AI Article Synopsis

  • The study investigates the binding interaction between cPLA2 and p47phox, revealing that p47phox is necessary for anchoring cPLA2 to NADPH oxidase on neutrophil membranes.
  • The interactions were analyzed using various experimental techniques, confirming that the cPLA2-C2 and p47phox-PX domains specifically form a stable complex.
  • Mutations in these domains were tested, revealing specific residues crucial for their interaction, particularly identifying Ile67 in cPLA2 as a key player in this binding process.

Article Abstract

We have previously demonstrated a physical interaction between cytosolic phospholipase A2alpha (cPLA2) and the assembled NADPH oxidase on plasma membranes following neutrophil stimulation. The aim of the present study was to define the exact binding sites between these two enzymes. Here we show, based on blot overlay experiments, Förster resonance energy transfer analysis and studies in neutrophils from patients with chronic granulomatous disease deficient in p67phox or p47phox, that cPLA2 specifically binds to p47phox and that p47phox is sufficient to anchor cPLA2 to the assembled oxidase on the plasma membranes upon stimulation. Blot overlay and affinity binding experiments using subfragments of cPLA2 and p47phox demonstrated that the cPLA2-C2 domain and the p47phox-PX domain interact to form a complex that is resistant to high salt. Computational docking was used to identify hydrophobic peptides within these two domains that inhibited the association between the two enzymes and NADPH oxidase activity in electro-permeabilized neutrophils. These results were used in new docking computations that produced an interaction model. Based on this model, cPLA2-C2 domain mutations were designed to explore its interaction p47phox in neutrophil lysates. The triple mutant F35A/M38A/L39A of the cPLA2-C2 domain caused a slight inhibition of the affinity binding to p47phox, whereas the single mutant I67A was highly effective. The double mutant M59A/H115A of the p47phox-PX domain caused a significant inhibition of the affinity binding to cPLA2. Thus, Ile67 of the cPLA2-C2 domain is identified as a critical, centrally positioned residue in a hydrophobic interaction in the p47phox-PX domain.

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http://dx.doi.org/10.1074/jbc.M804674200DOI Listing

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Article Synopsis
  • The study investigates the binding interaction between cPLA2 and p47phox, revealing that p47phox is necessary for anchoring cPLA2 to NADPH oxidase on neutrophil membranes.
  • The interactions were analyzed using various experimental techniques, confirming that the cPLA2-C2 and p47phox-PX domains specifically form a stable complex.
  • Mutations in these domains were tested, revealing specific residues crucial for their interaction, particularly identifying Ile67 in cPLA2 as a key player in this binding process.
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The p47phox PX domain: two heads are better than one!

Structure

October 2002

Center for Cancer Research, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

The recent X-ray structure of the PX domain of p47phox, a critical subunit of the NADPH oxidase, unexpectedly revealed the presence of two distinct lipid binding pockets within this single modular domain. This unusual feature allows the p47phox PX domain to integrate signal transduction events emerging from two different lipid signaling pathways.

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The Phox homology (PX) domain has recently been reported to bind to phosphoinositides, and some PX domains can localize to endosomes in vivo. Here we show data to support the conclusion that the p40(phox) PX domain binds to phosphatidylinositol 3-phosphate specifically in vitro and localizes to endosomes in intact cells. In addition, its Y59A/L65Q mutant, which has decreased affinity for phosphatidylinositol 3-phosphate in vitro, fails to target EGFP-p40-PX to endosomes.

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