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Co-immunoprecipitation Assay for Studying Functional Interactions Between Receptors and Enzymes
Published on: September 28, 2018
SHP-1 requires inhibitory co-receptors to down-modulate B cell antigen receptor-mediated phosphorylation of cellular
T Adachi1, J Wienands, C Wakabayashi
1Department of Immunology, Medical Research Institute, Tokyo Medical and Dental University, Tokyo 113-8510, Japan.
Abstract:
Signaling through the B cell antigen receptor (BCR) is negatively regulated by the SH2 domain-containing protein-tyrosine phosphatase SHP-1, which requires association with tyrosine-phosphorylated proteins for activation. Upon BCR ligation, SHP-1 has been shown to associate with the BCR, the cytoplasmic protein-tyrosine kinases Lyn and Syk, and the inhibitory co-receptors CD22 and CD72. How SHP-1 is activated by BCR ligation and regulates BCR signaling is, however, not fully understood. Here we demonstrate that, in the BCR-expressing myeloma line J558L mu 3, CD72 expression reduces the BCR ligation-induced phosphorylation of the BCR component Ig alpha/Ig beta and its cytoplasmic effectors Syk and SLP-65. Substrate phosphorylation was restored by expression of dominant negative mutants of SHP-1, whereas the SHP-1 mutants failed to enhance phosphorylation of the cellular substrates in the absence of CD72. This indicates that SHP-1 is efficiently activated by CD72 but not by other pathways in J558L mu m3 cells and that inhibition of SHP-1 specifically activated by CD72 reverses CD72-induced dephosphorylation of cellular substrates in these cells. Taken together, BCR-induced SHP-1 activation is likely to require inhibitory co-receptors such as CD72, and SHP-1 appears to mediate the negative regulatory effect of CD72 on BCR signaling by dephosphorylating Ig alpha/Ig beta and its downstream signaling molecules Syk and SLP-65.
Insights
The inhibitory co-receptor CD72 activates the phosphatase SHP-1, which then dephosphorylates key B cell receptor (BCR) signaling molecules. This mechanism explains how CD72 negatively regulates BCR signaling.
Area of Science:
- Immunology
- Cell Signaling
Background:
- B cell receptor (BCR) signaling is crucial for B cell function and is tightly regulated.
- SH2 domain-containing protein-tyrosine phosphatase 1 (SHP-1) is a key negative regulator of BCR signaling.
- The precise mechanisms of SHP-1 activation and its role in BCR regulation by co-receptors like CD72 are not fully understood.
Purpose of the Study:
- To investigate how CD72 activates SHP-1 and mediates negative regulation of BCR signaling.
- To elucidate the downstream targets of SHP-1 in the context of CD72-mediated BCR inhibition.
Main Methods:
- Utilized the J558L mu 3 myeloma cell line expressing BCR and CD72.
- Employed dominant-negative SHP-1 mutants to assess SHP-1's role in CD72-mediated signaling.
- Analyzed the phosphorylation status of BCR components (Ig alpha/Ig beta) and downstream effectors (Syk, SLP-65).
Main Results:
- CD72 expression significantly reduced BCR ligation-induced phosphorylation of Ig alpha/Ig beta, Syk, and SLP-65.
- Dominant-negative SHP-1 mutants restored substrate phosphorylation, indicating SHP-1's involvement.
- SHP-1 activation was dependent on CD72, as SHP-1 mutants did not enhance phosphorylation in the absence of CD72.
Conclusions:
- BCR-induced SHP-1 activation requires inhibitory co-receptors, specifically CD72.
- SHP-1 mediates the negative regulatory effect of CD72 on BCR signaling by dephosphorylating Ig alpha/Ig beta and downstream molecules Syk and SLP-65.
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