTGGACCCGGTGAGCGAGGTCCCCCGGGTGTGAATGG CACACAAGGTTTCCAGGGCTGCCCCGGCCAGAGAGGAGTGAAGGGTTCTCGAGGATTCCCAGGCGAGAAG GGTGAATTGGGAGAAATTGGCTTGGACGGTCTGGATGGTGAAGAGGGAGACAAGGGGCTGCCTGGTTCAT CTGGTGAAAAGGGGAGTCCTGGAAGAAGGGGTGACAAAGGACCCAAAGGAGACAAAGGCGAGAGAGGAGA TGTGGGGATTCGAGGTGACCCGGGTGACTCAGGACGGGACAGCCAGCAGAGAGGACCCAAAGGAGAGACG GGCGACATTGGCCCCATGGGTCTCCCAGGCAGAGACGGTATCCCCGGCAGTCCAGGAGACCCTGGGAAAG ACGTGAGTACCTTGGGGTGTTGGGTTCTGCTCAGGGACAAGTGA ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGATT ACAAGGATGACGACGATAAGGTTTAA |
Restriction Sites | SgfI-MluI |
ACCN | NM_001109008 |
ORF Size | 6624 bp |
Insert Size | 6624 |
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_001109008.1, NP_001102478.1 |
RefSeq Size | 7250 |
RefSeq ORF | 6624 |
Locus ID | 367313 |
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