Recombinant Mouse C-C Motif Chemokine 25 Protein (CCL25), Active

Beta LifeScience SKU/CAT #: BLC-05466P

Recombinant Mouse C-C Motif Chemokine 25 Protein (CCL25), Active

Beta LifeScience SKU/CAT #: BLC-05466P
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Product Overview

Description Recombinant Mouse C-C Motif Chemokine 25 Protein (CCL25), Active is produced by our E.coli expression system. This is a full length protein.
Purity Greater than 95% as determined by SDS-PAGE and HPLC.
Endotoxin Less than 1.0 EU/μg as determined by LAL method.
Activity Fully biologically active when compared to standard. The biological activity determined by a chemotaxis bioassay using human monocytes is in a concentration range of 5.0-50 ng/ml.
Uniprotkb O35903
Target Symbol CCL25
Synonyms Ccl25; Scya25; Teck; C-C motif chemokine 25; Chemokine TECK; Small-inducible cytokine A25; Thymus-expressed chemokine
Species Mus musculus (Mouse)
Expression System E.coli
Tag Tag-Free
Complete Sequence QGAFEDCCLG YQHRIKWNVL RHARNYHQQE VSGSCNLRAV RFYFRQKVVC GNPEDMNVKR AIRILTARKR LVHWKSASDS QTERKKSNHM KSKVENPNST SVRSATLGHP RMVMMPRKTN N
Expression Range 24-144aa
Protein Length Full Length of Mature Protein
Mol. Weight 14.1 kDa
Research Area Immunology
Form Lyophilized powder
Buffer Lyophilized from a 0.2 µm filtered PBS, pH 7.4
Reconstitution Briefly centrifuged the vial prior to opening to bring the contents to the bottom. Reconstitute protein in deionized sterile water to a concentration of 0.1-1.0 mg/mL. It is recommended to add 5-50% of glycerol (final concentration) and aliquot for long-term storage at -20°C/-80°C. The default final concentration of glycerol is 50%.
Storage 1. Store at -20°C/-80°C upon receipt, aliquoting is necessary for mutiple use. 2. Avoid repeated freeze-thaw cycles. 3. Store working aliquots at 4°C for up to one week. 4. In general, protein in liquid form is stable for up to 6 months at -20°C/-80°C. Protein in lyophilized powder form is stable for up to 12 months at -20°C/-80°C.
Notes Repeated freezing and thawing is not recommended. Store working aliquots at 4°C for up to one week.

Target Details

Target Function Potentially involved in T-cell development. Recombinant protein shows chemotactic activity on thymocytes, macrophages, THP-1 cells, and dendritics cells but is inactive on peripheral blood lymphocytes and neutrophils. Binds to CCR9. Binds to atypical chemokine receptor ACKR4 and mediates the recruitment of beta-arrestin (ARRB1/2) to ACKR4.
Subcellular Location Secreted.
Protein Families Intercrine beta (chemokine CC) family
Database References
Tissue Specificity Specifically expressed by thymic dendritic cells. High levels in thymus and small intestine.

Gene Functions References

  1. these results showed a site- and cell-specific expressions of Ccl25 and its receptor Ccr9 within both maternal and embryonic compartments of implantation sites and suggested a role in inducing specific Ccr9+ leukocytes at the maternal-fetal interface during the initial steps of embryo implantation in the mouse model PMID: 29154408
  2. MicroRNA-205 maintains T cell development following stress by regulating Foxn1 and its two regulated targets, stem cell factor and ccl25, following stress. PMID: 27646003
  3. CCR9 and CCL25 expressions are induced in the early stages of airway inflammation and they have an important role modulating eosinophils and lymphocytes recruitment at the first stages of inflammatory process PMID: 27795621
  4. TECK was shown to be expressed by osteoblasts, and its receptor, CCR9, by osteoclast precursors. TECK increased P. gingivalis LPS-induced osteoclast numbers in an in vitro osteoclast formation assay using osteoclast precursors. T PMID: 26921718
  5. CCR9/CCL25 is involved in acute skin transplantation rejection and anti-CCL25 strategies might be useful in preventing acute rejection. PMID: 23456208
  6. Accumulated CD11b(+) macrophages are critical for activating hepatic stellate cells through the CCR9/CCL25 axis and therefore promote liver fibrosis. PMID: 23460364
  7. The results revealed that during an allergic reaction, CCL25 drives IL-17 gammadelta T-cell mobilization to inflamed tissue via alpha4beta7 integrin and modulates IL-17 levels. PMID: 22539297
  8. CCL25/CCR9 interactions regulate inflammatory immune responses in the large intestinal mucosa by balancing different subsets of dendritic cells. PMID: 21283540
  9. Characterization of mouse CCX-CKR, a receptor for the lymphocyte-attracting chemokines TECK/mCCL25, SLC/mCCL21 and MIP-3beta/mCCL19: comparison to human CCX-CKR. (CCX-CKR) PMID: 11981810
  10. in vivo neutralization of the CCR9 ligand, CCL25, reduced the ability of activated CCR9(+) CD8alphabeta(+) lymphocytes cells to populate the small-intestinal epithelium PMID: 12393847
  11. role of CCL25 in the generation of the small-intestinal CD8alpha alpha(+)CD3(+) intraepithelial lymphocyte compartment PMID: 12442331
  12. chemokine (C-C motif) ligand 25 may thus play an important role in the adherence of mucosal lymphocytes to the microvessels of the small intestine but not the colon under uninflamed as well as inflamed conditions PMID: 14592943
  13. Neonatal CD8+ splenocytes uniformly express alpha(E) integrin and exhibit a high responsiveness to CC chemokine ligand 25. With increasing age, the frequency of CD8+ alpha(E) integrin(+) splenocytes decreases, roughly correlating with thymic involution. PMID: 15187103
  14. Epithelial cells and venular endothelium of small intestine are immunologically positive for CCL25, a chemokine which plays a direct role in intestinal homing of IgA antibody-secreting cells by mediating their extravasation into intestinal lamina propria. PMID: 15356112
  15. Chemokine CCL25 enhances CD103-mediated adhesion to E-cadherin. PMID: 15681774
  16. demonstrate a unique pattern of regulation for CCL25 and suggest a role for caudal type homeo box proteins in regulating CCL25 transcription PMID: 16517733
  17. Intracellular signaling required for Ccl25-stimulated T cell adhesion mediated by the integrin alpha4beta1. PMID: 17510295
  18. CCL25 is indispensable for CD8 T cells trafficking to the small intestine. PMID: 17548595
  19. Demonstrate development of intestinal inflammation in Tnf(DeltaARE) mice is critically dependent on beta7 integrin-mediated T-lymphocyte recruitment. the function of the CCL25/CCR9 axis appears dispensable in this model. PMID: 18439426
  20. CCL25 increases thymopoiesis after androgen withdrawal PMID: 18694999
  21. Ovarian CC chemokine thymus-expressed chemokine (TECK) appears to be a chemoattractant for CD8 alpha alpha-positive cells. PMID: 19109193

FAQs

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Proteins are sensitive to heat, and freeze-drying can preserve the activity of the majority of proteins. It improves protein stability, extends storage time, and reduces shipping costs. However, freeze-drying can also lead to the loss of the active portion of the protein and cause aggregation and denaturation issues. Nonetheless, these adverse effects can be minimized by incorporating protective agents such as stabilizers, additives, and excipients, and by carefully controlling various lyophilization conditions.

Commonly used protectant include saccharides, polyols, polymers, surfactants, some proteins and amino acids etc. We usually add 8% (mass ratio by volume) of trehalose and mannitol as lyoprotectant. Trehalose can significantly prevent the alter of the protein secondary structure, the extension and aggregation of proteins during freeze-drying process; mannitol is also a universal applied protectant and fillers, which can reduce the aggregation of certain proteins after lyophilization.

Our protein products do not contain carrier protein or other additives (such as bovine serum albumin (BSA), human serum albumin (HSA) and sucrose, etc., and when lyophilized with the solution with the lowest salt content, they often cannot form A white grid structure, but a small amount of protein is deposited in the tube during the freeze-drying process, forming a thin or invisible transparent protein layer.

Reminder: Before opening the tube cap, we recommend that you quickly centrifuge for 20-30 seconds in a small centrifuge, so that the protein attached to the tube cap or the tube wall can be aggregated at the bottom of the tube. Our quality control procedures ensure that each tube contains the correct amount of protein, and although sometimes you can't see the protein powder, the amount of protein in the tube is still very precise.

To learn more about how to properly dissolve the lyophilized recombinant protein, please visit Lyophilization FAQs.

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