Collagen V (COL5A3) (NM_015719) Human Untagged Clone

CAT#: SC304350

COL5A3 (untagged)-Human collagen, type V, alpha 3 (COL5A3)



  "NM_015719" in other vectors (2)

CNY 33,540.00


货期*
4周

规格
    • 10 ug

Product images

经常一起买 (4)
TurboFectin Transfection Reagent (1 mL in 1 vial)
    • 1 ml in 1 vial

CNY 4,090.00


DH5α Chemically Competent Cells (≥10^8 cfu/μg of pUC19 DNA)
    • 5 x 200 ul

CNY 1,280.00


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

CNY 480.00


Rabbit polyclonal Collagen V a3 antibody
    • 100 ul

CNY 1,999.00
CNY 3,280.00

Specifications

Product Data
Type Human Untagged Clone
Tag Tag Free
Vector pCMV6-Entry
E. coli Selection Kanamycin (25 ug/mL)
Mammalian Cell Selection Neomycin
Sequence Data
>SC304350 representing NM_015719.
Blue=Insert sequence Red=Cloning site Green=Tag(s)

GCTCGTTTAGTGAACCGTCAGAATTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTG
GATCCGGTACCGAGGAGATCTGCCGCCGCGATCGCC
ATGGGGAACCGCCGGGACCTGGGCCAGCCGCGGGCCGGTCTCTGCCTGCTCCTGGCCGCGCTGCAGCTT
CTGCCGGGGACGCAGGCCGATCCTGTGGATGTCCTGAAGGCCCTGGGTGTGCAGGGAGGCCAGGCTGGG
GTCCCCGAGGGGCCTGGCTTCTGTCCCCAGAGGACTCCAGAGGGTGACCGGGCATTCAGAATTGGCCAG
GCCAGCACGCTCGGCATCCCCACGTGGGAACTCTTTCCAGAAGGCCACTTTCCTGAGAACTTCTCCTTG
CTGATCACCTTGCGGGGACAGCCAGCCAATCAGTCTGTCCTGCTGTCCATTTATGATGAAAGGGGTGCC
CGGCAGTTGGGCCTGGCACTGGGGCCAGCGCTGGGTCTCCTAGGTGACCCCTTCCGCCCCCTCCCCCAG
CAGGTCAACCTCACAGATGGCAGGTGGCACCGTGTGGCCGTCAGCATAGATGGTGAGATGGTGACCCTG
GTAGCTGACTGTGAAGCTCAGCCCCCTGTTTTGGGCCATGGCCCCCGCTTCATCAGCATAGCTGGACTC
ACTGTGCTGGGGACCCAGGACCTTGGGGAAAAGACTTTCGAGGGAGACATTCAGGAGCTGCTGATAAGC
CCAGATCCTCAGGCTGCCTTCCAGGCTTGTGAGCGGTACCTCCCCGACTGTGACAACCTGGCACCGGCA
GCCACAGTGGCTCCCCAGGGTGAACCAGAAACCCCTCGTCCTCGGCGGAAGGGGAAGGGAAAAGGGAGG
AAGAAAGGGCGAGGTCGCAAGGGGAAGGGCAGGAAAAAGAACAAGGAAATTTGGACCTCAAGTCCACCT
CCTGACTCCGCAGAGAACCAGACCTCCACTGACATCCCCAAGACAGAGACTCCAGCTCCAAATCTGCCT
CCGACCCCCACGCCTTTGGTCGTCACCTCCACTGTGACTACTGGACTCAATGCCACGATCCTAGAGAGG
AGCTTGGACCCTGACAGTGGAACCGAGCTGGGGACCCTGGAGACCAAGGCAGCCAGGGAGGATGAAGAA
GGAGATGATTCCACCATGGGCCCTGACTTCCGGGCAGCAGAATATCCATCTCGGACTCAGTTCCAGATC
TTTCCTGGTGCTGGAGAGAAAGGAGCAAAAGGAGAGCCCGCAGTGATTGAAAAGGGGCAGCAGTTTGAG
GGACCTCCAGGAGCCCCAGGACCCCAAGGGGTGGTTGGCCCCTCAGGCCCTCCCGGCCCCCCAGGATTC
CCTGGCGACCCTGGTCCACCGGGCCCTGCTGGCCTCCCAGGAATCCCCGGCATTGATGGGATCCGAGGC
CCACCGGGCACTGTGATCATGATGCCGTTCCAGTTTGCAGGCGGCTCCTTTAAAGGCCCCCCAGTCTCA
TTCCAGCAGGCCCAGGCTCAGGCAGTTCTGCAGCAGACTCAGCTCTCTATGAAAGGCCCCCCTGGTCCA
GTGGGGCTCACTGGGCGCCCAGGCCCTGTGGGTCTCCCCGGGCATCCAGGTCTGAAAGGAGAGGAGGGA
GCAGAAGGGCCACAGGGTCCCCGAGGCCTGCAGGGACCTCATGGACCCCCTGGCCGAGTGGGCAAGATG
GGCCGCCCTGGAGCAGATGGAGCTCGGGGCCTCCCAGGGGACACTGGACCTAAGGGTGATCGTGGCTTC
GATGGCCTCCCTGGGCTGCCTGGTGAGAAGGGCCAAAGGGGTGACTTTGGCCATGTGGGGCAACCCGGT
CCCCCAGGAGAGGATGGTGAGAGGGGAGCAGAGGGACCTCCAGGGCCCACTGGCCAGGCTGGGGAGCCG
GGTCCACGAGGACTGCTTGGCCCCAGAGGCTCTCCTGGCCCCACGGGTCGCCCGGGTGTGACTGGAATT
GATGGTGCTCCTGGTGCCAAAGGCAATGTGGGTCCTCCAGGAGAACCAGGCCCTCCGGGACAGCAGGGA
AACCATGGGTCCCAGGGACTCCCCGGTCCCCAGGGACTCATTGGCACTCCTGGGGAGAAGGGTCCCCCT
GGAAACCCAGGAATTCCAGGCCTCCCAGGATCCGATGGCCCTCTGGGTCACCCAGGACATGAGGGCCCC
ACGGGAGAGAAAGGGGCTCAGGGTCCACCAGGGTCGGCAGGCCCTCCGGGCTATCCTGGACCTCGGGGA
GTGAAGGGCACTTCAGGCAACCGGGGCCTCCAGGGGGAGAAAGGCGAGAAGGGAGAGGACGGCTTCCCA
GGCTTCAAGGGCGATGTGGGGCTCAAAGGTGATCAGGGGAAACCCGGAGCTCCAGGTCCCCGGGGAGAG
GATGGTCCTGAGGGGCCGAAGGGGCAGGCGGGGCAGGCTGGCGAGGAGGGGCCCCCAGGCTCAGCTGGG
GAGAAGGGCAAGCTTGGGGTGCCAGGCCTCCCAGGTTATCCAGGACGCCCTGGACCTAAGGGATCTATT
GGATTTCCCGGTCCCCTGGGACCCATAGGAGAGAAAGGGAAGTCGGGAAAGACAGGGCAGCCAGGCCTG
GAAGGAGAGCGGGGACCACCAGGTTCCCGTGGAGAGAGGGGGCAACCGGGTGCCACAGGGCAACCAGGC
CCCAAGGGCGATGTGGGCCAGGATGGAGCCCCTGGGATCCCTGGAGAAAAGGGCCTCCCTGGTCTGCAA
GGCCCTCCAGGATTCCCTGGGCCAAAGGGCCCCCCTGGTCACCAAGGTAAAGATGGGCGACCAGGGCAC
CCTGGACAGAGAGGAGAACTGGGCTTCCAAGGTCAGACAGGCCCGCCTGGACCAGCTGGTGTCTTAGGC
CCTCAGGGAAAGACAGGAGAAGTGGGACCTCTAGGTGAAAGGGGGCCTCCAGGCCCCCCTGGACCTCCT
GGTGAACAAGGTCTTCCTGGCCTGGAAGGCAGAGAGGGGGCCAAGGGGGAACTGGGACCACCAGGACCC
CTTGGGAAAGAAGGGCCAGCTGGACTCAGGGGCTTTCCCGGCCCCAAAGGGGGCCCTGGGGACCCGGGA
CCTACTGGCTTAAAGGGTGATAAGGGCCCCCCAGGGCCCGTGGGGGCCAATGGCTCCCCTGGTGAGCGC
GGTCCTTTGGGCCCAGCAGGAGGCATTGGACTTCCTGGCCAAAGTGGCAGCGAAGGCCCCGTTGGCCCT
GCAGGCAAGAAGGGGTCCCGGGGAGAACGTGGCCCCCCTGGCCCCACTGGCAAAGATGGGATCCCAGGG
CCCCTGGGGCCTCTGGGACCCCCTGGAGCTGCTGGGCCTTCTGGCGAGGAAGGGGACAAGGGGGATGTG
GGTGCCCCCGGACACAAGGGGAGTAAAGGCGATAAAGGAGACGCGGGCCCACCTGGACAACCAGGGATA
CGGGGTCCTGCAGGACACCCAGGTCCCCCGGGAGCAGACGGGGCTCAGGGGCGCCGGGGACCCCCAGGC
CTCTTTGGGCAGAAAGGAGATGACGGAGTCAGAGGCTTTGTGGGGGTGATTGGCCCTCCTGGACTGCAG
GGGCTGCCAGGCCCTCCGGGAGAGAAAGGGGAGGTCGGAGACGTCGGGTCCATGGGTCCCCATGGAGCT
CCAGGTCCTCGGGGTCCCCAAGGCCCCACTGGATCAGAGGGCACTCCAGGGCTGCCTGGAGGAGTTGGT
CAGCCAGGCGCCGTGGGTGAGAAGGGTGAGCGAGGGGACGCTGGAGACCCAGGGCCTCCAGGAGCCCCA
GGCATCCCGGGGCCCAAGGGAGACATTGGTGAAAAGGGGGACTCAGGCCCATCTGGAGCTGCTGGACCC
CCAGGCAAGAAAGGTCCCCCTGGAGAGGATGGAGCCAAAGGGAGCGTGGGCCCCACGGGGCTGCCCGGA
GATCTAGGGCCCCCAGGAGACCCTGGAGTTTCAGGCATAGATGGTTCCCCAGGGGAGAAGGGAGACCCT
GGTGATGTTGGGGGACCGGGTCCGCCTGGAGCTTCTGGGGAGCCCGGCGCCCCCGGGCCCCCCGGCAAG
AGGGGTCCTTCAGGCCACATGGGTCGAGAAGGCAGAGAAGGGGAGAAAGGTGCCAAGGGGGAGCCAGGT
CCTGATGGGCCCCCAGGGAGGACGGGTCCAATGGGGGCTAGAGGGCCCCCTGGACGTGTGGGGCCTGAG
GGTCTTCGAGGGATCCCTGGCCCTGTGGGTGAACCAGGCCTCCTGGGAGCCCCTGGACAGATGGGCCCT
CCTGGCCCCCTGGGGCCCTCTGGCCTCCCAGGGCTGAAGGGAGACACTGGCCCCAAGGGGGAAAAGGGC
CACATTGGATTGATCGGTCTCATTGGCCCCCCGGGAGAAGCTGGTGAGAAAGGAGATCAGGGGTTGCCA
GGCGTGCAGGGACCCCCTGGTCCCAAGGGAGACCCTGGTCCCCCTGGTCCCATTGGCTCTCTGGGCCAC
CCTGGGCCCCCAGGTGTGGCGGGCCCTCTAGGACAGAAAGGCTCAAAAGGGTCTCCGGGGTCCATGGGC
CCCCGTGGAGACACTGGACCTGCAGGCCCACCAGGCCCCCCGGGTGCCCCTGCCGAGCTGCATGGGCTG
CGCAGGCGCCGGCGCTTCGTCCCAGTCCCGCTTCCAGTCGTGGAGGGCGGCCTGGAGGAGGTGCTGGCC
TCGCTCACATCGCTGAGCTTGGAGCTGGAGCAGCTGCGGCGTCCTCCCGGCACTGCGGAGCGCCCGGGC
CTCGTGTGCCACGAGCTGCACCGCAACCACCCGCACCTGCCTGATGGGGAATACTGGATTGACCCCAAC
CAGGGCTGCGCGCGGGACTCGTTCAGGGTTTTTTGCAACTTCACGGCGGGAGGAGAGACCTGCCTCTAT
CCCGACAAGAAGTTTGAGATCGTGAAATTGGCCTCCTGGTCCAAGGAAAAGCCTGGAGGCTGGTATAGC
ACATTCCGTCGAGGGAAGAAGTTCTCCTACGTGGACGCCGACGGGTCCCCAGTGAATGTCGTGCAGCTG
AACTTCCTGAAACTGCTGAGTGCCACAGCTCGCCAGAACTTCACCTACTCCTGCCAGAATGCAGCTGCC
TGGCTGGACGAAGCCACGGGTGACTACAGCCACTCCGCCCGCTTCCTTGGCACCAATGGAGAGGAGCTG
TCTTTCAACCAGACGACAGCAGCCACTGTCAGCGTCCCCCAGGATGGCTGCCGGCTCCGGAAAGGACAG
ACGAAGACCCTTTTCGAATTCAGCTCTTCTCGAGCGGGATTTCTGCCCCTGTGGGATGTGGCGGCCACT
GACTTTGGCCAGACGAACCAAAAGTTTGGGTTTGAACTGGGCCCCGTCTGCTTCAGCAGCTGA

ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGAT
TACAAGGATGACGACGATAAG
GTTTAAACGGCCGGC
Restriction Sites SgfI-MluI     
ACCN NM_015719
Insert Size 5238 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 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_015719.3
RefSeq Size 6192 bp
RefSeq ORF 5238 bp
Locus ID 50509
UniProt ID P25940
Protein Pathways ECM-receptor interaction, Focal adhesion
MW 172.1 kDa
Gene Summary This gene encodes an alpha chain for one of the low abundance fibrillar collagens. Fibrillar collagen molecules are trimers that can be composed of one or more types of alpha chains. Type V collagen is found in tissues containing type I collagen and appears to regulate the assembly of heterotypic fibers composed of both type I and type V collagen. This gene product is closely related to type XI collagen and it is possible that the collagen chains of types V and XI constitute a single collagen type with tissue-specific chain combinations. Mutations in this gene are thought to be responsible for the symptoms of a subset of patients with Ehlers-Danlos syndrome type III. Messages of several sizes can be detected in northern blots but sequence information cannot confirm the identity of the shorter messages. [provided by RefSeq, Jul 2008]
*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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