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Home >> Antibodies >> PICALM Antibody / Phosphatidylinositol binding clathrin assembly protein

PICALM Antibody / Phosphatidylinositol binding clathrin assembly protein [clone 32P30] (FY12681)

  Catalog No Formulation Size Price (USD)  
Image FY12681 Rabbit IgG in phosphate buffered saline, pH 7.4, 150mM NaCl, 0.02% sodium azide and 50% glycerol, 0.4-0.5mg/ml BSA 100 ul 439
Microvalidated Recrabbitmono
Bulk quote request
Availability 2-3 weeks
Species Reactivity Human
Format Liquid
Clonality Recombinant Rabbit Monoclonal
Isotype Rabbit IgG
Clone Name 32P30
Purity Affinity-chromatography
Buffer Rabbit IgG in phosphate buffered saline, pH 7.4, 150mM NaCl, 0.02% sodium azide and 50% glycerol, 0.4-0.5mg/ml BSA.
UniProt Q13492
Applications Western Blot : 1:500-1:2000
Immunohistochemistry : 1:50-1:200
Immunocytochemistry/Immunofluorescence : 1:50-1:200
Limitations This PICALM antibody is available for research use only.
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Description

PICALM antibody detects phosphatidylinositol binding clathrin assembly protein, a protein encoded by the PICALM gene. PICALM is a clathrin associated protein that regulates endocytosis by linking clathrin to membranes containing phosphatidylinositol lipids. It contributes to the formation of clathrin coated vesicles, trafficking of receptors, and synaptic vesicle recycling. PICALM is widely expressed in neuronal, hematopoietic, and epithelial tissues, reflecting its central role in membrane transport and cellular communication.

PICALM antibody is widely applied in neuroscience, immunology, and oncology. In neurons, PICALM participates in synaptic vesicle endocytosis, supporting neurotransmission. In hematopoietic cells, it regulates receptor mediated endocytosis and antigen presentation. Genetic variants in PICALM are strongly associated with Alzheimer disease risk, making it a focus of neurodegenerative research. By detecting PICALM, researchers can investigate how clathrin mediated endocytosis impacts diverse physiological and pathological processes.

The antibody is validated for western blotting, immunohistochemistry, and immunofluorescence. Western blotting with PICALM antibody detects protein expression in brain and immune cell lysates. Immunohistochemistry maps distribution in neuronal tissues and lymphoid organs. Immunofluorescence highlights punctate localization at clathrin coated pits and endosomes. These assays allow detailed analysis of PICALM function in vesicular trafficking.

PICALM is also important in oncology. Chromosomal translocations involving PICALM, such as PICALM AF10 fusions, are associated with acute leukemias. These fusions alter transcriptional programs and contribute to leukemogenesis. Detection of PICALM with antibody based methods supports research into oncogenic mechanisms and potential diagnostic strategies. In solid tumors, altered PICALM expression affects endocytosis of growth factor receptors and signaling pathways, influencing tumor progression.

In Alzheimer disease, genome wide association studies have identified PICALM variants as risk factors. Mechanistically, PICALM regulates endocytosis of amyloid precursor protein and clearance of amyloid beta. Altered PICALM expression affects synaptic function and neuronal survival, linking endocytosis defects to neurodegeneration. By applying PICALM antibody, scientists can explore these mechanisms and evaluate therapeutic strategies targeting endocytic pathways.

PICALM also contributes to immune regulation. In antigen presenting cells, it modulates receptor trafficking and signaling. Its role in membrane dynamics extends to viral infections, where viruses exploit clathrin mediated endocytosis for entry. PICALM antibody therefore provides a tool for studying both host defense and viral pathogenesis.

Beyond its cellular functions, PICALM has structural features that enable its roles in trafficking. It contains phosphatidylinositol binding domains and clathrin binding motifs, which link membrane lipids to clathrin coat assembly. It also interacts with adaptor proteins and other regulators of endocytosis. These interactions highlight the versatility of PICALM as a scaffold protein coordinating vesicle formation.

PICALM antibody from NSJ Bioreagents provides dependable specificity for detecting this multifunctional trafficking protein. Its performance across diverse applications supports research in neuroscience, cancer biology, immunology, and translational medicine.

Application Notes

Optimal dilution of the PICALM antibody should be determined by the researcher.

Immunogen

A synthesized peptide derived from human PICALM was used as the immunogen for the PICALM antibody.

Storage

Store the PICALM antibody at -20oC.

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