COL11A1 (NM_080630) Human Tagged ORF Clone

CAT#: RG218205

  • TrueORF®

COL11A1 (tGFP-tagged) - Human collagen, type XI, alpha 1 (COL11A1), transcript variant C

ORF Plasmid: DDK tGFP



  "NM_080630" in other vectors (2)

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CNY 18,530.00


货期*
3周

规格
    • 10 ug

Product images

经常一起买 (4)
pCMV6-AC-GFP, mammalian vector with C-terminal tGFP tag, 10ug
    • 10 ug

CNY 6,080.00


Mouse monoclonal turboGFP antibody, clone OTI2H8
    • 100 ul

CNY 1,000.00


Forward sequencing primer VP1.5, Reverse sequencing primer XL39, 100pmoles each
    • 100 pmol

CNY 480.00


COL11A1 rabbit polyclonal antibody
    • 100 ul

CNY 1,999.00
CNY 3,280.00

Specifications

Product Data
Type Human Tagged ORF Clone
Tag TurboGFP
Synonyms CO11A1; COLL6; DFNA37; STL2
Vector pCMV6-AC-GFP
E. coli Selection Ampicillin (100 ug/mL)
Mammalian Cell Selection Neomycin
Sequence Data
>RG218205 representing NM_080630
Red=Cloning site Blue=ORF Green=Tags(s)

TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC
GCCGCGATCGCC

ATGGAGCCGTGGTCCTCTAGGTGGAAAACGAAACGGTGGCTCTGGGATTTCACCGTAACAACCCTCGCAT
TGACCTTCCTCTTCCAAGCTAGAGAGGTCAGAGGAGCTGCTCCAGTTGATGTACTAAAAGCACTAGATTT
TCACAATTCTCCAGAGGGAATATCAAAAACAACGGGATTTTGCACAAACAGAAAGAATTCTAAAGGCTCA
GATACTGCTTACAGAGTTTCAAAGCAAGCACAACTCAGTGCCCCAACAAAACAGTTATTTCCAGGTGGAA
CTTTCCCAGAAGACTTTTCAATACTATTTACAGTAAAACCAAAAAAAGGAATTCAGTCTTTCCTTTTATC
TATATATAATGAGCATGGTATTCAGCAAATTGGTGTTGAGGTTGGGAGATCACCTGTTTTTCTGTTTGAA
GACCACACTGGAAAACCTGCCCCAGAAGACTATCCCCTCTTCAGAACTGTTAACATCGCTGACGGGAAGT
GGCATCGGGTAGCAATCAGCGTGGAGAAGAAAACTGTGACAATGATTGTTGATTGTAAGAAGAAAACCAC
GAAACCACTTGATAGAAGTGAGAGAGCAATTGTTGATACCAATGGAATCACGGTTTTTGGAACAAGGATT
TTGGATGAAGAAGTTTTTGAGGGGGACATTCAGCAGTTTTTGATCACAGGTGATCCCAAGGCAGCATATG
ACTACTGTGAGCATTATAGTCCAGACTGTGACTCTTCAGCACCCAAGGCTGCTCAAGCTCAGGAACCTCA
GATAGATGAGTATGCACCAGAGGATATAATCGAATATGACTATGAGTATGGGGAAGCAGAGTATAAAGAG
GCTGAAAGTGTAACAGAGGGACCCACTGTAACTGAGGAGACAATAGCACAGACGGAGATAAATGGCCATG
GTGCATATGGAGAGAAAGGACAGAAAGGAGAACCAGCAGTGGTTGAGCCTGGTATGCTTGTCGAAGGACC
ACCAGGACCAGCAGGACCTGCAGGTATTATGGGTCCTCCAGGTCTACAAGGCCCCACTGGACCCCCTGGT
GACCCTGGCGATAGGGGCCCCCCAGGACGTCCTGGCTTACCAGGGGCTGATGGTCTACCTGGTCCTCCTG
GTACTATGTTGATGTTACCGTTCCGTTATGGTGGTGATGGTTCCAAAGGACCAACCATCTCTGCTCAGGA
AGCTCAGGCTCAAGCTATTCTTCAGCAGGCTCGGATTGCTCTGAGAGGCCCACCTGGCCCAATGGGTCTA
ACTGGAAGACCAGGTCCTGTGGGGGGGCCTGGTTCATCTGGGGCCAAAGGTGAGAGTGGTGATCCAGGTC
CTCAGGGCCCTCGAGGCGTCCAGGGTCCCCCTGGTCCAACGGGAAAACCTGGAAAAAGGGGTCGTCCAGG
TGCAGATGGAGGAAGAGGAATGCCAGGAGAACCTGGGGCAAAGGGAGATCGAGGGTTTGATGGACTTCCG
GGTCTGCCAGGTGACAAAGGTCACAGGGGTGAACGAGGTCCTCAAGGTCCTCCAGGTCCTCCTGGTGATG
ATGGAATGAGGGGAGAAGATGGAGAAATTGGACCAAGAGGTCTTCCAGGTGAAGCTGGCCCACGAGGTTT
GCTGGGTCCAAGGGGAACTCCAGGAGCTCCAGGGCAGCCTGGTATGGCAGGTGTAGATGGCCCCCCAGGA
CCAAAAGGGAACATGGGTCCCCAAGGGGAGCCTGGGCCTCCAGGTCAACAAGGGAATCCAGGACCTCAGG
GTCTTCCTGGTCCACAAGGTCCAATTGGTCCTCCTGGTGAAAAAGGACCACAAGGAAAACCAGGACTTGC
TGGACTTCCTGGTGCTGATGGGCCTCCTGGTCATCCTGGGAAAGAAGGCCAGTCTGGAGAAAAGGGGGCT
CTGGGTCCCCCTGGTCCACAAGGTCCTATTGGATACCCGGGCCCCCGGGGAGTAAAGGGAGCAGATGGTG
TCAGAGGTCTCAAGGGATCTAAAGGTGAAAAGGGTGAAGATGGTTTTCCAGGATTCAAAGGTGACATGGG
TCTAAAAGGTGACAGAGGAGAAGTTGGTCAAATTGGCCCAAGAGGGGAAGATGGCCCTGAAGGACCCAAA
GGTCGAGCAGGCCCAACTGGAGACCCAGGTCCTTCAGGTCAAGCAGGAGAAAAGGGAAAACTTGGAGTTC
CAGGATTACCAGGATATCCAGGAAGACAAGGTCCAAAGGGTTCCACTGGATTCCCTGGGTTTCCAGGTGC
CAATGGAGAGAAAGGTGCACGGGGAGTAGCTGGCAAACCAGGCCCTCGGGGTCAGCGTGGTCCAACGGGT
CCTCGAGGTTCAAGAGGTGCAAGAGGTCCCACTGGGAAACCTGGGCCAAAGGGCACTTCAGGTGGCGATG
GCCCTCCTGGCCCTCCAGGTGAAAGAGGTCCTCAAGGACCTCAGGGTCCAGTTGGATTCCCTGGACCAAA
AGGCCCTCCTGGACCACCTGGGAAGGATGGGCTGCCAGGACACCCTGGGCAACGTGGGGAGACTGGATTT
CAAGGCAAGACCGGCCCTCCTGGGCCAGGGGGAGTGGTTGGACCACAGGGACCAACCGGTGAGACTGGTC
CAATAGGGGAACGTGGGCATCCTGGCCCTCCTGGCCCTCCTGGTGAGCAAGGTCTTCCTGGTGCTGCAGG
AAAAGAAGGTGCAAAGGGTGATCCAGGTCCTCAAGGTATCTCAGGGAAAGATGGACCAGCAGGATTACGT
GGTTTCCCAGGGGAAAGAGGTCTTCCTGGAGCTCAGGGTGCACCTGGACTGAAAGGAGGGGAAGGTCCCC
AGGGCCCACCAGGTCCAGTTGGCTCACCAGGAGAACGTGGGTCAGCAGGTACAGCTGGCCCAATTGGTTT
ACCAGGGCGCCCGGGACCTCAGGGTCCTCCTGGTCCAGCTGGAGAGAAAGGTGCTCCTGGAGAAAAAGGT
CCCCAAGGGCCTGCAGGGAGAGATGGAGTTCAAGGTCCTGTTGGTCTCCCAGGGCCAGCTGGTCCTGCCG
GCTCCCCTGGGGAAGACGGAGACAAGGGTGAAATTGGTGAGCCGGGACAAAAAGGCAGCAAGGGTGACAA
GGGAGAAAATGGCCCTCCCGGTCCCCCAGGTCTTCAAGGACCAGTTGGTGCCCCTGGAATTGCTGGAGGT
GATGGTGAACCAGGTCCTAGAGGACAGCAGGGGATGTTTGGGCAAAAAGGTGATGAGGGTGCCAGAGGCT
TCCCTGGACCTCCTGGTCCAATAGGTCTTCAGGGTCTGCCAGGCCCACCTGGTGAAAAAGGTGAAAATGG
GGATGTTGGTCCCATGGGGCCACCTGGTCCTCCAGGCCCAAGAGGCCCTCAAGGTCCCAATGGAGCTGAT
GGACCACAAGGACCCCCAGGGTCTGTTGGTTCAGTTGGTGGTGTTGGAGAAAAGGGTGAACCTGGAGAAG
CAGGGAACCCAGGGCCTCCTGGGGAAGCAGGTGTAGGCGGTCCCAAAGGAGAAAGAGGAGAGAAAGGGGA
AGCTGGTCCACCTGGAGCTGCTGGACCTCCAGGTGCCAAGGGGCCACCAGGTGATGATGGCCCTAAGGGT
AACCCGGGTCCTGTTGGTTTTCCTGGAGATCCTGGTCCTCCTGGGGAACCTGGCCCTGCAGGTCAAGATG
GTGTTGGTGGTGACAAGGGTGAAGATGGAGATCCTGGTCAACCGGGTCCTCCTGGCCCATCTGGTGAGGC
TGGCCCACCAGGTCCTCCTGGAAAACGAGGTCCTCCTGGAGCTGCAGGTGCAGAGGGAAGACAAGGTGAA
AAAGGTGCTAAGGGGGAAGCAGGTGCAGAAGGTCCTCCTGGAAAAACCGGCCCAGTCGGTCCTCAGGGAC
CTGCAGGAAAGCCTGGTCCAGAAGGTCTTCGGGGCATCCCTGGTCCTGTGGGAGAACAAGGTCTCCCTGG
AGCTGCAGGCCAAGATGGACCACCTGGTCCTATGGGACCTCCTGGCTTACCTGGTCTCAAAGGTGACCCT
GGCTCCAAGGGTGAAAAGGGACATCCTGGTTTAATTGGCCTGATTGGTCCTCCAGGAGAACAAGGGGAAA
AAGGTGACCGAGGGCTCCCTGGAACTCAAGGATCTCCAGGAGCAAAAGGGGATGGGGGAATTCCTGGTCC
TGCTGGTCCCTTAGGTCCACCTGGTCCTCCAGGTTTACCAGGTCCTCAAGGCCCAAAGGGTAACAAAGGC
TCTACTGGACCCGCTGGCCAGAAAGGTGACAGTGGTCTTCCAGGGCCTCCTGGGTCTCCAGGTCCACCTG
GTGAAGTCATTCAGCCTTTACCAATCTTGTCCTCCAAAAAAACGAGAAGACATACTGAAGGCATGCAAGC
AGATGCAGATGATAATATTCTTGATTACTCGGATGGAATGGAAGAAATATTTGGTTCCCTCAATTCCCTG
AAACAAGACATTGAGCATATGAAATTTCCAATGGGTACTCAGACCAATCCAGCCCGAACTTGTAAAGACC
TGCAACTCAGCCATCCTGACTTCCCAGATGGTGAATATTGGATTGATCCTAACCAAGGTTGCTCAGGAGA
TTCCTTCAAAGTTTACTGTAATTTCACATCTGGTGGTGAGACTTGCATTTATCCAGACAAAAAATCTGAG
GGAGTAAGAATTTCATCATGGCCAAAGGAGAAACCAGGAAGTTGGTTTAGTGAATTTAAGAGGGGAAAAC
TGCTTTCATACTTAGATGTTGAAGGAAATTCCATCAATATGGTGCAAATGACATTCCTGAAACTTCTGAC
TGCCTCTGCTCGGCAAAATTTCACCTACCACTGTCATCAGTCAGCAGCCTGGTATGATGTGTCATCAGGA
AGTTATGACAAAGCACTTCGCTTCCTGGGATCAAATGATGAGGAGATGTCCTATGACAATAATCCTTTTA
TCAAAACACTGTATGATGGTTGTGCGTCCAGAAAAGGCTATGAAAAGACTGTCATTGAAATCAATACACC
AAAAATTGATCAAGTACCTATTGTTGATGTCATGATCAATGACTTTGGTGATCAGAATCAGAAGTTCGGA
TTTGAAGTTGGTCCTGTTTGTTTTCTTGGC


ACGCGTACGCGGCCGCTCGAG - GFP Tag - GTTTAA
>RG218205 representing NM_080630
Red=Cloning site Green=Tags(s)

MEPWSSRWKTKRWLWDFTVTTLALTFLFQAREVRGAAPVDVLKALDFHNSPEGISKTTGFCTNRKNSKGS
DTAYRVSKQAQLSAPTKQLFPGGTFPEDFSILFTVKPKKGIQSFLLSIYNEHGIQQIGVEVGRSPVFLFE
DHTGKPAPEDYPLFRTVNIADGKWHRVAISVEKKTVTMIVDCKKKTTKPLDRSERAIVDTNGITVFGTRI
LDEEVFEGDIQQFLITGDPKAAYDYCEHYSPDCDSSAPKAAQAQEPQIDEYAPEDIIEYDYEYGEAEYKE
AESVTEGPTVTEETIAQTEINGHGAYGEKGQKGEPAVVEPGMLVEGPPGPAGPAGIMGPPGLQGPTGPPG
DPGDRGPPGRPGLPGADGLPGPPGTMLMLPFRYGGDGSKGPTISAQEAQAQAILQQARIALRGPPGPMGL
TGRPGPVGGPGSSGAKGESGDPGPQGPRGVQGPPGPTGKPGKRGRPGADGGRGMPGEPGAKGDRGFDGLP
GLPGDKGHRGERGPQGPPGPPGDDGMRGEDGEIGPRGLPGEAGPRGLLGPRGTPGAPGQPGMAGVDGPPG
PKGNMGPQGEPGPPGQQGNPGPQGLPGPQGPIGPPGEKGPQGKPGLAGLPGADGPPGHPGKEGQSGEKGA
LGPPGPQGPIGYPGPRGVKGADGVRGLKGSKGEKGEDGFPGFKGDMGLKGDRGEVGQIGPRGEDGPEGPK
GRAGPTGDPGPSGQAGEKGKLGVPGLPGYPGRQGPKGSTGFPGFPGANGEKGARGVAGKPGPRGQRGPTG
PRGSRGARGPTGKPGPKGTSGGDGPPGPPGERGPQGPQGPVGFPGPKGPPGPPGKDGLPGHPGQRGETGF
QGKTGPPGPGGVVGPQGPTGETGPIGERGHPGPPGPPGEQGLPGAAGKEGAKGDPGPQGISGKDGPAGLR
GFPGERGLPGAQGAPGLKGGEGPQGPPGPVGSPGERGSAGTAGPIGLPGRPGPQGPPGPAGEKGAPGEKG
PQGPAGRDGVQGPVGLPGPAGPAGSPGEDGDKGEIGEPGQKGSKGDKGENGPPGPPGLQGPVGAPGIAGG
DGEPGPRGQQGMFGQKGDEGARGFPGPPGPIGLQGLPGPPGEKGENGDVGPMGPPGPPGPRGPQGPNGAD
GPQGPPGSVGSVGGVGEKGEPGEAGNPGPPGEAGVGGPKGERGEKGEAGPPGAAGPPGAKGPPGDDGPKG
NPGPVGFPGDPGPPGEPGPAGQDGVGGDKGEDGDPGQPGPPGPSGEAGPPGPPGKRGPPGAAGAEGRQGE
KGAKGEAGAEGPPGKTGPVGPQGPAGKPGPEGLRGIPGPVGEQGLPGAAGQDGPPGPMGPPGLPGLKGDP
GSKGEKGHPGLIGLIGPPGEQGEKGDRGLPGTQGSPGAKGDGGIPGPAGPLGPPGPPGLPGPQGPKGNKG
STGPAGQKGDSGLPGPPGSPGPPGEVIQPLPILSSKKTRRHTEGMQADADDNILDYSDGMEEIFGSLNSL
KQDIEHMKFPMGTQTNPARTCKDLQLSHPDFPDGEYWIDPNQGCSGDSFKVYCNFTSGGETCIYPDKKSE
GVRISSWPKEKPGSWFSEFKRGKLLSYLDVEGNSINMVQMTFLKLLTASARQNFTYHCHQSAAWYDVSSG
SYDKALRFLGSNDEEMSYDNNPFIKTLYDGCASRKGYEKTVIEINTPKIDQVPIVDVMINDFGDQNQKFG
FEVGPVCFLG

TRTRPLE - GFP Tag - V
Restriction Sites SgfI-MluI      Cloning Scheme for this gene      Plasmid Map     
ACCN NM_080630
ORF Size 5070 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 clone was engineered to express the complete ORF with an expression tag. Expression varies depending on the nature of the gene.
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.
Reference Data
RefSeq NM_080630.4
RefSeq Size 6960 bp
RefSeq ORF 5073 bp
Locus ID 1301
UniProt ID P12107
Protein Pathways ECM-receptor interaction, Focal adhesion
Gene Summary This gene encodes one of the two alpha chains of type XI collagen, a minor fibrillar collagen. Type XI collagen is a heterotrimer but the third alpha chain is a post-translationally modified alpha 1 type II chain. Mutations in this gene are associated with type II Stickler syndrome and with Marshall syndrome. A single-nucleotide polymorphism in this gene is also associated with susceptibility to lumbar disc herniation. Multiple transcript variants have been identified for this gene. [provided by RefSeq, Nov 2009]
*Delivery time may vary from web posted schedule. Occasional delays may occur due to unforeseen complexities in the preparation of your product. International customers may expect an additional 1-2 weeks in shipping.

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