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SH2D1A polyclonal Antibody | BS60496

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SKU:
BW-BS60496
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NULL366.00 - NULL549.00

Description

SH2D1A polyclonal Antibody | BS60496 | Gentaur UK, US & Europe Distribution

Host: Rabbit

Reactivity: Human,Mouse,Rat

Application: WB

Application Range: WB: 1:500~1:1000

Background: SH2D1A, also SH2 domain protein 1A, SAP and CD150/SLAM (signaling lymphocyte activation molecule) -associated protein, influences signaling pathways involving SLAM molecules at the interface between T and B cells. SH2D1A modulates SLAM by blocking the recruitment of tyrosine phosphatase SHP2 to the phosphorylated cytoplasmic domain of SLAM. SLAM activation mediates expansion of activated T cells during immune responses, induces production of interferon-© and changes the functional profile of subsets of T cells. SH2D1A is a hydrophilic, 128 amino acid protein that is 96% homologous to the mouse protein in both SH2 and tail domains. SH2D1A is present in all major subsets of T cells, including CD4+, CD45RO+, CD45RA+ and CD8+, but not in B cells. SH2D1A can interact via an SH2 domain with a motif (TIYXXV) present in the cytoplasmic tail of cell-surface receptors SLAM (CD150), CD84, CD229 (LY9) and CD244 (2B4) .

Storage & Stability: Store at 4°C short term. Aliquot and store at -20°C long term. Avoid freeze-thaw cycles.

Specificity: SH2D1A polyclonal Antibody detects endogenous levels of SH2D1A protein.

Molecular Weight: ~ 14 kDa

Note: For research use only, not for use in diagnostic procedure.

Alternative Names: SH2 domain-containing protein 1A Alternative name (s) : Duncan disease SH2-protein Signaling lymphocytic activation molecule-associated protein Short name: SLAM-associated protein T-cell signal transduction molecule SAP Gene namesi Name:SH2D1A; DSHP; SAP

Immunogen: A synthetic peptide corresponding to residues in Human SH2D1A.

Conjugate: Unconjugated

Modification: Unmodification

Purification & Purity: The Antibody was affinity-purified from rabbit antiserum by affinity-chromatography using epitope-specific immunogen and the purity is > 95% (by SDS-PAGE) .

Pathway:

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