COL12A1 (NM_004370) Human Untagged Clone
CAT#: SC303474
COL12A1 (untagged)-Human collagen, type XII, alpha 1 (COL12A1), transcript variant long
CNY 59090.00
Product images

Specifications
Product Data | |
Type | Human Untagged Clone |
Tag | Tag Free |
Synonyms | BA209D8.1; BTHLM2; COL12A1L; DJ234P15.1; EDSMYP; UCMD2 |
Vector | pCMV6-Entry |
E. coli Selection | Kanamycin (25 ug/mL) |
Mammalian Cell Selection | Neomycin |
Sequence Data |
>SC303474 representing NM_004370.
Blue=Insert sequence Red=Cloning site Green=Tag(s) GCTCGTTTAGTGAACCGTCAGAATTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTG GATCCGGTACCGAGGAGATCTGCCGCCGCGATCGCC ATGCGGAGTAGGCTTCCCCCAGCGCTTGCCGCCCTGGGCGCGGCCCTGCTCCTGTCTTCCATTGAGGCA GAAGTTGACCCACCTTCAGACTTGAATTTTAAAATTATAGATGAAAATACTGTTCATATGTCATGGGCA AAACCAGTTGATCCAATTGTGGGTTACAGAATAACGGTGGACCCTACAACGGATGGGCCTACTAAAGAA TTTACCCTTTCAGCTAGTACCACTGAAACTTTATTGTCAGAACTTGTACCTGAAACAGAGTATGTGGTG ACAATAACTTCATATGATGAAGTAGAAGAAAGTGTACCAGTTATAGGACAACTAACAATTCAAACAGGT AGTTCGACAAAGCCAGTGGAGAAGAAACCTGGAAAAACCGAGATACAAAAATGCTCTGTCAGTGCCTGG ACTGATTTGGTTTTCCTCGTGGATGGCTCTTGGAGTGTGGGAAGAAATAATTTCAAGTACATTTTAGAC TTCATTGCTGCTCTTGTGTCTGCTTTTGACATTGGGGAAGAGAAGACAAGAGTTGGAGTTGTTCAATAC AGCTCTGATACCAGGACTGAATTTAACTTAAATCAGTACTACCAAAGGGATGAACTTCTTGCTGCAATA AAAAAAATTCCATATAAAGGTGGCAACACAATGACAGGGGATGCCATTGATTATTTAGTTAAAAATACT TTCACGGAATCTGCTGGGGCAAGAGTTGGCTTTCCTAAAGTGGCAATTATTATTACGGATGGAAAATCC CAGGATGAAGTGGAAATTCCAGCAAGAGAGCTTCGTAATGTTGGAGTTGAAGTTTTCTCCTTGGGCATT AAAGCTGCAGATGCAAAAGAACTCAAACAAATTGCCTCCACACCTTCACTGAACCATGTTTTCAATGTG GCCAACTTTGATGCAATTGTGGATATTCAGAATGAGATCATCTCCCAGGTGTGCTCAGGTGTTGATGAA CAACTTGGTGAATTGGTTAGTGGAGAAGAAGTTGTTGAGCCTCCTTCAAATTTGATTGCCATGGAAGTC TCTTCAAAATATGTTAAGCTAAATTGGAATCCATCTCCTAGTCCAGTGACTGGCTACAAAGTCATCCTC ACACCAATGACTGCAGGAAGCCGACAGCACGCTCTGAGTGTGGGGCCTCAGACAACCACGCTCAGTGTT CGCGACCTCTCAGCAGACACAGAATACCAGATCAGTGTTTCCGCCATGAAGGGAATGACATCCAGTGAA CCCATTTCAATAATGGAGAAGACTCAGCCAATGAAAGTTCAAGTGGAATGCTCACGTGGTGTGGATATA AAAGCCGATATTGTGTTTTTGGTTGATGGCTCCTATAGCATTGGGATTGCAAACTTTGTTAAAGTTAGA GCCTTTTTGGAAGTTCTTGTAAAAAGTTTTGAAATTTCACCAAATAGGGTCCAGATTAGTCTTGTGCAA TACAGCCGGGATCCTCATACTGAGTTCACTTTGAAAAAATTCACCAAAGTTGAAGATATAATTGAAGCA ATAAACACCTTCCCTTACAGAGGAGGATCTACAAATACTGGCAAAGCAATGACTTATGTCAGAGAGAAA ATATTTGTGCCTAGCAAGGGATCAAGAAGCAATGTGCCAAAGGTCATGATTCTTATCACGGATGGGAAA TCATCAGATGCTTTCAGAGATCCTGCGATAAAACTGAGGAATTCAGATGTTGAAATCTTTGCAGTTGGT GTGAAGGATGCCGTTCGCTCAGAATTGGAAGCTATTGCCTCTCCTCCTGCAGAGACCCATGTGTTCACA GTGGAAGATTTTGATGCTTTTCAGAGGATATCTTTTGAACTCACACAGTCTATCTGCCTTAGAATTGAG CAAGAATTGGCAGCTATAAAGAAGAAAGCTTACGTCCCTCCAAAGGATCTTAGTTTTTCAGAAGTGACT TCTTATGGTTTCAAAACCAACTGGTCTCCAGCTGGAGAAAATGTTTTTTCATATCACATCACCTACAAG GAAGCGGCTGGGGATGATGAGGTCACTGTGGTGGAGCCAGCATCGAGCACCAGTGTTGTTCTCAGCAGC CTGAAGCCAGAGACCTTGTATTTGGTCAATGTGACTGCGGAGTATGAGGATGGCTTCAGCATTCCCTTA GCTGGAGAGGAGACCACCGAAGAAGTAAAAGGAGCACCTCGAAACCTAAAGGTGACAGATGAGACTACA GATAGTTTCAAAATTACTTGGACTCAAGCTCCAGGGAGAGTTTTAAGATATCGAATTATATATAGACCA GTTGCTGGTGGAGAGAGCAGAGAAGTTACCACCCCACCCAATCAGAGGAGGAGAACACTGGAGAACTTG ATTCCAGACACGAAATATGAAGTATCTGTAATTCCTGAATATTTCTCAGGACCTGGTACTCCATTAACT GGAAATGCAGCCACTGAAGAAGTTAGAGGGAATCCAAGAGACTTAAGAGTTTCTGACCCTACGACGTCT ACTATGAAATTATCTTGGAGTGGGGCACCAGGAAAAGTGAAACAGTATCTCGTCACATATACCCCAGTG GCAGGGGGTGAAACTCAAGAGGTCACTGTGAGGGGAGATACAACCAATACGGTGCTGCAGGGATTGAAG GAAGGGACACAATACGCCTTATCTGTGACAGCCTTGTATGCGTCTGGGGCTGGAGACGCCCTCTTTGGT GAAGGAACAACACTTGAAGAACGTGGTTCTCCTCAAGATTTAGTTACTAAAGACATCACTGACACATCA ATTGGGGCTTATTGGACATCTGCTCCAGGAATGGTTCGCGGTTACAGGGTCTCATGGAAATCACTTTAT GATGATGTTGACACTGGAGAGAAAAATCTGCCTGAAGATGCAATTCATACGATGATAGAAAATCTGCAG CCAGAGACCAAATACAGAATTTCAGTATTTGCCACTTACAGCAGTGGAGAAGGAGAACCTTTGACTGGA GATGCCACAACTGAATTATCTCAAGATTCCAAAACCCTGAAAGTAGATGAAGAAACAGAAAACACAATG AGAGTTACATGGAAACCAGCACCAGGGAAAGTCGTCAACTACCGTGTTGTCTATCGCCCTCATGGGAGA GGGAAGCAAATGGTTGCTAAGGTGCCCCCCACAGTCACTTCGACAGTGTTAAAGCGACTTCAGCCACAG ACCACATATGACATCACAGTTCTTCCTATTTACAAGATGGGAGAAGGAAAGCTTAGGCAAGGATCAGGA ACAACAGCTTCTCGGTTTAAGTCTCCTAGAAACCTCAAAACATCTGACCCAACCATGTCAAGCTTCCGA GTGACTTGGGAGCCTGCCCCTGGGGAAGTGAAGGGTTATAAAGTCACATTCCACCCTACGGGGGATGAC AGAAGACTGGGGGAGTTAGTGGTTGGACCCTATGACAACACAGTTGTTTTGGAGGAACTTAGGGCTGGT ACCACCTATAAAGTAAATGTTTTTGGAATGTTTGATGGAGGAGAAAGCTCACCACTTGTTGGACAAGAA ATGACAACCCTTTCCGACACAACTGTTATGCCAATTTTATCTTCTGGGATGGAGTGTCTCACCAGAGCT GAGGCAGACATTGTGTTGCTGGTGGATGGATCATGGAGCATCGGCCGGGCAAATTTTAGAACCGTGAGG AGTTTCATTTCTCGTATTGTGGAAGTCTTTGACATTGGCCCCAAAAGAGTACAAATTGCTCTTGCTCAG TATAGTGGGGATCCCAGAACAGAGTGGCAGTTAAATGCACACAGAGACAAGAAGAGCTTGTTGCAAGCT GTGGCAAACTTGCCGTACAAAGGAGGCAATACTCTCACAGGCATGGCTTTGAATTTCATTCGCCAACAG AACTTCAGGACCCAAGCTGGCATGAGACCTCGAGCTCGAAAAATTGGTGTGCTCATTACTGATGGAAAA TCACAAGACGATGTTGAAGCACCTTCAAAGAAACTCAAGGATGAGGGAGTGGAGCTGTTTGCTATTGGT ATTAAAAATGCTGATGAAGTCGAATTAAAGATGATTGCAACTGATCCTGATGATACCCATGCATACAAT GTGGCAGATTTTGAGTCACTCTCCAGGATAGTGGATGATCTCACCATTAATTTGTGTAACAGTGTCAAA GGTCCAGGTGATTTGGAAGCACCTTCTAACTTAGTTATTTCTGAGCGAACCCATCGTTCTTTTAGAGTG AGCTGGACACCACCTTCTGACAGTGTGGATCGATATAAGGTGGAATACTATCCAGTTTCTGGAGGGAAA CGTCAAGAATTTTATGTGAGTCGAATGGAAACTAGCACAGTGCTGAAAGATCTGAAACCTGAAACTGAA TATGTTGTCAATGTGTATTCTGTGGTAGAAGATGAATATAGTGAGCCTCTGAAGGGGACAGAAAAAACC TTGCCAGTGCCTGTAGTCAGCCTGAATATTTATGATGTTGGCCCTACCACCATGCATGTGCAGTGGCAG CCTGTGGGAGGAGCTACTGGCTACATCTTGTCATACAAACCTGTTAAGGACACAGAGCCAACAAGACCC AAAGAGGTGCGTTTGGGGCCAACAGTGAATGACATGCAGCTGACTGACCTTGTTCCCAACACGGAGTAT GCAGTCACAGTCCAGGCTGTCCTGCACGACCTCACTAGTGAACCTGTCACTGTTCGGGAAGTCACCTTG CCTTTACCCAGACCTCAGGATCTGAAACTCAGAGATGTGACTCACAGCACTATGAATGTCTTTTGGGAA CCTGTGCCTGGAAAAGTGCGTAAATATATTGTTCGATACAAAACACCAGAAGAGGATGTCAAAGAGGTA GAGGTGGACAGATCAGAGACCAGCACTTCCCTCAAAGACCTCTTCTCACAGACCTTGTACACAGTCAGC GTTTCTGCAGTACATGACGAGGGGGAGTCTCCTCCAGTGACTGCTCAAGAAACTACCCGACCCGTGCCA GCCCCAACAAACTTAAAGATTACTGAAGTAACATCAGAGGGTTTCAGAGGGACTTGGGATCATGGAGCT TCAGATGTGTCTCTCTACAGAATAACTTGGGCACCTTTTGGAAGCTCAGATAAGATGGAGACCATCTTA AATGGAGATGAAAACACTTTGGTGTTCGAAAACCTGAACCCCAACACCATCTATGAAGTTTCCATTACT GCCATCTATCCTGATGAGTCAGAAAGTGATGACCTGATTGGCAGTGAGCGCACACTGCCTATCTTAACA ACACAAGCTCCCAAAAGTGGCCCACGAAACCTTCAAGTGTACAATGCAACATCTAACAGCCTGACTGTT AAGTGGGATCCTGCTAGTGGTCGTGTGCAGAAATATAGGATCACTTATCAGCCTTCCACAGGGGAAGGC AATGAGCAAACGACCACAATAGGAGGACGGCAGAACAGTGTGGTCCTGCAGAAACTGAAGCCAGACACT CCTTACACTATCACCGTATCCTCTCTGTATCCTGATGGTGAAGGAGGTCGGATGACGGGAAGAGGCAAG ACCAAACCTCTAAACACTGTAAGGAACCTGAGAGTGTATGACCCTTCTACCAGCACCTTGAATGTCCGC TGGGACCATGCAGAGGGAAATCCTCGTCAGTACAAGCTCTTCTATGCACCAGCAGCAGGTGGTCCAGAG GAACTGGTACCAATCCCCGGGAATACCAATTATGCCATTCTTAGGAATCTGCAGCCAGATACCTCATAC ACTGTGACTGTAGTTCCCGTTTATACTGAAGGTGATGGGGGACGCACATCAGATACTGGAAGGACATTG ATGAGAGGACTGGCAAGAAATGTCCAAGTATACAATCCTACACCTAACAGCCTCGATGTTCGCTGGGAC CCTGCTCCAGGACCTGTGCTGCAATATCGCGTTGTGTATTCTCCTGTGGATGGCACAAGACCCTCAGAA TCTATAGTAGTGCCAGGAAACACGCGCATGGTGCATCTGGAGCGGCTGATTCCGGACACACTCTATTCC GTGAACCTTGTGGCTCTGTACTCGGATGGAGAGGGAAATCCCAGCCCTGCCCAGGGCCGAACGCTACCA CGCAGTGGACCAAGGAACCTGAGAGTCTTTGGTGAAACAACCAATAGCCTCTCGGTAGCCTGGGATCAT GCTGATGGGCCAGTTCAGCAGTACAGGATCATCTATTCTCCCACTGTTGGTGATCCAATTGATGAATAT ACCACAGTCCCAGGCAGAAGAAACAATGTAATACTGCAGCCCCTGCAACCTGACACTCCATATAAAATT ACTGTTATTGCTGTTTATGAAGATGGAGATGGTGGCCATCTAACAGGAAATGGAAGAACTGTGGGACTC CTTCCTCCTCAGAACATACACATCTCTGACGAATGGTATACAAGATTCAGGGTGTCCTGGGATCCTTCA CCTTCTCCAGTTCTTGGATATAAAATAGTATATAAGCCAGTGGGTTCCAATGAGCCCATGGAAGCCTTT GTTGGAGAAATGACATCATATACCTTACACAATCTCAATCCCAGCACCACCTACGATGTGAATGTTTAT GCTCAATATGATTCTGGACTCAGTGTCCCCTTGACAGATCAAGGCACTACATTATATTTAAATGTAACA GATCTGAAAACTTACCAGATTGGGTGGGATACATTCTGTGTCAAATGGTCACCTCACCGGGCAGCCACC TCCTACAGGCTAAAACTAAGCCCTGCAGATGGAACAAGGGGACAAGAAATTACAGTGCGTGGATCAGAA ACCAGTCACTGCTTCACTGGCCTTTCACCAGACACTGATTATGGTGTCACTGTTTTTGTGCAGACACCA AATCTCGAGGGACCAGGAGTCTCTGTTAAAGAACATACCACTGTGAAACCAACAGAAGCCCCTACAGAG CCACCCACACCTCCTCCCCCTCCCACCATTCCACCAGCCCGGGATGTATGCAAAGGGGCCAAGGCAGAT ATTGTGTTCTTGACTGATGCCTCCTGGAGCATTGGGGACGATAATTTTAACAAAGTTGTAAAATTCATC TTCAATACTGTGGGAGGCTTTGATGAAATCAGTCCTGCTGGGATTCAGGTTTCATTTGTGCAATACAGC GATGAGGTCAAGTCTGAGTTCAAGCTGAACACGTACAATGACAAGGCCCTAGCCCTTGGGGCCCTCCAG AATATTAGGTACAGAGGAGGAAACACAAGAACAGGCAAGGCCCTCACGTTTATCAAGGAGAAAGTCTTG ACTTGGGAGAGCGGCATGAGGAAGAATGTCCCTAAGGTGTTGGTTGTGGTCACGGACGGTCGGTCCCAG GATGAGGTCAAGAAGGCGGCTTTGGTCATCCAGCAGTCAGGGTTCAGTGTCTTTGTAGTTGGTGTGGCT GATGTCGACTACAATGAGCTTGCCAACATTGCCAGCAAACCAAGTGAACGGCACGTGTTCATTGTGGAC GACTTTGAATCTTTTGAGAAGATCGAAGACAATCTTATTACATTTGTTTGTGAAACTGCCACTTCAAGT TGTCCTCTCATTTATTTGGATGGCTACACCTCACCAGGTTTTAAAATGCTTGAAGCATACAACCTGACA GAAAAGAATTTTGCTTCTGTACAAGGAGTATCTTTGGAGTCAGGGTCTTTCCCCAGCTACTCAGCATAC AGGATTCAGAAGAATGCGTTTGTGAATCAGCCTACAGCAGACCTACACCCAAATGGACTCCCTCCTTCA TACACGATTATATTATTATTCAGACTTCTCCCAGAAACTCCCAGTGACCCTTTTGCAATTTGGCAAATC ACAGACAGAGACTACAAACCACAAGTTGGAGTGATTGCAGATCCTTCTAGCAAGACGTTATCATTCTTT AACAAGGATACAAGAGGCGAGGTGCAAACTGTTACATTTGACACAGAAGAAGTAAAGACATTATTTTAT GGAAGTTTTCACAAGGTTCATATTGTAGTGACCTCAAAAAGTGTTAAGATTTACATTGACTGCTATGAA ATTATAGAAAAAGACATCAAGGAAGCTGGAAATATAACAACTGATGGTTATGAAATTCTTGGAAAACTC CTTAAAGGGGAAAGGAAATCAGCCGCATTCCAAATCCAGAGTTTTGACATTGTCTGCAGTCCAGTGTGG ACCAGTAGAGACAGATGCTGTGATATTCCCTCTAGGAGAGATGAGGGAAAATGCCCTGCTTTTCCAAAT TCTTGCACATGTACACAGGACAGCGTTGGACCTCCAGGACCTCCAGGCCCTGCAGGAGGACCTGGTGCT AAAGGTCCCAGAGGTGAAAGAGGTATCAGTGGGGCAATTGGGCCCCCTGGTCCTCGTGGAGACATAGGT CCTCCAGGCCCCCAGGGTCCTCCAGGCCCTCAGGGACCCAATGGACTCTCTATTCCGGGAGAGCAAGGT CGCCAAGGGATGAAAGGTGATGCTGGAGAGCCAGGACTTCCAGGCCGAACAGGAACCCCAGGATTACCT GGCCCACCAGGACCAATGGGACCTCCAGGAGACAGAGGCTTCACTGGAAAAGACGGTGCAATGGGACCC AGGGGCCCACCAGGGCCGCCGGGAAGCCCAGGCTCCCCAGGAGTCACAGGACCAAGTGGGAAGCCAGGA AAACCTGGAGATCATGGCAGACCAGGTCCATCTGGGTTGAAAGGAGAAAAAGGTGATAGGGGAGACATT GCTTCCCAGAACATGATGCGAGCAGTTGCAAGACAAGTCTGTGAACAATTGATAAGTGGTCAGATGAAC AGATTCAATCAGATGCTGAATCAGATTCCAAATGATTACCAGTCCAGTCGCAACCAGCCAGGCCCGCCG GGTCCACCGGGACCTCCTGGTAGCGCAGGAGCCAGAGGAGAACCTGGGCCTGGGGGGCGGCCAGGCTTC CCGGGCACACCAGGGATGCAGGGACCCCCTGGGGAACGAGGTTTGCCAGGAGAGAAAGGTGAAAGGGGT ACTGGATCTTCAGGACCTCGGGGGCTGCCTGGCCCCCCAGGTCCACAAGGAGAATCCAGAACAGGTCCA CCAGGGTCCACAGGTTCAAGAGGTCCCCCTGGCCCCCCTGGCCGTCCTGGAAACTCAGGTATCCGAGGA CCCCCAGGTCCTCCTGGATACTGTGATTCTTCTCAGTGTGCCAGCATCCCATACAACGGGCAAGGCTAT CCAGGTTCCGGCTAA ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGAT TACAAGGATGACGACGATAAGGTTTAAACGGCCGGC |
Restriction Sites | SgfI-MluI |
ACCN | NM_004370 |
Insert Size | 9192 bp |
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. The molecular sequence of this clone aligns with the gene accession number as a point of reference only. However, individual transcript sequences of the same gene can differ through naturally occurring variations (e.g. polymorphisms), each with its own valid existence. This clone is substantially in agreement with the reference, but a complete review of all prevailing variants is recommended prior to use. More info |
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_004370.5 |
RefSeq Size | 11579 bp |
RefSeq ORF | 9192 bp |
Locus ID | 1303 |
UniProt ID | Q99715 |
MW | 333.1 kDa |
Gene Summary | This gene encodes the alpha chain of type XII collagen, a member of the FACIT (fibril-associated collagens with interrupted triple helices) collagen family. Type XII collagen is a homotrimer found in association with type I collagen, an association that is thought to modify the interactions between collagen I fibrils and the surrounding matrix. Alternatively spliced transcript variants encoding different isoforms have been identified. [provided by RefSeq, Jul 2008] Transcript Variant: This variant (long) represents the longer transcript and encodes the longer isoform (long). |
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Other Versions
SKU | Description | Size | Price |
---|---|---|---|
RC223170 | COL12A1 (Myc-DDK-tagged)-Human collagen, type XII, alpha 1 (COL12A1), transcript variant long |
CNY 34960.00 |
|
RC223170L1 | Lenti ORF clone of Human collagen, type XII, alpha 1 (COL12A1), transcript variant long, Myc-DDK-tagged |
CNY 36860.00 |
|
RG223170 | COL12A1 (tGFP-tagged) - Human collagen, type XII, alpha 1 (COL12A1), transcript variant long |
CNY 38480.00 |
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