Human GAP43 ELISA Kit
Human GAP43 ELISA Kit
- Recombinant
- SimpleStep
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Human GAP43 ELISA Kit is a single-wash 90-min Simplestep used to quantify Human GAP43 with a sensitivity of 27.0 pg/ml. The assay uses a simple mix-wash-read protocol with just one incubation and one wash step.
- Colorimetric Sandwich ELISA - 450 nm readout : works on any standard plate reader
- Design your own immunoassay: we also offer the conjugation-ready antibody pair
別名を表示する
Neuromodulin, Axonal membrane protein GAP-43, Growth-associated protein 43, Neural phosphoprotein B-50, pp46, GAP43
- sELISA
Supplier Data
Sandwich ELISA - Human GAP43 ELISA Kit (AB282867)
Example of Human GAP43 standard curve in 1X Cell Extraction Buffer SSW. Background-subtracted data values (mean +/- SD) are graphed.
- sELISA
Supplier Data
Sandwich ELISA - Human GAP43 ELISA Kit (AB282867)
Interpolated concentration of native GAP43 was measured in duplicate at different sample concentrations. Undiluted samples are 10 µg/mL SH-SY5Y cell extract and 1 µg/mL human brain cortex tissue extract. The interpolated dilution factor corrected values are plotted (mean +/- SD, n=2). Sample dilutions are made in 1X Cell Extraction Buffer SSW.
Reactivity data
製品の詳細
Human GAP43 ELISA kit (ab282867) is a single-wash 90 min sandwich ELISA designed for the quantitative measurement of Human GAP43 protein in human tissue extract samples. It uses our proprietary SimpleStep ELISA® technology. Quantitate Human GAP43 with 27.0 pg/mL sensitivity.
SimpleStep ELISA® technology employs capture antibodies conjugated to an affinity tag that is recognized by the monoclonal antibody used to coat our SimpleStep ELISA® plates. This approach to sandwich ELISA allows the formation of the antibody-analyte sandwich complex in a single step, significantly reducing assay time. See the SimpleStep ELISA® protocol summary in the image section for further details. Our SimpleStep ELISA® technology provides several benefits:
-Single-wash protocol reduces assay time to 90 minutes or less
-High sensitivity, specificity and reproducibility from superior antibodies
-Fully validated in biological samples
-96-wells plate breakable into 12 x 8 wells strips
A 384-well SimpleStep ELISA® microplate (ab203359) is available to use as an alternative to the 96-well microplate provided with SimpleStep ELISA® kits.
Axonal membrane protein Growth associated protein (GAP43), also known as Neuromodulin, Neural phosphoprotein B-50, and pp46, is a protein encoded by the gene GAP43. GAP43 is a nervous system-specific protein that is bound to the neuronal membrane of by dual palmitoylation sequences. The protein is associated with nerve growth and is a major component of the motile "growth cones" that form the tips of elongating axons. GAP43 is phosphorylate by a protein kinase C, which is correlate with some forms of synaptic plasticity.
REACH authorisation
Abcam has not and does not intend to apply for the REACH Authorisation of customers' uses of products that contain European Authorisation list (Annex XIV) substances.
It is the responsibility of our customers to check the necessity of application of REACH Authorisation, and any other relevant authorisations, for their intended uses.
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補足情報
This supplementary information is collated from multiple sources and compiled automatically.
Biological function summary
GAP43 plays an important role in neurite outgrowth and synaptic plasticity. It functions as an important mediator of signal transduction in neurons. GAP43 does not act alone but integrates into a network of signaling pathways that guide axonal elongation and branching. It works closely with cytoskeletal elements influencing the structural dynamics needed for effective neuronal response and adaptation.
Pathways
GAP43 is vital in the regulation of the protein kinase C pathway and the cAMP pathway both essential for neuronal growth and differentiation. It closely interacts with proteins such as calmodulin which binds to GAP43 and impacts its function in those pathways. These interactions highlight its role in the modulation of neuronal growth and synaptic plasticity making it essential for neurons' response to environmental signals.
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