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SDS-PAGE

LYVE1 / LYVE-1 recombinant protein

Recombinant Mouse LYVE1 / LYVE-1 Protein (Fc tag)

Gene Names
Lyve1; Xlkd1; Lyve-1; Crsbp-1; 1200012G08Rik
Purity
> 85 % as determined by SDS-PAGE
Synonyms
LYVE1 / LYVE-1; Recombinant Mouse LYVE1 / LYVE-1 Protein (Fc tag); LYVE1; Crsbp1; Xlkd1; LYVE1 / LYVE-1 recombinant protein
Ordering
For Research Use Only!
Host
Human Cells
Purity/Purification
> 85 % as determined by SDS-PAGE
Form/Format
Lyophilized from sterile PBS, pH 7.4
Sequence Length
318
Application Notes
The recombinant mouse LYVE1 /Fc is a disulfide-linked homodimer. The reduced monomer comprises 446 amino acids and has a predicted molecular mass of 49.1 kDa. The apparent molecular mass of the protein is approximately 63 kDa in SDS-PAGE under reducing conditions due to glycosylation.
Predicted N Terminal
Ala 24
Endotoxin
< 1.0 EU per mug of the protein as determined by the LAL method
Preparation and Storage
Samples are stable for up to twelve months from date of receipt at -70 degree C

SDS-PAGE

SDS-PAGE
Related Product Information for LYVE1 / LYVE-1 recombinant protein
Background: LYVE1, also known as LYVE-1, is a type I integral membrane glycoprotein. It contains 1 Link domain and mainly expressed in endothelial cells lining lymphatic vessels. LYVE1 acts as a receptor and binds to both soluble and immobilized hyaluronan. It may function in lymphatic hyaluronan transport and have a role in tumor metastasis. LYVE1 also is a cell surface receptor on lymphatic endothelial cells that can be used as a lymphatic endothelial cell marker, and sort these cells for experimental purposes. It also functions as a ligand-specific transporter trafficking between intracellular organelles and the plasma membrane. It plays a role in autocrine regulation of cell growth mediated by growth regulators containing cell surface retention sequence binding. It may act as an hyaluronan transporter, either mediating its uptake for catabolism within lymphatic endothelial cells themselves, or its transport into the lumen of afferent lymphatic vessels for subsequent re-uptake and degradation in lymph nodes.

Description: A DNA sequence encoding the mouse LYVE1 (Q8BHC0) (Met1-Gly228) was expressed, fused with the Fc region of human IgG1 at the C-terminus.

NCBI and Uniprot Product Information

NCBI GI #
NCBI GeneID
NCBI Accession #
NCBI GenBank Nucleotide #
UniProt Accession #
Molecular Weight
34,574 Da
NCBI Official Full Name
lymphatic vessel endothelial hyaluronic acid receptor 1
NCBI Official Synonym Full Names
lymphatic vessel endothelial hyaluronan receptor 1
NCBI Official Symbol
Lyve1
NCBI Official Synonym Symbols
Xlkd1; Lyve-1; Crsbp-1; 1200012G08Rik
NCBI Protein Information
lymphatic vessel endothelial hyaluronic acid receptor 1
UniProt Protein Name
Lymphatic vessel endothelial hyaluronic acid receptor 1
UniProt Gene Name
Lyve1
UniProt Synonym Gene Names
Crsbp1; Xlkd1; LYVE-1; CRSBP-1

Uniprot Description

XLKD1: Ligand-specific transporter trafficking between intracellular organelles (TGN) and the plasma membrane. Plays a role in autocrine regulation of cell growth mediated by growth regulators containing cell surface retention sequence binding (CRS). May act as an hyaluronan (HA) transporter, either mediating its uptake for catabolism within lymphatic endothelial cells themselves, or its transport into the lumen of afferent lymphatic vessels for subsequent re-uptake and degradation in lymph nodes.

Protein type: Membrane protein, integral; Motility/polarity/chemotaxis

Chromosomal Location of Human Ortholog: 7|7 E3

Cellular Component: plasma membrane

Molecular Function: hyaluronic acid binding; transmembrane receptor activity

Biological Process: glycosaminoglycan catabolic process

Research Articles on LYVE1 / LYVE-1

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Product Notes

The LYVE1 / LYVE-1 lyve1 (Catalog #AAA2547243) is a Recombinant Protein produced from Human Cells and is intended for research purposes only. The product is available for immediate purchase. The recombinant mouse LYVE1 /Fc is a disulfide-linked homodimer. The reduced monomer comprises 446 amino acids and has a predicted molecular mass of 49.1 kDa. The apparent molecular mass of the protein is approximately 63 kDa in SDS-PAGE under reducing conditions due to glycosylation. Researchers should empirically determine the suitability of the LYVE1 / LYVE-1 lyve1 for an application not listed in the data sheet. Researchers commonly develop new applications and it is an integral, important part of the investigative research process. It is sometimes possible for the material contained within the vial of "LYVE1 / LYVE-1, Recombinant Protein" to become dispersed throughout the inside of the vial, particularly around the seal of said vial, during shipment and storage. We always suggest centrifuging these vials to consolidate all of the liquid away from the lid and to the bottom of the vial prior to opening. Please be advised that certain products may require dry ice for shipping and that, if this is the case, an additional dry ice fee may also be required.

Precautions

All products in the AAA Biotech catalog are strictly for research-use only, and are absolutely not suitable for use in any sort of medical, therapeutic, prophylactic, in-vivo, or diagnostic capacity. By purchasing a product from AAA Biotech, you are explicitly certifying that said products will be properly tested and used in line with industry standard. AAA Biotech and its authorized distribution partners reserve the right to refuse to fulfill any order if we have any indication that a purchaser may be intending to use a product outside of our accepted criteria.

Disclaimer

Though we do strive to guarantee the information represented in this datasheet, AAA Biotech cannot be held responsible for any oversights or imprecisions. AAA Biotech reserves the right to adjust any aspect of this datasheet at any time and without notice. It is the responsibility of the customer to inform AAA Biotech of any product performance issues observed or experienced within 30 days of receipt of said product. To see additional details on this or any of our other policies, please see our Terms & Conditions page.

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