B cell receptor-stimulated mitochondrial phospholipase A2 activation and resultant disruption of mitochondrial membrane potential correlate with the induction of apoptosis in WEHI-231 B cells

J Immunol. 2001 Jan 1;166(1):137-47. doi: 10.4049/jimmunol.166.1.137.

Abstract

Cross-linking of the Ag receptors on the immature B cell lymphoma, WEHI-231, leads to growth arrest and apoptosis. We now show that although commitment to such B cell receptor (BCR)-mediated apoptosis correlates with mitochondrial phospholipase A(2) activation, disruption of mitochondrial function, and ATP depletion, it is executed independently of caspase activation. First, we demonstrate a pivotal role for mitochondrial function in determining B cell fate by showing up-regulation of cytosolic phospholipase A(2) expression, induction of mitochondrial phospholipase A(2) activity, arachidonic acid-mediated collapse of mitochondrial transmembrane inner potential (Delta psi(m)), and depletion of cellular ATP under conditions of apoptotic, but not proliferative, signaling via the BCR. Importantly, disruption of Delta psi(m), ATP depletion, and apoptosis can be prevented by rescue signals via CD40 or by Delta psi(m) stabilizers such as antimycin or oligomycin. Second, we show that commitment and postmitochondrial execution of BCR-mediated apoptosis are not dependent on caspase activation by demonstrating that such apoptotic signaling does not induce release of cytochrome c from the mitochondria or activation of effector caspases, as evidenced by poly(ADP-ribose) polymerase or Bcl-x(L) cleavage. Indeed, apoptotic signaling via the BCR in WEHI-231 B cells does not stimulate the activation of caspase-3 and, consistent with this, BCR-mediated disruption of Delta psi(m) and commitment to apoptosis take place in the presence of caspase inhibitors. In contrast, BCR signaling induces the postmitochondrial activation of cathepsin B, and resultant apoptosis is blocked by the cathepsin B inhibitor, (23,35)trans-epoxysuccinyl-L-leucylamindo-3-methylbutane ethyl ester (EST) suggesting a key role for this executioner protease in Ag receptor-driven apoptosis of WEHI-231 immature B cells.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Adenosine Triphosphate / antagonists & inhibitors
  • Adenosine Triphosphate / metabolism
  • Amino Acid Chloromethyl Ketones / pharmacology
  • Animals
  • Apoptosis / drug effects
  • Apoptosis / immunology*
  • B-Lymphocytes / enzymology*
  • B-Lymphocytes / metabolism
  • B-Lymphocytes / pathology
  • Caspase 3
  • Caspase Inhibitors
  • Caspases / metabolism
  • Cell Differentiation / drug effects
  • Cell Differentiation / immunology
  • Cysteine Proteinase Inhibitors / pharmacology
  • Cytochrome c Group / metabolism
  • Enzyme Activation / immunology
  • Growth Inhibitors / physiology
  • Humans
  • Intracellular Membranes / enzymology*
  • Intracellular Membranes / immunology
  • Intracellular Membranes / metabolism
  • Intracellular Membranes / pathology
  • Jurkat Cells
  • Ligands
  • Lymphoma, B-Cell
  • Membrane Potentials / immunology
  • Mice
  • Mitochondria / enzymology*
  • Mitochondria / immunology
  • Mitochondria / metabolism
  • Mitochondria / pathology
  • Phospholipases A / metabolism*
  • Phospholipases A2
  • Receptors, Antigen, B-Cell / immunology
  • Receptors, Antigen, B-Cell / metabolism
  • Receptors, Antigen, B-Cell / physiology*
  • Signal Transduction / immunology
  • Tumor Cells, Cultured

Substances

  • Amino Acid Chloromethyl Ketones
  • Caspase Inhibitors
  • Cysteine Proteinase Inhibitors
  • Cytochrome c Group
  • Growth Inhibitors
  • Ligands
  • Receptors, Antigen, B-Cell
  • benzyloxycarbonylvalyl-alanyl-aspartyl fluoromethyl ketone
  • Adenosine Triphosphate
  • Phospholipases A
  • Phospholipases A2
  • CASP3 protein, human
  • Casp3 protein, mouse
  • Caspase 3
  • Caspases