Col11a2 (NM_009926) Mouse Untagged Clone
CAT#: MC224786
Col11a2 (untagged) - Mouse collagen, type XI, alpha 2 (Col11a2), (10ug)
"NM_009926" in other vectors (4)
Product Images
Specifications
Product Data | |
Type | Mouse Untagged Clone |
Tag | Tag Free |
Symbol | Col11a2 |
Vector | pCMV6-Entry |
E. coli Selection | Kanamycin (25 ug/mL) |
Mammalian Cell Selection | Neomycin |
Sequence Data |
>MC224786 representing NM_009926
Red=Cloning site Blue=ORF Orange=Stop codon TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC GCCGCGATCGCC ATGGAGCGGTGCAGCCGCTGCCACCGCCTCCTTCTGTTCCTACCTCTGGTGCTGGGTCTGAGCGCTGCCC CGGGATGGGCAGGTGCTCCCTCTGTGGATGTGCTTCGTGCCCTGAGGTTCCCCTCCCTTCCCGATGGTGT TCGGAGATCAAAAGGGGTCTGTCCGGGTGATGTGGCTTACCGTGTGGCACGGCCTGCCCAGCTCAGCGCA CCCACGCGCCAGCTCTTCCCAGGAGGCTTTCCCAAAGACTTCTCTCTGCTGACGGTTGTCCGGACCCGCC CTGGCCTCCAGGCTCCCCTCTTGACTCTATACAGCGCCCAGGGAGTCCAGCAGCTGGGCTTGGAGCTCGG CCGCCCTGTCCGCTTTCTCTATGAGGACCAGAGGGGACGGCCACAAGCCTCCGCTCAGCCCATCTTCCGA GGCCTCAGCCTAGCAGATGGCAAATGGCACCACGTGGCTGTGGCTGTGAAGGGTCAGTCTGTCACTCTCA TTGTGGACTGTAAGAAGCGAGTTACCCGGCCCCTTCCCAGAAGTGTGCATCCGGTGTTGGACACCCACGG GGTGGTGATCTTTGGTGCCCACATCCTCGACGATGAAGTCTTTGAAGGCGATGTTCAGGAGCTCCTCGTT GTCCCAGGCGTCCAAGCTGCCTATCAGTCTTGTGGGCAGAAGGATCTGGAATGTGAGAGAGAACAGAGGG ACGGCCCTCAGACTCAGAAGCCTCACAGAGCCCAGAGATCTCCAAAGAAGGAACCAGCAAGACTTCATAA GCCACAGAGCCAGGAGCCCCAGAAGCAGTACCCCACCCCAGGTGAAGAGGAAGGAGTCCTGGAGTCCAGT CCCTTGCCATTCCTTGAAGAGGTTGCCCACGGACCCCGGGGGCTAAAGGGAGAGAAGGGAGAGCCTGCAG TGCTGGAGCCTGGTATGTTTGTAGAGGGACCCCCAGGCCCAGAAGGCCCAGCGGGATTAGCTGGACCCCC TGGCATCCAGGGGAACCCAGGCCCGGTTGGAGACCCCGGTGAGAGGGGCCCCCCTGGCCGAGCAGGGCTC CCCGGATCAGATGGACCCCCTGGTCCTCCCGGCACATCTCTGATGCTTCCATTCCGGTTTGGCAGTAGTG GGGGTGACAAGGGCCCCGTGGTGGCAGCCCAGGAGGCCCAGGCCCAGGCGATTCTGCAGCAGGCACGGCT GGCACTCCGTGGGCCCCCTGGCCCCATGGGTTACACGGGCCGCCCTGGACCATTGGGTCAGCCTGGGAGC CCTGGCTTGAAGGGAGAATCTGGAGATCTGGGCCCACAGGGCCCCAGAGGACCTCAGGGCCTCACAGGTC CTCCTGGCAAGGCTGGACGAAGGGGCCGAGCAGGTGCTGATGGAGCCCGTGGGATGCCGGGAGAACCTGG CATGAAGGGTGACCGAGGTTTCGACGGACTTCCAGGGCTACCTGGCGAGAAGGGACAAAGGGGTGATACA GGTGCTCAGGGCCTTCCTGGGCCTCCTGGTGAGGACGGAGAGAGGGGTGATGATGGAGAGATTGGGCCAC GGGGGCTGCCTGGAGAGTCGGGACCTAGAGGACTCCTTGGCCCTAAAGGCCCGCCTGGTATTCCTGGGCC GCCGGGAGTCCGAGGCATGGACGGTCCCCACGGCCCCAAAGGGAGCTTGGGACCTCAAGGAGAGCCAGGA CCTCCTGGACAACAGGGTACTCCTGGGGCCCAGGGCCTCCCCGGACCTCAGGGAGCCATCGGTCCTCATG GAGAGAAGGGTGCTCGTGGGAAACCAGGCCTCCCTGGCATGCCTGGATCAGATGGACTCCCGGGTCACCC AGGGAAGGAAGGTCCCCCTGGAACCAAAGGGAACCAGGGCCCGTCCGGACCACAGGGTCCTCTAGGATAC CCAGGCCCTCGAGGCGTCAAGGGTGTGGATGGAATTCGGGGCCTGAAGGGCCACAAGGGTGAAAAGGGCG AGGACGGCTTTCCTGGGTTCAAAGGTGACATAGGAGTGAAAGGAGACAGGGGCGAGGTTGGAGTCCCTGG TTCCAGGGGCGAAGACGGCCCTGAAGGGCCAAAAGGGCGCACTGGACCTACAGGAGACCCTGGACCCACT GGGCTCATGGGCGAGAAGGGCAAGCTAGGTGTTCCTGGTCTGCCTGGCTATCCTGGACGCCAGGGCCCCA AGGGATCTCTGGGTTTCCCTGGTTTTCCTGGAGCCAGTGGAGAGAAGGGAGCTCGGGGCCTGTCTGGGAA ATCAGGACCTCGGGGAGAACGGGGCCCCACGGGTCCAAGGGGTCAGCGGGGACCTCGAGGTGCCACTGGG AAATCTGGAGCTAAGGGAACATCAGGTGGTGACGGTCCCCACGGGCCACCCGGAGAGAGGGGTCTTCCTG GACCTCAAGGCCCCAATGGATTTCCTGGCCCCAAAGGCCCTCCGGGCCCTGCAGGGAAGGATGGGCTGCC GGGACACCCCGGCCAGAGAGGAGAAGTGGGATTCCAAGGAAAGACCGGCCCACCAGGCCCGCCCGGAGTG GTGGGACCTCAGGGAACAGCTGGAGAAAGTGGTCCCATGGGAGAGAGAGGTCACTCTGGCCCCCCAGGAC CTCCTGGAGAGCAAGGATTGCCTGGAACATCTGGGAAAGAAGGGACCAAGGGTGACCCTGGTCCTCCTGG GGCCCCAGGGAAGGATGGTCCTGCTGGTCTGAGAGGCTTCCCAGGAGAGCGAGGCCTTCCAGGCACTGCT GGTGGACCCGGCTTGAAAGGAAATGAAGGTCCAGCTGGCCCTCCTGGCCCTGCAGGCTCTCCTGGCGAGC GAGGTGCAGCAGGATCAGGGGGCCCCATTGGTCCCCCGGGACGTCCAGGCCCACAAGGTCCCCCTGGAGC AGCAGGAGAGAAAGGCGTACCGGGCGAGAAAGGCCCTATTGGTCCCACTGGTCGTGATGGGGTGCAGGGC CCCGTGGGGCTTCCTGGTCCTGCAGGACCCCCAGGCGTGGCTGGAGAGGATGGAGACAAGGGTGAAGTGG GAGACCCTGGACAGAAGGGAACCAAAGGAAACAAGGGTGAACATGGCCCTCCTGGACCTCCTGGTCCCAT CGGGCCTGTGGGGCAACCTGGAGCTGCGGGAGCTGATGGTGAGCCTGGAGCTCGGGGACCCCAGGGACAC TTTGGAGCCAAAGGTGATGAAGGAACAAGAGGGTTCAATGGACCCCCGGGACCCATCGGCCTACAGGGCC TGCCAGGACCCTCTGGGGAGAAAGGAGAAACAGGAGACGGGGGGCCTATGGGACCCCCTGGCCCTCCAGG ACCTCGAGGCCCCGCTGGACCCAATGGTGCTGATGGCCCACAAGGTTCCCCTGGAGGTGTTGGAAACTTG GGTCCCCCTGGAGAAAAGGGTGAACCGGGGGAGTCAGGGTCTCCAGGCGTCCAGGGCGAGCCGGGCGTCA AGGGACCACGTGGAGAGCGTGGTGAGAAAGGAGAGTCTGGGCAGGCGGGAGAGGCTGGACCACCGGGGCC CAAAGGCCCTACAGGCGACAATGGCCCCAAGGGGAACCCTGGTCCTGTTGGCTTTCCTGGGGACCCTGGC CCCCCTGGAGAAGCTGGCCCACGGGGCCAGGATGGTGCTAAGGGAGACCGAGGCGAGGATGGCGAGCCAG GACAACCTGGATCCCCTGGTCCCACCGGGGAGAATGGGCCCCCTGGACCCCTTGGAAAGCGGGGACCTGC TGGCACTCCTGGTCCAGAAGGACGGCAAGGAGAGAAGGGAGCTAAGGGGGACCCTGGTGCTGTGGGGGCC CCGGGAAAGACAGGCCCTGTGGGTCCTGCAGGCCTAGCAGGAAAGCCCGGCCCCGATGGTCTTCGGGGGC TCCCGGGTTCAGTGGGTCAGCAAGGCCGCCCTGGAGCCACAGGCCAGGCTGGGCCCCCAGGTCCTGTGGG ACCCCCAGGGCTTCCTGGCCTCCGGGGTGATGCTGGAGCCAAGGGGGAAAAGGGTCACCCAGGTCTCATC GGACTGATTGGGCCGACTGGAGAGCAAGGCGAGAAGGGCGACCGTGGCCTCCCTGGACCTCAGGGCTCAC CCGGACAGAAGGGAGAGACGGGTATCCCAGGAGCATCTGGCCCCATCGGTCCTGGAGGGCCTCCTGGCCT GCCTGGACCCTCTGGCCCCAAAGGAGCCAAAGGAGCCACAGGCCCAGCTGGACCCAAGGGAGAGAAGGGT GTCCAGGGCCCTCCAGGACACCCGGGCCCCCCGGGAGAGGTGATCCAGCCACTGCCCATCCAGATGCCCA AGAAGACCCGCCGTTCCGTGGACGGAAGCAAACTGATACAGGATGAGGAGGCTGTGCCCACTGGCGGTGC TCCGGGCAGTCCTGCGGGGCTGGAGGAGATCTTTGGCTCACTGGACTCTCTGCGGGAGGAGATCGAGCAG ATGAGGAGGCCGGCGGGGACCCAGGACAGCCCTGCTCGCACCTGCCAGGACTTGAAGCTGTGCCACCCGG AGCTTCCTGATGGAGAGTACTGGGTTGACCCTAACCAGGGCTGTGCTCGGGATGCCTTCCGGGTGTTCTG CAACTTCACAGCAGGAGGGGAGACGTGTGTCACACCCAGGGATGACGTCACACAGTTCTCCTACGTGGAC TCCGAGGGCTCCCCAGTGGGCGTGGTCCAGCTCACCTTCCTGCGGCTGCTCAGCGTCTCTGCCCACCAGG ATGTCTCCTACCCTTGCTCTGGAGTATCCCAGGATGGTCCCCTGAAACTCCGAGGGGCCAACGAGGATGA GCTGAGCCCTGAGACCAGCCCTTATGTCAAGGAGTTCAGAGATGGCTGTCAGACCCAGCAAGGCCGGACG GTGTTGGAGGTGCGCACGCCTGTACTGGAGCAGCTGCCCGTGCTGGATGCCTCCTTCGCAGACCTGGGGG CCCCCACAAGACGGGGAGGGGTGCTTCTGGGGCCTGTCTGCTTCATGGGCTAG ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGATT ACAAGGATGACGACGATAAGGTTTAA |
Restriction Sites | SgfI-MluI |
ACCN | NM_009926 |
ORF Size | 4953 bp |
Insert Size | 4953 |
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_009926.2, NP_034056.1 |
RefSeq Size | 6346 |
RefSeq ORF | 4953 |
Locus ID | 12815 |
Gene Summary | This gene encodes the alpha-2 subunit of type XI collagen, one of the low abundance fibrillar collagens found in cartilage. The encoded protein, in association with other collagen subunits, forms a heterotrimeric type XI procollagen that may undergo proteolytic processing similar to the alpha-1 subunit. Mice lacking the encoded protein exhibit a mild phenotype similar to nonocular Stickler syndrome, otospondylomegaepiphyseal dysplasia (OSMED) as well as a nonsyndromic form of deafness called DFNA13. Alternative splicing results in multiple transcript variants encoding different isoforms. [provided by RefSeq, Dec 2015] Transcript Variant: This variant (2) contains one alternate in-frame exon and lacks two exons in the 5' coding region, compared to variant 1. It encodes isoform 2, which is shorter than isoform 1. Sequence Note: The RefSeq transcript and protein were derived from genomic sequence to make the sequence consistent with the reference genome assembly. The genomic coordinates used for the transcript record were based on alignments. |
Documents
Product Manuals |
FAQs |
SDS |
Resources
Other Versions
SKU | Description | Size | Price |
---|---|---|---|
MR220599 | Col11a2 (Myc-DDK-tagged) - Mouse collagen, type XI, alpha 2 (Col11a2) |
USD 1,530.00 |
|
MG220599 | Col11a2 (GFP-tagged) - Mouse collagen type XI alpha 2 (Col11a2), (10ug) |
USD 1,680.00 |
|
MR220599L3 | Lenti ORF clone of Col11a2 (Myc-DDK-tagged) - Mouse collagen, type XI, alpha 2 (Col11a2) |
USD 1,730.00 |
|
MR220599L4 | Lenti ORF clone of Col11a2 (mGFP-tagged) - Mouse collagen, type XI, alpha 2 (Col11a2) |
USD 1,730.00 |
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