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XML generation date: 2024-09-20 06:21:18.759
Product last modified at: 2024-09-19T22:13:02.328Z
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PDP - Template Name: ELISA Kit
PDP - Template ID: *******bd382c2

PathScan® RP Phospho-LAT (Tyr220) Sandwich ELISA Kit #7936

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  • ELISA

    Supporting Data

    REACTIVITY H
    Application Key:
    • ELISA-ELISA 
    Species Cross-Reactivity Key:
    • H-Human 

    Product Information

    Product Description

    The rapid protocol (RP) PathScan® RP Phospho-LAT (Tyr220) Sandwich ELISA Kit is a solid phase sandwich enzyme-linked immunosorbent assay (ELISA) that detects endogenous levels of phospho-LAT (Tyr220) in a reduced assay time of 1.5 hours. Incubation of cell lysate and detection antibody on the capture antibody coated microwell plate forms a sandwich with LAT protein phosphorylated at Tyr220 in a single step. The plate is then extensively washed and TMB reagent is added for signal development. The magnitude of absorbance for the developed color is proportional to the quantity of LAT protein phosphorylated at Tyr220. Learn more about all of your ELISA kit options here.

    *Antibodies in this kit are custom formulations specific to kit.

    Protocol

    Specificity / Sensitivity

    The PathScan® RP Phospho-LAT (Tyr220) Sandwich ELISA Kit #7936 detects endogenous levels of phospho-LAT when phosphorylated at Tyr191. The kit sensitivity is shown in Figure 1. This kit detects proteins from the indicated species, as determined through in-house testing, but may also detect homologous proteins from other species.


    Species Reactivity:

    Human

    Background

    LAT, a transmembrane adaptor protein expressed in T, NK, and mast cells, is an important mediator for T cell receptor (TCR) signaling (1). Upon TCR engagement, activated Zap-70 phosphorylates LAT at multiple conserved tyrosine residues within SH2 binding motifs, exposing these motifs as the docking sites for downstream signaling targets (2,3). The phosphorylation of LAT at Tyr171 and Tyr220 enables the binding of Grb2, Gads/SLP-76, PLCγ1, and PI3 kinase through their SH2 domain and translocates them to the membrane. This process eventually leads to activation of the corresponding signaling pathways (1-4).
    For Research Use Only. Not For Use In Diagnostic Procedures.
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