A system for reconstructing B cell antigen receptor signaling in the mouse myeloma J558L cell line

Satoru Harumiya1, Aya Yoshino, Koji Hayashizaki

  • 1Department of Cell signaling, Graduate School of Medical and Dental Sciences, Tokyo Medical and Dental University, Tokyo, Japan.

Insights

Researchers developed a novel synthetic biology system to reconstruct B cell antigen receptor (BCR) signaling. This system allows for comprehensive analysis of BCR signaling pathways and identification of novel regulatory proteins.

Area of Science:

  • Immunology
  • Synthetic Biology
  • Cell Signaling

Background:

  • B cell antigen receptor (BCR) signaling is crucial for B cell function and is regulated by cell surface receptors like CD19 and CD45.
  • Traditional gene targeting methods have limitations for simultaneously analyzing multiple signaling molecules.
  • Synthetic biology offers a flexible approach for dissecting complex cellular signaling pathways.

Purpose of the Study:

  • To develop and validate a novel system for reconstructing and analyzing BCR signaling using synthetic biology.
  • To investigate the roles of CD19 and CD45 in BCR signaling kinetics.
  • To identify novel proteins involved in BCR signaling.

Main Methods:

  • Reconstruction of BCR signaling in the J558L myeloma cell line using the Ca(2+) indicator YC3.60.
  • Co-expression of CD19 and CD45 in the J558Lμv11 cell line to monitor BCR-induced Ca(2+) mobilization.
  • Proteomic analysis of tyrosine-phosphorylated proteins following antigen stimulation in the reconstituted system.

Main Results:

  • The J558Lμv11 cell system successfully monitored BCR-induced Ca(2+) mobilization.
  • CD19 and CD45 expression modulated BCR signaling kinetics differently.
  • Proteomic analysis identified over 100 BCR-induced tyrosine-phosphorylated proteins, including the novel non-receptor tyrosine kinase Fer, with similarities to endogenous B cells.

Conclusions:

  • The J558L cell-based reconstruction system is a valid and powerful tool for comprehensive investigation of BCR signaling.
  • This system facilitates the discovery of novel components and regulatory mechanisms within BCR signaling pathways.
  • The findings provide new insights into the complex regulation of B cell activation and function.