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HSP90 anticorps (Atto 594)

Cet anticorps anti-HSP90 est un anticorps Lapin Polyclonal détectant HSP90 dans WB, IP, IF et ICC. Adapté pour Plasmodium falciparum.
N° du produit ABIN2481396

Aperçu rapide pour HSP90 anticorps (Atto 594) (ABIN2481396)

Antigène

Voir toutes HSP90 Anticorps
HSP90 (Heat Shock Protein 90 (HSP90))

Reactivité

  • 104
  • 59
  • 57
  • 29
  • 25
  • 20
  • 20
  • 18
  • 10
  • 10
  • 10
  • 9
  • 9
  • 7
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  • 3
  • 2
  • 2
  • 1
  • 1
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  • 1
  • 1
  • 1
  • 1
  • 1
  • 1
Plasmodium falciparum

Hôte

  • 81
  • 61
  • 2
  • 1
  • 1
Lapin

Clonalité

  • 84
  • 62
Polyclonal

Conjugué

  • 53
  • 11
  • 11
  • 10
  • 10
  • 10
  • 9
  • 8
  • 8
  • 8
  • 4
  • 4
Cet anticorp HSP90 est conjugé à/à la Atto 594

Application

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  • 11
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Western Blotting (WB), Immunoprecipitation (IP), Immunofluorescence (IF), Immunocytochemistry (ICC)
  • Specificité

    Detects ~ 86 kDa. Specific to P. falciparum and does not cross-react to HSP90 from Human, yeast, and dictyostelium.

     Réactivité croisée

    Plasmodium falciparum

    Purification

    Protein A Purified

    Immunogène

    Recombinant full length PfHSP90
  • Indications d'application

    • WB (1:2000)
    • ICC/IF (1:50)
    • optimal dilutions for assays should be determined by the user.

    Commentaires

    0.7 μg/ml of ABIN2481396 was sufficient for detection of PfHSP90 in 20 μg of P. falciparum lysate by colorimetric immunoblot analysis using Goat anti-rabbit IgG:HRP as the secondary antibody.

    Restrictions

    For Research Use only
  • Format

    Liquid

    Concentration

    1.56 mg/mL

    Buffer

    PBS pH 7.4, 50 % glycerol, 0.09 % sodium azide, Storage buffer may change when conjugated

    Agent conservateur

    Sodium azide

    Précaution d'utilisation

    This product contains Sodium azide: a POISONOUS AND HAZARDOUS SUBSTANCE which should be handled by trained staff only.

    Stock

    4 °C

    Stockage commentaire

    Conjugated antibodies should be stored at 4°C
  • Antigène

    HSP90 (Heat Shock Protein 90 (HSP90))

    Autre désignation

    HSP90

    Sujet

    HSP90 is an abundantly and ubiquitously expressed heat shock protein. It is understood to exist in two principal forms α and β, which share 85 % sequence amino acid homology. The two isoforms of HSP90 are expressed in the cytosolic compartment (1). Despite the similarities, HSP90α exists predominantly as a homodimer while HSP90β exists mainly as a monomer.(2) From a functional perspective, HSP90 participates in the folding, assembly, maturation, and stabilization of specific proteins as an integral component of a chaperone complex. (3-6) Furthermore, HSP90 is highly conserved between species, having 60 % and 78 % amino acid similarity between mammalian and the corresponding yeast and Drosophila proteins, respectively. HSP90 is a highly conserved and essential stress protein that is expressed in all eukaryotic cells. Despite its label of being a heat-shock protein, HSP90 is one of the most highly expressed proteins in unstressed cells (1-2 % of cytosolic protein). It carries out a number of housekeeping functions - including controlling the activity, turnover, and trafficking of a variety of proteins. Most of the HSP90-regulated proteins that have been discovered to date are involved in cell signaling (7-8). The number of proteins now know to interact with HSP90 is about 100. Target proteins include the kinases v-Src, Wee1, and c-Raf, transcriptional regulators such as p53 and steroid receptors, and the polymerases of the hepatitis B virus and telomerase.5 When bound to ATP, HSP90 interacts with co-chaperones Cdc37, p23, and an assortment of immunophilin-like proteins, forming a complex that stabilizes and protects target proteins from proteasomal degradation. In most cases, HSP90-interacting proteins have been shown to co-precipitate with HSP90 when carrying out immune adsorption studies, and to exist in cytosolic heterocomplexes with it. In a number of cases, variations in HSP90 expression or HSP90 mutation has been shown to degrade signaling function via the protein or to impair a specific function of the protein (such as steroid binding, kinase activity) in vivo. Ansamycin antibiotics, such as geldanamycin and radicicol, inhibit HSP90 function (9). Recently, Prof. Tatu's laboratory has shown the importance of HSP90 in parasite growth. They have shown that inhibition of P. falciparum HSP90 (PfHSP90), blocks the erythrocytic cycle by inhibiting stage transformation, leading to inhibition of parasite growth (10, 11). Looking for more information on HSP90? Visit our new HSP90 Scientific Resource Guide at http://www.HSP90.ca.

    ID gène

    811999

    NCBI Accession

    XP_001348591

    UniProt

    Q8IL32

    Pathways

    M Phase, Regulation of Cell Size, Signaling Events mediated by VEGFR1 and VEGFR2, VEGFR1 Specific Signals
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