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Rabbit anti-Human CCT6B Polyclonal Antibody

The antibody against CCT6B was raised in rabbit using the Human CCT6B as the immunogen. This antibody exists as a non-conjugated isotype IgG, Antigen affinity purified. This antibody has been validated on ELISA, WB.

ADC-53865A

The antibody against CCT6B was raised in rabbit using the Human CCT6B as the immunogen. This antibody exists as a non-conjugated isotype IgG, Antigen affinity purified. This antibody has been validated on ELISA, WB.

$600.00

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Specifications


Cat.No ADC-53865A ClonalityPolyclonal
Host SpeciesRabbitTarget NameCCT6B
FormLiquidSpecies ReactivityHuman, Mouse, Rat
IsotypeIgGStorage Buffer50% Glycerol, Avoid freeze / thaw cycles., PBS with 0.1% Sodium Azide
Purification MethodAntigen affinity purifiedConjugateNon-conjugated
ApplicationELISA, WBStorageUpon receipt

Immunogen Information


Immunogen DescriptionHuman CCT6BTarget SpeciesHuman
Immunogen SequenceComplete sequences for the immunogen, target protein, and peptides are available upon request.Uniprot IDQ92526
Background Information
  • Uniprot Id

    Q92526

  • Target Species

    Human

  • Target Name

    CCT6B

  • Target Full Name

    T-complex protein 1 subunit zeta-2

  • Target Function

    Component of the chaperonin-containing T-complex (TRiC), a molecular chaperone complex that assists the folding of proteins upon ATP hydrolysis.

  • Target Subcellular Location

    Cytoplasm.

  • Target Protein Families

    TCP-1 chaperonin family

  • Target Tissue Specificity

    Testis-specific.

  • Target Synonyms

    CCT6B; T-complex protein 1 subunit zeta-2; TCP-1-zeta-2; CCT-zeta-2; CCT-zeta-like; TCP-1-zeta-like; Testis-specific Tcp20; Testis-specific protein TSA303

  • Target Background

    This gene encodes a molecular chaperone that is a member of the chaperonin-containing TCP1 complex (CCT), also known as the TCP1 ring complex (TRiC). This complex consists of two identical stacked rings, each containing eight different proteins. Unfolded polypeptides enter the central cavity of the complex and are folded in an ATP-dependent manner. The complex folds various proteins, including actin and tubulin. Alternative splicing results in multiple transcript variants.

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