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Anti-HSPA8 Polyclonal Antibody (HY600014)

Anti-HSPA8 Polyclonal Antibody
Anti-HSPA8 Polyclonal Antibody
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Overview
Catalog No.HY600014
Description
Anti-HSPA8 Polyclonal Antibody (HY600014) is a rabbit polyclonal antibody detecting HSPA8 in ELISA, IHC, WB. Suitable for Bovine, Cricetulus griseus, Danio rerio, Equus caballus, and Chicken.
Highlights
  • Affinity Purified — Minimal background and high purity for reliable results.
  • Multi-Application — Validated across multiple applications.
  • Multi-Species — Cross-reactive for translational research.
Species reactivityBos taurus, Cricetulus griseus, Danio rerio, Equus caballus, Chicken, Human, Ictalurus punctatus, Mouse, Oncorhynchus mykiss, Oryzias latipes, Pongo abelii, Rat, Saguinus oedipus
ApplicationsELISA, IHC, WB
Host speciesRabbit
IsotypeIgG
Clonality Polyclonal
Immunogen E. coli - derived recombinant Human HSPA8 (Asp534-Gly615).
Target Lipopolysaccharide-associated protein 1, HSPA10, Heat shock 70 kDa protein 8, LPS-associated protein 1, LAP-1, HSP73, HSC70, HSPA8, Heat shock cognate 71 kDa protein
Purification Purified by antigen affinity column.
Accession P11142
Form Liquid
Storage buffer 0.01M PBS, pH 7.4, 50% Glycerol, 0.05% Proclin 300.

Please refer to the specific buffer information in the hardcopy of datasheet or the lot-specific COA.

Product Usage Information
Application Dilution
ELISA 1:5000-1:20000
IHC 1:50-1:500
WB 1:500-1:2000
Stability and Storage Use a manual defrost freezer and avoid repeated freeze thaw cycles. Store at 2 to 8°C for frequent use. Store at -20 to -80°C for twelve months from the date of receipt.
Background

Heat shock cognate 71 kDa protein (HSPA8) is a ~70 kDa protein. Molecular chaperone implicated in a wide variety of cellular processes, including protection of the proteome from stress, folding and transport of newly synthesized polypeptides, chaperone-mediated autophagy, activation of proteolysis of misfolded proteins, formation and dissociation of protein complexes, and antigen presentation. Plays a pivotal role in the protein quality control system, ensuring the correct folding of proteins, the re-folding of misfolded proteins and controlling the targeting of proteins for subsequent degradation. This is achieved through cycles of ATP binding, ATP hydrolysis and ADP release, mediated by co-chaperones. The co-chaperones have been shown to not only regulate different steps of the ATPase cycle of HSP70, but they also have an individual specificity such that one co-chaperone may promote folding of a substrate while another may promote degradation. The affinity of HSP70 for polypeptides is regulated by its nucleotide bound state.

1. Grove, DE. et al. (2011) Molecular biology of the cell 22, 301-14. PMID: 21148293
2. Yamamoto, YH. et al. (2010) Cell structure and function 35, 107-16. PMID: 21150129
3. Sopha, P. et al. (2012) Cell structure and function 37, 177-87. PMID: 23018488
4. Goodwin, EC. et al. (2014) PloS one 9, e94322. PMID: 24732912
5. Li, K. et al. (2017) Molecular cell 65, 52-65. PMID: 27916661
6. Chiang, HL. et al. (1989) Science (New York, N.Y.) 246, 382-5. PMID: 2799391
7. Wang, L. et al. (2023) Molecular cell 83, 281-297.e10. PMID: 36586411
8. Young, JC. et al. (2003) Cell 112, 41-50. PMID: 12526792
10. Rauch, JN. et al. (2014) The Journal of biological chemistry 289, 1402-14. PMID: 24318877
Note For research use only.
Images
  • Anti-HSPA8 Polyclonal Antibody

    Western blot

    Western blot analysis was performed using anti-HSPA8 polyclonal antibody at 1ug/mL on various samples.
    Lane 1: 4T1 cell lysate
    Lane 2: MCF-7 cell lysate
    Lane 3: PC-12 cell lysate
    Lane 4: NIH3T3 cell lysate
    Lane 5: Hela cell lysate
    Lane 6: U87 cell lysate
    Lane 7: Jurkat cell lysate
    Lane 8: HepG2 cell lysate
    Lane 9: A549 cell lysate
    Lane 10: Mouse brain lysate
    Lane11: Mouse heart lysate
    Lane12: Rat brain lysate
    Lane13: Rat heart lysate

References
Formula
Mass (g) = Concentration (mol/L) × Volume (L) × MW (g/mol)
Enter any 2 of Mass, Concentration, Volume + Molecular Weight to solve for the unknown.
Mass
=
Concentration
×
Volume
Molecular Weight *
g/mol
Formula
C₁ × V₁ = C₂ × V₂
Enter any 3 of the 4 values to solve for the unknown.
Stock Solution
C₁ (Stock Conc.)
×
V₁ (Stock Vol.)
=
Working Solution
C₂ (Working Conc.)
×
V₂ (Working Vol.)
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