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Rabbit anti-Human PPP5C Polyclonal Antibody

The antibody against PPP5C was raised in rabbit using the Human PPP5C as the immunogen. This antibody exists as a non-conjugated isotype IgG, Antigen affinity purified. This antibody has been validated on ELISA, WB, IHC.

ADC-47540A

The antibody against PPP5C was raised in rabbit using the Human PPP5C as the immunogen. This antibody exists as a non-conjugated isotype IgG, Antigen affinity purified. This antibody has been validated on ELISA, WB, IHC.

$600.00

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Specifications


Cat.No ADC-47540A ClonalityPolyclonal
Host SpeciesRabbitTarget NamePPP5C
Target Synonymscatalytic subunit antibody; Protein phosphatase T antibody; Serine/threonine protein phosphatase 5 antibody; Serine/threonine-protein phosphatase 5 antibody, FLJ36922 antibody; FLJ55954 antibody; OTTHUMP00000165834 antibody; PP-T antibody; PP5 antibody; PPP5 antibody; PPP5_HUMAN antibody; Ppp5c antibody; PPT antibody; Protein phosphatase 5FormLiquid
Species ReactivityHuman, Mouse, RatIsotypeIgG
Storage Buffer50% Glycerol, Avoid freeze / thaw cycles., PBS with 0.1% Sodium AzidePurification MethodAntigen affinity purified
ConjugateNon-conjugatedApplicationELISA, IHC, WB
StorageUpon receipt

Immunogen Information


Immunogen DescriptionHuman PPP5CTarget SpeciesHuman
Immunogen SequenceComplete sequences for the immunogen, target protein, and peptides are available upon request.Uniprot IDP53041
Background Information
  • Uniprot Id

    P53041

  • Target Species

    Human

  • Target Name

    PPP5C

  • Target Full Name

    Serine/threonine-protein phosphatase 5

  • Target Function

    Serine/threonine-protein phosphatase that dephosphorylates a myriad of proteins involved in different signaling pathways including the kinases CSNK1E, ASK1/MAP3K5, PRKDC and RAF1, the nuclear receptors NR3C1, PPARG, ESR1 and ESR2, SMAD proteins and TAU/MAPT. Implicated in wide ranging cellular processes, including apoptosis, differentiation, DNA damage response, cell survival, regulation of ion channels or circadian rhythms, in response to steroid and thyroid hormones, calcium, fatty acids, TGF-beta as well as oxidative and genotoxic stresses. Participates in the control of DNA damage response mechanisms such as checkpoint activation and DNA damage repair through, for instance, the regulation ATM/ATR-signaling and dephosphorylation of PRKDC and TP53BP1. Inhibits ASK1/MAP3K5-mediated apoptosis induced by oxidative stress. Plays a positive role in adipogenesis, mainly through the dephosphorylation and activation of PPARG transactivation function. Also dephosphorylates and inhibits the anti-adipogenic effect of NR3C1. Regulates the circadian rhythms, through the dephosphorylation and activation of CSNK1E. May modulate TGF-beta signaling pathway by the regulation of SMAD3 phosphorylation and protein expression levels. Dephosphorylates and may play a role in the regulation of TAU/MAPT. Through their dephosphorylation, may play a role in the regulation of ions channels such as KCNH2. Dephosphorylate FNIP1, disrupting interaction with HSP90AA1/Hsp90.

  • Target Subcellular Location

    Nucleus. Cytoplasm. Cell membrane.

  • Target Protein Families

    PPP phosphatase family, PP-5 (PP-T) subfamily

  • Target Tissue Specificity

    Ubiquitous.

  • Target Research Area

    Epigenetics and Nuclear Signaling

  • Target Synonyms

    FLJ36922; FLJ55954; OTTHUMP00000165834; PP-T; PP5; PPP5; PPP5_HUMAN; Ppp5c; PPT; Protein phosphatase 5, catalytic subunit; Protein phosphatase T; Serine/threonine protein phosphatase 5; Serine/threonine-protein phosphatase 5

  • Target Background

    This gene encodes a serine/threonine phosphatase which is a member of the protein phosphatase catalytic subunit family. Proteins in this family participate in pathways regulated by reversible phosphorylation at serine and threonine residues; many of these pathways are involved in the regulation of cell growth and differentiation. The product of this gene has been shown to participate in signaling pathways in response to hormones or cellular stress, and elevated levels of this protein may be associated with breast cancer development. Alternative splicing results in multiple transcript variants.

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