ADAMTS10 (NM_030957) Human Untagged Clone
CAT#: SC309981
ADAMTS10 (untagged)-Human ADAM metallopeptidase with thrombospondin type 1 motif, 10 (ADAMTS10)
CNY 7,688.00
Cited in 1 publication. |
Product images
Specifications
Product Data | |
Type | Human Untagged Clone |
Tag | Tag Free |
Synonyms | ADAM-TS10; ADAMTS-10; WMS; WMS1 |
Vector | pCMV6-XL4 |
E. coli Selection | Ampicillin (100 ug/mL) |
Mammalian Cell Selection | None |
Sequence Data |
>OriGene sequence for NM_030957 edited
GGCGCGGAGGCCCCGGGCGCGGCGCAGGCTCCAAAGAAGAAGAAACCAAGGCCCAGAGAG GGAGGCCCAGGTGCAGGGAGCAGGCGAGGGAAGGATCCGTACAGGGGCCCAACACTACTC CACCAACCGAAGCCCCCAAAAGGAGCCCGGTGATGCTGCGAAGGCTGTGAACAGGGGAGG CGGCACTGTGGGGGCTGCCGGCAGCCGGGGCTGGGGAGAGACATGTGGACACGTGGCCTC TATGGCTCCCGCCTGCCAGATCCTCCGCTGGGCCCTCGCCCTGGGGCTGGGCCTCATGTT CGAGGTCACGCACGCCTTCCGGTCTCAAGATGAGTTCCTGTCCAGTCTGGAGAGCTATGA GATCGCCTTCCCCACCCGCGTGGACCACAACGGGGCACTGCTGGCCTTCTCGCCACCTCC TCCCCGGAGGCAGCGCCGCGGCACGGGGGCCACAGCCGAGTCCCGCCTCTTCTACAAAGT GGCCTCGCCCAGCACCCACTTCCTGCTGAACCTGACCCGCAGCTCCCGTCTACTGGCAGG GCACGTCTCCGTGGAGTACTGGACACGGGAGGGCCTGGCCTGGCAGAGGGCGGCCCGGCC CCACTGCCTCTACGCTGGTCACCTGCAGGGCCAGGCCAGCAGCTCCCATGTGGCCATCAG CACCTGTGGAGGCCTGCACGGCCTGATCGTGGCAGACGAGGAAGAGTACCTGATTGAGCC CCTGCACGGTGGGCCCAAGGGTTCTCGGAGCCCGGAGGAAAGTGGACCACATGTGGTGTA CAAGCGTTCCTCTCTGCGTCACCCCCACCTGGACACAGCCTGTGGAGTGAGAGATGAGAA ACCGTGGAAAGGGCGGCCATGGTGGCTGCGGACCTTGAAGCCACCGCCTGCCAGGCCCCT GGGGAATGAAACAGAGCGTGGCCAGCCAGGCCTGAAGCGATCGGTCAGCCGAGAGCGCTA CGTGGAGACCCTGGTGGTGGCTGACAAGATGATGGTGGCCTATCACGGGCGCCGGGATGT GGAGCAGTATGTCCTGGCCATCATGAACATTGTTGCCAAACTTTTCCAGGACTCGAGTCT GGGAAGCACCGTTAACATCCTCGTAACTCGCCTCATCCTGCTCACGGAGGACCAGCCCAC TCTGGAGATCACCCACCATGCCGGGAAGTCCCTGGACAGCTTCTGTAAGTGGCAGAAATC CATCGTGAACCACAGCGGCCATGGCAATGCCATTCCAGAGAACGGTGTGGCTAACCATGA CACAGCAGTGCTCATCACACGCTATGACATCTGCATCTACAAGAACAAACCCTGCGGCAC ACTAGGCCTGGCCCCGGTGGGCGGAATGTGTGAGCGCGAGAGAAGCTGCAGCGTCAATGA GGACATTGGCCTGGCCACAGCGTTCACCATTGCCCACGAGATCGGGCACACATTCGGCAT GAACCATGACGGCGTGGGAAACAGCTGTGGGGCCCGTGGTCAGGACCCAGCCAAGCTCAT GGCTGCCCACATTACCATGAAGACCAACCCATTCGTGTGGTCATCCTGCAGCCGTGACTA CATCACCAGCTTTCTAGACTCGGGCCTGGGGCTCTGCCTGAACAACCGGCCCCCCAGACA GGACTTTGTGTACCCGACAGTGGCACCGGGCCAAGCCTACGATGCAGATGAGCAATGCCG CTTTCAGCATGGAGTCAAATCGCGTCAGTGTAAATACGGGGAGGTCTGCAGCGAGCTGTG GTGTCTGAGCAAGAGCAACCGGTGCATCACCAACAGCATCCCGGCCGCCGAGGGCACGCT GTGCCAGACGCACACCATCGACAAGGGGTGGTGCTACAAACGGGTCTGTGTCCCCTTTGG GTCGCGCCCAGAGGGTGTGGACGGAGCCTGGGGGCCGTGGACTCCATGGGGCGACTGCAG CCGGACCTGTGGCGGCGGCGTGTCCTCTTCTAGCCGTCACTGCGACAGCCCCAGGCCAAC CATCGGGGGCAAGTACTGTCTGGGTGAGAGAAGGCGGCACCGCTCCTGCAACACGGATGA CTGTCCCCCTGGCTCCCAGGACTTCAGAGAAGTGCAGTGTTCTGAATTTGACAGCATCCC TTTCCGTGGGAAATTCTACAAGTGGAAAACGTACCGGGGAGGGGGCGTGAAGGCCTGCTC GCTCACGTGCCTAGCGGAAGGCTTCAACTTCTACACGGAGAGGGCGGCAGCCGTGGTGGA CGGGACACCCTGCCGTCCAGACACGGTGGACATTTGCGTCAGTGGCGAATGCAAGCACGT GGGCTGCGACCGAGTCCTGGGCTCCGACCTGCGGGAGGACAAGTGCCGAGTGTGTGGCGG TGACGGCAGTGCCTGCGAGACCATCGAGGGCGTCTTCAGCCCAGCCTCACCTGGGGCCGG GTACGAGGATGTCGTCTGGATTCCCAAAGGCTCCGTCCACATCTTCATCCAGGATCTGAA CCTCTCTCTCAGTCACTTGGCCCTGAAGGGAGACCAGGAGTCCCTGCTGCTGGAGGGGCT GCCYGGGACCCCCCAGCCCCACCGTCTGCCTCTAGCTGGGACCACCTTTCAACTGCGACA GGGGCCAGACCAGGTCCAGAGCCTCGAAGCCCTGGGACCGATTAATGCATCTCTCATCGT CATGGTGCTGGCCCGGACCGAGCTGCCTGCCCTCCGCTACCGCTTCAATGCCCCCATCGC CCGTGACTCGCTGCCCCCCTACTCCTGGCACTATGCGCCCTGGACCAAGTGCTCGGCCCA GTGTGCAGGCGGTAGCCAGGTGCAGGCGGTGGAGTGCCGCAACCAGCTGGACAGCTCCGC GGTCGCCCCCCACTACTGCAGTGCCCACAGCAAGCTGCCCAAAAGGCAGCGCGCCTGCAA CACGGAGCCTTGCCCTCCAGACTGGGTTGTAGGGAACTGGTCGCTCTGCAGCCGCAGCTG CGATGCAGGCGTGCGCAGCCGCTCGGTCGTGTGCCAGCGCCGCGTCTCTGCCGCGGAGGA GAAGGCGCTGGACGACAGCGCATGCCCGCAGCCGCGCCCACCTGTACTGGAGGCCTGCCA CGGCCCCACTTGCCCTCCGGAGTGGGCGGCCCTCGACTGGTCTGAGTGCACCCCCAGCTG CGGGCCGGGCCTCCGCCACCGCGTGGTCCTTTGCAAGAGCGCAGACCACTGCGCCACGCT GCCCCCGGCGCACTGCTCACCCGCCGCCAAGCCACCGGCCACCATGCGCTGCAACTTGCG CCGCTGCCCCCCGGCCCGCTGGGTGGCTGGCGAGTGGGGTGAGTGCTCTGCACAGTGCGG CGTCGGGCAGCGGCAGCGCTCGGTGCGCTGCACCAGCCACACGGGCCAGGCGTCGCACGA GTGCACGGAGGCCCTGCGGCCGCCCACCACGCAGCAGTGTGAGGCCAAGTGCGACAGCCC AACCCCCGGGGACGGCCCTGAAGAGTGCAAGGATGTGAACAAGGTCGCCTACTGCCCCCT GGTGCTCAAATTTCAGTTCTGCAGCCGAGCCTACTTCCGCCAGATGTGCTGCAAAACCTG CCAGGGCCACTAGGGGGCGCGCGGCACCCGGAGCCACAGCTGGCGGGGTCTCCGCCGCCA GCCCTGCAGCGGGCCGGCCAGAGGGGGCCCCGGGGGGGCGGGAACTGGGAGGGAAGGGTG AGACGGAGCCGGAAGTTATTTATTGGGAACCCCTGCAGGGCCCTGGCTGGGGGGATGGAG AGGGGCTGGCTATCCCCCCAGAGCCCCTCTTCAGCATCCGCCCCTTCCAGTTCACATAGT GAGACCCCCCCTCCAGGGTGGGTCTGGGGAGGGGACAGCTGTTCACCCCAGCACCCTTTG AACCCACCCTTAGGGAGTCCCCAACACTCCCCCCCTCCTTTGATCGGAATATGTACTGTG AAGAGTAGGGGTGGGGAGGTGGTCTGCCGGTGCCCTGCCCCCCAGCACTGCCCTACCCCT CCACTCCGAGCTGGGGGGGAATCTGTGTCTGCTATGGGAGGGGGGGGGTAGCACCACCTC CCTGACACCCTCCCCTGACCTGACTAGGGGGAGGATCCACCCCAACCTCTGCCCTGCCCG CCCCAGGGGCACCCCGACATCCAGGCCACCCCCTCATGGTGCTACAGACCCTGCCCTGGG GCCCACACACTCCTGCCAGGAAGCCCTACATCAATAAAGTTCTGTCTTGTGTAGATTTCT ACGAAAAAAAAAAAAAAAAAAA >OriGene 5' read for NM_030957 unedited
NGTTCAGTTAAATTTGTATACGACTCACTATAGGCGGCCGCGNAATTCGCACGAGGGCGC GGAGGCCCCGGGCGCGGCGCAGGAGCCCGGTGATGCTGCGAAGCTGTGAACAGGGGAGGC GGCACTGTGGGGGCTGCCGGCAGCCGGGGCTGGGGAGAGACATGTGGACACGTGGCCTCT ATGGCTCCCGCCTGCCAGATCCTCCGCTGGGCCCTCGCCCTGGGGCTGGGCCTCATGTTC GAGGTCACGCACGCCTTCCGGTCTCAAGATGAGTTCCTGTCCAGTCTGGAGAGCTATGAG ATCGCCTTCCCCACCCGCGTGGACCACAACGGGGCACTGCTGGCCTTCTCGCCACCTCCT CCCCGGAGGCAGCGCCGCGGCACGGGGGCCACAGCCGAGTCCCGCCTCTTCTACAAAGTG GCCTCGCCCAGCACCCACTTCCTGCTGAACCTGACCCGCAGCTCCCGTCTACTGGCAGGG CACGTCTCCGTGGAGTACTGGACACGGGAGGGCCTGGCCTGGCAGAGGGCGGCCCGGCCC CACTGCCTCTACGCTGGTCACCTGCAGGGCCAGGCCAGCAGCTCCCATGTGGCCATCAGC ACCTGTGGAGGCCTGCACGGCCTGATCGTGGCAGACGAGGAAGAGTACCTGATTGAGCCC CTGCACGGTGGGCCCAAGGGTTCTCGGAGCCCGGAAGAAAGTGGACCACATGTGGTGTAC AAGCGTTCCTCTCTGCGTCACCCCCACCTGGACACAGCCTGTGGAGTGAGAGATGAGAAA CCGTNGGAAGGGGCGCCATGGTGGCTGCCGAACCTTGAAGCCACCGCCTGCCAGGCCCCC TGGGGGAATGAAAC >OriGene 3' read for NM_030957 unedited
CCCGTGTGGCTGGTGCAGCGCACCNGACGCTGCCGCTGCCCGNANCCGCACTGTGCAGNA CACTCACCCCACTCGCCAGCCACCCAGCGGGCCGGGGGGCAGCGGCGCAAGTTGCAGCGC ATGGTGGCCGGTGGCTTGGCGGCGGGTGAGCAGTGCGCCGGGGGCAGCGTGGCGCAGTGG TCTGCGCTCTTGCAAAGGACCACGCGGTGGCGGAGGCCCGGCCCGCAGCTGGGGGTGCAC TCAGACCAGTCGAGGGCCGCCCACTCCGGAGGGCAAGTGGGGCCGTGGCAGGCCTCCAGT ACAGGTGGGCGCGGCTGCGGGCATGCGCTGTCGTCCAGCGCCTTCTCCTCCGCGGCAGAG ACGCGGCGCTGGCACACGACCGAGCGGCTGCGCACGCCTGCATCGCAGCTGCGGCTGCAG AGCGACCAGTTCCCTACAACCCAGTCTGGAGGGCAAGGCTCCGTGTTGCAGGCGCGCTGC CTTTTGGGCAGCTTGCTGTGGGCACTGCAGTAGTGGGGGGCGACCGCGGAGCTGTCCAGC TGGTTGCGGCACTCCACCGCCTGCACCTGGCTACCGCCTGCACACTGGGCCGAGCACTTG GNTCAGGGCGCATAGTGCCAGGAGTANGGGGGCAGCGAGTCACGGGCGATGGGGGCATTG AAGCCGTAGCGGAGGGCAAGCAGCTCGGTCCGGGCCAGCACCATGACGATGAGAGATGCA TTAATCGGTCCCAGGGCTTCCAGGCTCTGGACCTGGTCTGGCCCCTGTCGCATTTGAAAG GTGGTCCCACTANAGGCAAACGGTGGGGCTGGGGGGTCCCGGGCAGCCCTTCCACAGCAA GGACTCCTGGTCTCCCTTCCAGGGCCAGTGACTGAAAAAAAGGTTN |
Restriction Sites | Please inquire |
ACCN | NM_030957 |
Insert Size | 4500 bp |
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). |
OTI Annotation | The open reading frame of this TrueClone was fully sequenced and found to be a perfect match to the protein associated to this reference. |
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_030957.2, NP_112219.2 |
RefSeq Size | 4237 bp |
RefSeq ORF | 3312 bp |
Locus ID | 81794 |
UniProt ID | Q9H324 |
Domains | tsp_1, Reprolysin, Pep_M12B_propep |
Protein Families | Druggable Genome, Secreted Protein |
Gene Summary | This gene belongs to the ADAMTS (a disintegrin and metalloproteinase domain with thrombospondin type-1 motifs) family of zinc-dependent proteases. ADAMTS proteases are complex secreted enzymes containing a prometalloprotease domain of the reprolysin type attached to an ancillary domain with a highly conserved structure that includes at least one thrombospondin type 1 repeat. They have been demonstrated to have important roles in connective tissue organization, coagulation, inflammation, arthritis, angiogenesis and cell migration. The product of this gene plays a major role in growth and in skin, lens, and heart development. It is also a candidate gene for autosomal recessive Weill-Marchesani syndrome. [provided by RefSeq, Jul 2008] Transcript Variant: This variant (1) represents the longest transcript and encodes the longest isoform (1). |
Citations (1)
The use of this cDNA Clones has been cited in the following citations: |
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Microenvironmental Regulation by Fibrillin-1
,null,
PLoS Genetics
,PubMed ID 22242013
[ADAMTS10]
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Other Versions
SKU | Description | Size | Price |
---|---|---|---|
RC215901 | ADAMTS10 (Myc-DDK-tagged)-Human ADAM metallopeptidase with thrombospondin type 1 motif, 10 (ADAMTS10) |
CNY 7,680.00 |
|
RC215901L1 | Lenti ORF clone of Human ADAM metallopeptidase with thrombospondin type 1 motif, 10 (ADAMTS10), Myc-DDK-tagged |
CNY 10,080.00 |
|
RC215901L2 | Lenti ORF clone of Human ADAM metallopeptidase with thrombospondin type 1 motif, 10 (ADAMTS10), mGFP tagged |
CNY 12,920.00 |
|
RC215901L3 | Lenti ORF clone of Human ADAM metallopeptidase with thrombospondin type 1 motif, 10 (ADAMTS10), Myc-DDK-tagged |
CNY 12,920.00 |
|
RC215901L4 | Lenti ORF clone of Human ADAM metallopeptidase with thrombospondin type 1 motif, 10 (ADAMTS10), mGFP tagged |
CNY 12,920.00 |
|
RG215901 | ADAMTS10 (tGFP-tagged) - Human ADAM metallopeptidase with thrombospondin type 1 motif, 10 (ADAMTS10) |
CNY 9,280.00 |
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