Binding of cytoplasmic proteins to the CD19 intracellular domain is high affinity, competitive, and multimeric

Stephen R Brooks1, Perry M Kirkham, Larry Freeberg

  • 1Department of Microbiology, University of Alabama, 701 South 19th Street, Birmingham, AL 35294, USA.

Insights

CD19 directly binds multiple signaling proteins via its cytoplasmic domain. These interactions are high-affinity, multimeric, and competitive, revealing CD19

Area of Science:

  • Immunology
  • Molecular Biology
  • Cell Signaling

Background:

  • CD19 is essential for B cell development, antibody responses, and B cell memory.
  • CD19 signaling is crucial for B cell physiology.
  • The direct interactions between CD19 and its associated cytoplasmic proteins were previously unknown.

Purpose of the Study:

  • To investigate the direct binding of cytoplasmic signaling proteins to CD19.
  • To determine the binding affinities and stoichiometry of these interactions.
  • To elucidate the nature of CD19-mediated signaling complex formation.

Main Methods:

  • Utilized purified recombinant proteins for binding assays.
  • Employed surface plasmon resonance (Biacore) for affinity measurements.
  • Conducted competition experiments to analyze binding specificities.

Main Results:

  • Signaling proteins (Vav, p85, Grb2) bind CD19 directly via Src homology 2 (SH2) domains with nanomolar affinities.
  • Lyn and phospholipase Cgamma2 (PLCgamma2) also bind CD19, though not fitting simple 1:1 models.
  • Binding is multimeric, high-affinity, and competitive, with distinct SH2 domains binding to different CD19 tyrosines.

Conclusions:

  • CD19 forms a multimeric signaling complex with high-affinity interactions.
  • Even in vivo nonessential tyrosines on CD19 are functional for protein binding.
  • CD19's cytoplasmic domain orchestrates a complex signaling network crucial for B cell function.

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