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CRLF2/TSLPR Polyclonal

Product group: Primary
Monoclonal/ Polyclonal: Monoclonal
Clone: SPM615
Host: Rabbit
Isotype: IgG
Application: ELISA, Immunofluorescence (IF), Immunohistochemistry (IHC)
Application notes: 10-100
Conjugation Type: Unconjugated
Reactivity: Human
General notes: Localization: membrane, secreted.
Buffer: citrate pH6.0 or EDTA pH8.0
UNSPSC code: 12352203

Thymic stromal lymphopoietin (TSLP) has recently been identified as an important factor capable of driving dendritic cell maturation and activation. It is involved in the positive selection of regulatory T cells, maintenance of peripheral CD4+ T cell homeostasis and the induction of CD4+ T cell-mediated allergic reaction. TSLP is also capable of supporting the growth of fetal liver and adult B cell progenitors and their differentiation to the IgM-positive stage of B cell development. Its receptor TSLP-R will bind TSLP in a low-affinity fashion in transfected cells; co-transfection with IL-7R-alpha cDNA results in high-affinity binding and a functional heteromeric complex. This heteromeric receptor requires stat5 for TSLP-mediated signal transduction and is inhibited by SOCS-1. Despite its predicted molecular weight, TSLP-R often migrates at a higher molecular weight in SDS-PAGE. (Shipping Cost: €200.00)

CRLF2/TSLPR Polyclonal

Thymic stromal lymphopoietin (TSLP) has recently been identified as an important factor capable of driving dendritic cell maturation and activation. It is involved in the positive selection of regulatory T cells, maintenance of peripheral CD4+ T cell homeostasis and the induction of CD4+ T cell-mediated allergic reaction. TSLP is also capable of supporting the growth of fetal liver and adult B cell progenitors and their differentiation to the IgM-positive stage of B cell development. Its receptor TSLP-R will bind TSLP in a low-affinity fashion in transfected cells; co-transfection with IL-7R-alpha cDNA results in high-affinity binding and a functional heteromeric complex. This heteromeric receptor requires stat5 for TSLP-mediated signal transduction and is inhibited by SOCS-1. Despite its predicted molecular weight, TSLP-R often migrates at a higher molecular weight in SDS-PAGE.