Product Name
WNT1-inducible-signaling pathway protein 3 (WISP3), Recombinant Protein
Full Product Name
Recombinant Human WNT1-inducible-signaling pathway protein 3 (WISP3)
Product Gene Name
WISP3 recombinant protein
[Similar Products]
Research Use Only
For Research Use Only. Not for use in diagnostic procedures.
Sequence Positions
24-354aa, Full Length of Mature Protein
Sequence
TGPLDTTPEG RPGEVSDAPQ RKQFCHWPCK CPQQKPRCPP GVSLVRDGCG CCKICAKQPG EICNEADLCD PHKGLYCDYS VDRPRYETGV CAYLVAVGCE FNQVHYHNGQ VFQPNPLFSC LCVSGAIGCT PLFIPKLAGS HCSGAKGGKK SDQSNCSLEP LLQQLSTSYK TMPAYRNLPL IWKKKCLVQA TKWTPCSRTC GMGISNRVTN ENSNCEMRKE KRLCYIQPCD SNILKTIKIP KGKTCQPTFQ LSKAEKFVFS GCSSTQSYKP TFCGICLDKR CCIPNKSKMI TIQFDCPNEG SFKWKMLWIT SCVCQRNCRE PGDIFSELKI L
3D Structure
ModBase 3D Structure for O95389
Host
E Coli or Yeast or Baculovirus or Mammalian Cell
Purity/Purification
>85% (SDS-PAGE) (lot specific)
Form/Format
Liquid containing glycerol
Tag Information
This protein contains an N-terminal tag and may also contain a C-terminal tag. Tag types are determined by various factors including tag-protein stability, please inquire for tag information.
Sterility
Sterile filter available upon request.
Endotoxin
Low endotoxin available upon request.
Storage Buffer
Tris-based buffer, 50% glycerol
Preparation and Storage
Store at -20 degrees C. For long-term storage, store at -20 degrees C or -80 degrees C. Store working aliquots at 4 degrees C for up to one week. Repeated freezing and thawing is not recommended.
ISO Certification
Manufactured in an ISO 13485:2003 and EN ISO 13485:2012 Certified Laboratory.
Other Notes
Small volumes of WISP3 recombinant protein vial(s) may occasionally become entrapped in the seal of the product vial during shipment and storage. If necessary, briefly centrifuge the vial on a tabletop centrifuge to dislodge any liquid in the container`s cap. Certain products may require to ship with dry ice and additional dry ice fee may apply.
Related Product Information for
WISP3 recombinant protein
This gene encodes a member of the WNT1 inducible signaling pathway (WISP) protein subfamily, which belongs to the connective tissue growth factor (CTGF) family. WNT1 is a member of a family of cysteine-rich, glycosylated signaling proteins that mediate diverse developmental processes. The CTGF family members are characterized by four conserved cysteine-rich domains: insulin-like growth factor-binding domain, von Willebrand factor type C module, thrombospondin domain and C-terminal cystine knot-like domain. This gene is overexpressed in colon tumors. It may be downstream in the WNT1 signaling pathway that is relevant to malignant transformation. Mutations of this gene are associated with progressive pseudorheumatoid dysplasia, an autosomal recessive skeletal disorder, indicating that the gene is essential for normal postnatal skeletal growth and cartilage homeostasis. Multiple transcript variants encoding different isoforms have been found for this gene.
NCBI/Uniprot data below describe general gene information for WISP3. It may not necessarily be applicable to this product.
NCBI Accession #
NP_003871.1
[Other Products]
NCBI GenBank Nucleotide #
NM_003880.3
[Other Products]
UniProt Primary Accession #
O95389
[Other Products]
UniProt Secondary Accession #
Q3KR29; Q5H8W4; Q6UXH6[Other Products]
UniProt Related Accession #
O95389[Other Products]
Molecular Weight
41,402 Da
NCBI Official Full Name
WNT1-inducible-signaling pathway protein 3 isoform 1
NCBI Official Synonym Full Names
WNT1 inducible signaling pathway protein 3
NCBI Official Symbol
WISP3 [Similar Products]
NCBI Official Synonym Symbols
PPD; CCN6; LIBC; PPAC; WISP-3
[Similar Products]
NCBI Protein Information
WNT1-inducible-signaling pathway protein 3
UniProt Protein Name
WNT1-inducible-signaling pathway protein 3
UniProt Synonym Protein Names
CCN family member 6
Protein Family
WNT1-inducible-signaling pathway protein
UniProt Gene Name
WISP3 [Similar Products]
UniProt Synonym Gene Names
CCN6; WISP-3 [Similar Products]
NCBI Summary for WISP3
This gene encodes a member of the WNT1 inducible signaling pathway (WISP) protein subfamily, which belongs to the connective tissue growth factor (CTGF) family. WNT1 is a member of a family of cysteine-rich, glycosylated signaling proteins that mediate diverse developmental processes. The CTGF family members are characterized by four conserved cysteine-rich domains: insulin-like growth factor-binding domain, von Willebrand factor type C module, thrombospondin domain and C-terminal cystine knot-like domain. This gene is overexpressed in colon tumors. It may be downstream in the WNT1 signaling pathway that is relevant to malignant transformation. Mutations of this gene are associated with progressive pseudorheumatoid dysplasia, an autosomal recessive skeletal disorder, indicating that the gene is essential for normal postnatal skeletal growth and cartilage homeostasis. Multiple transcript variants encoding different isoforms have been found for this gene. [provided by RefSeq, Jul 2008]
UniProt Comments for WISP3
Appears to be required for normal postnatal skeletal growth and cartilage homeostasis.
Research Articles on WISP3
1. These results demonstrate that CCN6 regulates epithelial and mesenchymal states transition and tumor initiating cells programs in breast cancer
Precautions
All of MyBioSource's Products are for scientific laboratory research purposes and are not for diagnostic, therapeutics, prophylactic or in vivo use. Through your purchase, you expressly represent and warrant to MyBioSource that you will properly test and use any Products purchased from MyBioSource in accordance with industry standards. MyBioSource and its authorized distributors reserve the right to refuse to process any order where we reasonably believe that the intended use will fall outside of our acceptable guidelines.
Disclaimer
While every efforts were made to ensure the accuracy of the information provided in this datasheet, MyBioSource will not be liable for any omissions or errors contained herein. MyBioSource reserves the right to make changes to this datasheet at any time without prior notice.
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