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Recombinant Mouse Syndecan-1 Protein, CF

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Product Details

Summary
Reactivity MuSpecies Glossary
Applications Bioactivity
Format
Carrier-Free

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Recombinant Mouse Syndecan-1 Protein, CF Summary

Details of Functionality
Measured by the ability of the immobilized protein to enhance the adhesion of Saos‑2 human osteosarcoma cells to human Fibronectin. When 5 x 104 cells/well are added to mouse Syndecan-1 and Recombinant Human Fibronectin (0.5 μg/mL, Catalog # 4305-FNB) coated plates, cell adhesion is enhanced in a dose dependent manner. The ED50 for this effect is 2.5‑10 μg/mL.
Source
Mouse myeloma cell line, NS0-derived mouse Syndecan-1/CD138 protein
Gln18-Glu252, with a C-terminal 6-His tag
Accession #
N-terminal Sequence
No results obtained: Gln18 predicted
Protein/Peptide Type
Recombinant Proteins
Gene
Sdc1
Purity
>95%, by SDS-PAGE under reducing conditions and visualized by silver stain.
Endotoxin Note
<0.10 EU per 1 μg of the protein by the LAL method.

Applications/Dilutions

Dilutions
  • Bioactivity
Theoretical MW
25.3 kDa.
Disclaimer note: The observed molecular weight of the protein may vary from the listed predicted molecular weight due to post translational modifications, post translation cleavages, relative charges, and other experimental factors.
SDS-PAGE
60-80 kDa, reducing conditions
Publications
Read Publications using
3190-SD in the following applications:

Packaging, Storage & Formulations

Storage
Use a manual defrost freezer and avoid repeated freeze-thaw cycles.
  • 12 months from date of receipt, -20 to -70 °C as supplied.
  • 1 month, 2 to 8 °C under sterile conditions after reconstitution.
  • 3 months, -20 to -70 °C under sterile conditions after reconstitution.
Buffer
Lyophilized from a 0.2 μm filtered solution in PBS.
Purity
>95%, by SDS-PAGE under reducing conditions and visualized by silver stain.
Reconstitution Instructions
Reconstitute at 200 μg/mL in PBS.

Notes

This product is produced by and ships from R&D Systems, Inc., a Bio-Techne brand.

Alternate Names for Recombinant Mouse Syndecan-1 Protein, CF

  • CD138 antigen
  • CD138
  • SDC
  • SDC1
  • SYND1heparan sulfate proteoglycan fibroblast growth factor receptor
  • syndecan 1
  • syndecan proteoglycan 1
  • syndecan
  • Syndecan1
  • Syndecan-1

Background

Syndecan-1, designated CD138, is a dimeric type I transmembrane (TM) protein that belongs to the Syndecan family of Type 1 transmembrane proteins (1, 2). The four Syndecan family members are major carriers of heparan sulfate (HS) and chondroitin sulfate glycosaminoglycans (GAGs) that have different expression patterns and extracellular sequences. Syndecan-1 forms weak non-covalent homodimers, or heterodimers with Syndecan-2 or -3, through interactions of the transmembrane domain (3). It is synthesized as a 310 amino acid (aa) precursor with a 22 aa signal sequence, a 233 aa extracellular domain (ECD) that includes three closely spaced consensus Ser-Gly HS attachment sites near the N-terminus, a 21 aa TM segment, and a 35 aa cytoplasmic region that includes a PDZ binding motif with a tyrosine phosphorylation site (4). The ECD is variably modified by GAGs, producing molecular weights of 120 - 200 kDa for native Syndecan-1. Soluble forms are shed via proteolytic cleavage. Mouse Syndecan-1 ECD shares 70% and 87% aa identity with the ECD of human and rat Syndecan-1, respectively. Alternative splicing in mouse generates an isoform with an internal deletion of 44 aa from the ECD (5). Syndecan-1 shows highest expression on epithelial cells such as keratinocytes, and terminally differentiated B cells such as plasma cells (6, 7). It aids wound healing in skin, cornea, and heart following myocardial infarction by promoting re-epithelialization, migration, and collagen deposition (6 - 10). It binds chemokines, creating chemotactic gradients when shed, but also binds and modulates integrins to control the influx of leukocytes (7, 9, 11). The net effect is to allow, but limit, inflammation. In myeloma and other cancers, shedding of Syndecan-1 can facilitate growth, angiogenesis and metastasis (12 - 14). Growth factors, such as FGFs and HGF, bind GAG chains and use Syndecan-1 as a coreceptor (14, 15). The GAG chains may also be used by a variety of viruses and bacteria for cell adhesion and uptake (6).
  1. Tkachenko, E. et al. (2005) Circ. Res. 96:488.
  2. Mali, M. et al. (1990) J. Biol. Chem. 265:6884.
  3. Dews, I.C. and K.R. MacKenzie (2007) Proc. Natl. Acad. Sci. USA 104:20782.
  4. Saunders, S. et al. (1989) J. Cell Biol. 108:1547.
  5. Romaris, M. et al. (1999) J. Biol. Chem. 274:18667.
  6. Fears, C.Y. and A. Woods (2006) Matrix Biol. 25:443.
  7. Stepp, M.A. et al. (2002) J. Cell Sci. 115:4517.
  8. Ojeh, N. et al. (2008) J. Invest. Dermatol. 128:26.
  9. Stepp, M.A. et al. (2007) J. Cell Sci. 120:2851.
  10. Vanhoutte, D. et al. (2007) Circulation 115:475.
  11. Li, Q. et al. (2002) Cell 111:635.
  12. Beauvais, D.M. et al. (2009) J. Exp. Med. 206:691.
  13. Yang, Y. et al. (2007) J. Biol. Chem. 282:13326.
  14. Derksen, P.W.B. et al. (2002) Blood 99:1405.
  15. Su, G. et al. (2007) J. Biol. Chem. 282:14906.

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3190-SD
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Publications for Syndecan-1/CD138 (3190-SD)(5)

We have publications tested in 1 confirmed species: Mouse.

We have publications tested in 2 applications: Bioassay, In Vivo.


Filter By Application
Bioassay
(3)
In Vivo
(2)
All Applications
Filter By Species
Mouse
(5)
All Species
Showing Publications 1 - 5 of 5.
Publications using 3190-SD Applications Species
Nakajima, C;Sawada, M;Umeda, E;Takagi, Y;Nakashima, N;Kuboyama, K;Kaneko, N;Yamamoto, S;Nakamura, H;Shimada, N;Nakamura, K;Matsuno, K;Uesugi, S;Vep?ek, NA;Küllmer, F;Nasufovi?, V;Uchiyama, H;Nakada, M;Otsuka, Y;Ito, Y;Herranz-Pérez, V;García-Verdugo, JM;Ohno, N;Arndt, HD;Trauner, D;Tabata, Y;Igarashi, M;Sawamoto, K; Identification of the growth cone as a probe and driver of neuronal migration in the injured brain Nature communications 2024-03-09 [PMID: 38461182] (Bioassay, Mouse) Bioassay Mouse
Takeda, K;Kaifu, T;Michihata, R;Kinugawa, N;Fujioka, A;Tateno, A;Toshima, K;Kanoh, H;Inamori, KI;Kamijo, K;Himeda, T;Ohara, Y;Inokuchi, JI;Nakamura, A; Chronic encephalomyelitis virus exhibits cellular tropism and evades pDCs by binding to sialylated integrins as the cell surface receptors European journal of immunology 2023-08-11 [PMID: 37565654] (In Vivo, Mouse) In Vivo Mouse
Andries, L;Kancheva, D;Masin, L;Scheyltjens, I;Van Hove, H;De Vlaminck, K;Bergmans, S;Claes, M;De Groef, L;Moons, L;Movahedi, K; Immune stimulation recruits a subset of pro-regenerative macrophages to the retina that promotes axonal regrowth of injured neurons Acta neuropathologica communications 2023-05-24 [PMID: 37226256] (In Vivo, Mouse) In Vivo Mouse
L Liu, M Akkoyunlu Circulating CD138 enhances disease progression by augmenting autoreactive antibody production in a mouse model of systemic lupus erythematosus The Journal of Biological Chemistry, 2021-08-06;0(0):101053. 2021-08-06 [PMID: 34364875] (Bioassay, Mouse) Bioassay Mouse
WY Kim, SH Lee, DY Kim, HJ Ryu, GR Chon, YY Park, Y Fu, JW Huh, CM Lim, Y Koh, EY Choi, SB Hong Serum developmental endothelial locus-1 is associated with severity of sepsis in animals and humans Sci Rep, 2019-09-10;9(1):13005. 2019-09-10 [PMID: 31506547] (Bioassay, Mouse) Bioassay Mouse

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Bioinformatics

Gene Symbol Sdc1
Uniprot