Mouse/Rat SP‑D Alexa Fluor™ Plus 488‑conjugated Antibody

R&D Systems | Catalog # AF6839AFP488

R&D Systems

Key Product Details

Species Reactivity

Mouse, Rat

Applications

Western Blot

Label

Alexa Fluor Plus 488 (Excitation = 493 nm, Emission = 518 nm)

Antibody Source

Polyclonal Sheep IgG
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Product Specifications

Specificity

Detects mouse and rat SP-D in Western blots. In direct ELISAs, approximately 20% cross-reactivity with recombinant human SP-D is observed.

Clonality

Polyclonal

Host

Sheep

Isotype

IgG

Applications for Mouse/Rat SP‑D Alexa Fluor™ Plus 488‑conjugated Antibody

Application
Recommended Usage

Western Blot

Optimal dilution of this antibody should be experimentally determined.

Formulation, Preparation, and Storage

Formulation

Supplied 0.2 mg/mL in a saline solution containing BSA and Sodium Azide.

Shipping

The product is shipped with polar packs. Upon receipt, store it immediately at the temperature recommended below.

Stability & Storage

Protect from light. Do not freeze. 12 months from date of receipt, 2 to 8 °C as supplied

Background: SP-D

SP‑D (surfactant protein‑D; also PSP‑D) is a 43 kDa member of the collectin family of innate immune modulators (1 ‑ 5). It is constitutively secreted by alveolar lining cells and epithelium associated with tubular structures. SP‑D is found in serum, plasma, broncho‑alveolar lavage (BAL) fluid, and amniotic fluid (1, 2, 6). Lung injuries often increase release of SP‑D to the circulation (3, 6). Mouse SP‑D is synthesized as a 374 amino acid (aa) precursor. Mouse SP‑D cDNA encodes a 19 aa signal sequence and a 355 aa mature region with a 25 aa N‑terminal linking‑region, a 177 aa hydroxyproline and hydroxylysine collagen‑like domain, a 46 aa coiled‑coil segment, and a 106 aa, C‑terminal collectin‑like C‑type lectin domain (CRD) (5). Mature mouse SP‑D shares 72 ‑ 76% aa sequence identity with human, porcine, equine, canine and bovine SP‑D, and 92% with rat SP‑D. SP‑D is usually found as a glycosylated, disulfide‑linked 150 kDa alpha ‑helical coiled‑coil trimer with a “head” of three symmetrical CRDs (2‑4, 7). Each CRD recognizes the hydroxides of one monosaccharide, and trimerization allows for the discrimination of monosaccharide patterns specific to microbial pathogens (4, 7, 8). Typically, SP‑D forms a higher‑order 620 kDa, X‑shaped dodecamer through N‑terminal disulfide bonds, allowing for even finer discrimination of self vs. nonself carbohydrate patterns and facilitating binding to complex antigens (1). SP‑D also binds SIRP alpha and the calreticulin/CD91 complex on macrophages (9, 10). When the ratio of antigen/pathogen to available CRDs is low, antigen can be bound without occupying all available CRDs. The free CRDs will bind to SIRP alpha, generating a signal that downmodulates the inflammatory response. During high CRD ligand binding (low SIRP alpha binding), the dodecamer rearranges to expose N‑termini that bind the calreticulin/CD91 complex, an event that initiates inflammation (1). Also, direct and indirect binding of neutrophil defensins and macrophage CD14 and TLRs to SP‑D can modulate response to viruses and bacterial lipopolysaccharides (1‑3, 11‑15). Thus, SP‑D allows for a graded response to environmental challenge and clearance of small antigenic insults without the need for a damaging inflammatory response (1‑3).

References

  1. Forbes, L.R. and A. Haczku (2010) Clin. Exp. Allergy 40:547.
  2. Kishore, U. et. al. (2006) Mol. Immunol. 43:1293.
  3. Hartl, D. and M. Griese (2006) Eur. J. Clin. Invest. 36:423.
  4. Sim, R.B. et. al. (2006) Novartis Found Symp. 279:170.
  5. Motwani, M. et al. (1995) J. Immunol. 155:5671.
  6. Honda, Y. et al. (1995) Am. J. Respir. Crit. Care Med. 152:1860.
  7. Hakansson, K. et. al. (1999) Structure 7:225.
  8. Crouch, E.C. et. al. (2006) Am. J. Respir. Cell Mol. Biol. 35:84.
  9. Janssen, W.J. et al. (2008) Am. J. Respir. Crit. Care Med. 178:158.
  10. Gardai, S.J. et al. (2003) Cell 115:13.Ohya, M. et. al. (2006) Biochemistry 45:8657.
  11. Ohya, M. et. al. (2006) Biochemistry 45:8657.
  12. Pastva, A.M. et al. (2007) Proc. Am. Thorac. Soc. 4:252.
  13. Sano, H. and Y. Kuroki (2005) Mol. Immunol. 42:279.
  14. Hartshorn, K.L. et al. (2006) J. Immunol. 176:6962.
  15. Yamazoe, M. et al. (2008) J. Biol. Chem. 283:35878.

Long Name

Surfactant Pulmonary Associated Protein D

Alternate Names

Collectin 7, PSP-D, SFTP4, SFTPD, SPD

Entrez Gene IDs

6441 (Human); 20390 (Mouse)

Gene Symbol

SFTPD

UniProt

Additional SP-D Products

Product Documents for Mouse/Rat SP‑D Alexa Fluor™ Plus 488‑conjugated Antibody

Certificate of Analysis

To download a Certificate of Analysis, please enter a lot or batch number in the search box below.

Note: Certificate of Analysis not available for kit components.

Product Specific Notices for Mouse/Rat SP‑D Alexa Fluor™ Plus 488‑conjugated Antibody


This product is provided under an intellectual property license from Life Technologies Corporation. The transfer of this product is conditioned on the buyer using the purchased product solely in research conducted by the buyer, excluding contract research or any fee for service research, and the buyer must not (1) use this product or its components for (a) diagnostic, therapeutic or prophylactic purposes; (b) testing, analysis or screening services, or information in return for compensation on a per-test basis; or (c) manufacturing or quality assurance or quality control, and/or (2) sell or transfer this product or its components for resale, whether or not resold for use in research. For information on purchasing a license to this product for purposes other than as described above, contact Life Technologies Corporation, 5781 Van Allen Way, Carlsbad, CA 92008 USA or outlicensing@thermofisher.com.

For research use only

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