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Detects Sequestosome-1 (p62) using this rabbit polyclonal Anti-phospho-p62 (Ser24), Cat. No. ABC2047, is a rabbit polyclonal antibody that detects p62 phosphorylated on serine 24 and has been tested for use in Dot Blot, ELISA, Peptide Array, and Western Blotting.
More>>Detects Sequestosome-1 (p62) using this rabbit polyclonal Anti-phospho-p62 (Ser24), Cat. No. ABC2047, is a rabbit polyclonal antibody that detects p62 phosphorylated on serine 24 and has been tested for use in Dot Blot, ELISA, Peptide Array, and Western Blotting. Less<<
Phosphotyrosine-independent ligand for the Lck SH2 domain of 62 kDa
Ubiquitin-binding protein p62
Background Information
Sequestosome-1 (UniProt: Q13501; also known as EBI3-associated protein of 60 kDa, EBIAP, p60, Phosphotyrosine-independent ligand for the Lck SH2 domain of 62 kDa, Ubiquitin-binding protein p62) is encoded by the SQSTM1 (also known as ORCA, OSIL) gene (Gene ID: 8878) in human. p62, also known as SQSTM1, is a multi-domain signaling scaffold protein that is Ubiquitously expressed and is involved in numerous critical cellular functions such as autophagy, apoptosis and inflammation. It serves as an autophagy receptor that participates in selective macroautophagy and acts as a bridge between polyubiquitinated cargo and autophagosomes. It acts as a cargo receptor by detecting ubiquitinated substrates using its UBA domain, aggregating them through PB1-mediated homo-polymerization and attaching them to the autophagosome by association with LC3. p62 can undergo phosphorylation at multiple sites by various kinases. Phosphorylation at serine 24 in the PB1 domain by PKA is shown to regulate p62 polymerization and interaction partner binding profile. Mutations in SQSTM1 gene have been linked to Paget disease of bone that is characterized by increased bone turnover affecting one or more sites throughout the skeleton and makes them more susceptible to fractures. (Ref.: Christian, F., et al. (2014). Biochim. Biophys Acta. 1843(11); 2765-2774).
References
Product Information
Format
Purified
Presentation
Purified rabbit polyclonal antibody in PBS with 0.02% sodium azide.
Applications
Application
Detects Sequestosome-1 (p62) using this rabbit polyclonal Anti-phospho-p62 (Ser24), Cat. No. ABC2047, is a rabbit polyclonal antibody that detects p62 phosphorylated on serine 24 and has been tested for use in Dot Blot, ELISA, Peptide Array, and Western Blotting.
Key Applications
Dot Blot
ELISA
Peptide Array
Western Blotting
Application Notes
ELISA Analysis: A representative lot detected phospho-p62 (Ser24) in ELISA applications (Christian, F., et. al. (2014). Biochim Biophys Acta. 1843(11):2765-74).
Dot Blot Analysis: A representative lot detected phospho-p62 (Ser24) in Dot Blot applications (Christian, F., et. al. (2014). Biochim Biophys Acta. 1843(11): 2765-74).
Peptide Array Anaylsis: A representative lot of this antibody was used in a peptide array to compare its reactivity against overlapping peptides of 25 amino acids. (Christian, F., et. al. (2014). Biochim. Biophys. Acta. 1843(11): 2765-74).
Western Blotting Analysis: A 1:1,000 dilution from a representative lot detected phospho-p62 (Ser24) in HEK293 cells transfected by p62 and treated with Forskolin (Courtesy of Prof. George Baillie, University of Glasgow, UK).
Western Blotting Analysis: A representative lot detected phospho-p62 (Ser24) in Western Blotting applications (Christian, F., et. al. (2014). Biochim Biophys Acta. 1843(11): 2765-74; Tobias, I.S., et. al. (2016). J. Biol. Chem. 291(26): 13809-22).
Biological Information
Immunogen
Linear peptide corresponding to 8 amino acids surrounding phosphoserine 24 in the N-terminal region of human p62.
Epitope
N-terminus
Concentration
Please refer to lot specific datasheet.
Host
Rabbit
Specificity
This rabbit polyclonal antibody specifically detects Sequestosome-1 (p62) phosphorylated on serine 24.
Isotype
IgG
Species Reactivity
Human
Species Reactivity Note
Human. Predicted to react with Mouse, Feline, Rhesus Macaque, Rat based on 100% sequence homology.
~62 kDa observed; 47.69 kDa calculated. Uncharacterized bands may be observed in some lysate(s).
Physicochemical Information
Dimensions
Materials Information
Toxicological Information
Safety Information according to GHS
Safety Information
Product Usage Statements
Quality Assurance
Evaluated by Western Blotting in lysate from HEK293 cells transfected with p62 and treated with Forskolin.
Western Blotting Analysis: A 1:1,000 dilution of this antibody detected phospho-p62 (Ser24) in lysate from HEK293 cells transfected with p62 and treated with Forskolin (100 uM, 24 h), but not in lysate from untreated cells.
Usage Statement
Unless otherwise stated in our catalog or other company documentation accompanying the product(s), our products are intended for research use only and are not to be used for any other purpose, which includes but is not limited to, unauthorized commercial uses, in vitro diagnostic uses, ex vivo or in vivo therapeutic uses or any type of consumption or application to humans or animals.
Atypical protein kinase C (aPKC) isozymes modulate insulin signaling and cell polarity, but how their activity is controlled in cells is not well understood. These enzymes are constitutively phosphorylated, insensitive to second messengers, and have relatively low activity. Here we show that protein scaffolds not only localize but also differentially control the catalytic activity of the aPKC PKCζ, thus promoting activity toward localized substrates and restricting activity toward global substrates. Using cellular substrate readouts and scaffolded activity reporters in live cell imaging, we show that PKCζ has highly localized and differentially controlled activity on the scaffolds p62 and Par6. Both scaffolds tether aPKC in an active conformation as assessed through pharmacological inhibition of basal activity, monitored using a genetically encoded reporter for PKC activity. However, binding to Par6 is of higher affinity and is more effective in locking PKCζ in an active conformation. FRET-based translocation assays reveal that insulin promotes the association of both p62 and aPKC with the insulin-regulated scaffold IRS-1. Using the aPKC substrate MARK2 as another readout for activity, we show that overexpression of IRS-1 reduces the phosphorylation of MARK2 and enhances its plasma membrane localization, indicating sequestration of aPKC by IRS-1 away from MARK2. These results are consistent with scaffolds serving as allosteric activators of aPKCs, tethering them in an active conformation near specific substrates. Thus, signaling of these intrinsically low activity kinases is kept at a minimum in the absence of scaffolding interactions, which position the enzymes for stoichiometric phosphorylation of substrates co-localized on the same protein scaffold.
p62, also known as SQSTM1, is a multi-domain signalling scaffold protein involved in numerous critical cellular functions such as autophagy, apoptosis and inflammation. Crucial interactions relevant to these functions are mediated by the N-terminal Phox and Bem1p (PB1) domain, which is divided into two interaction surfaces, one of predominantly acidic and one of basic character. Most known interaction partners, including atypical protein kinase C (aPKC), bind to the basic surface, and acidic-basic interactions at this interface also allow for p62 homopolymerisation. We identify here that the coupling of p62 to the cAMP signalling system is conferred by both the direct binding of cAMP degrading phosphodiesterase-4 (PDE4) to the acidic surface of the p62 PB1 domain and the phosphorylation of the basic surface of this domain by cAMP-dependent protein kinase (PKA). Such phosphorylation is a previously unknown means of regulating PB1 domain interaction partnerships by disrupting the interaction of p62 with basic surface binding partners, such as aPKCs, as well as p62 homopolymerisation. Thus, we uncover a new regulatory mechanism that connects cAMP signalling with the p62 multi-domain signalling scaffold and autophagy cargo receptor protein.