Extracellular accumulation of potently microbicidal bactericidal/permeability-increasing protein and p15s in an

Y Weinrauch1, A Foreman, C Shu

  • 1Department of Microbiology, New York University School of Medicine, New York 10016, USA.

Insights

Host defense involves extracellular antibacterial proteins from neutrophils (PMN). Ascitic fluid (AF) from rabbits showed potent antimicrobial activity against bacteria, identifying bactericidal/permeability-increasing protein (BPI) and p15s as key components.

Area of Science:

  • Immunology
  • Microbiology
  • Host-Pathogen Interactions

Background:

  • The extracellular role of neutrophil (PMN) granule-associated antibacterial proteins in host defense is not fully understood.
  • Inflammatory exudates contain high concentrations of PMNs and their antimicrobial components.

Purpose of the Study:

  • To investigate the extracellular antibacterial activity of cell-free ascitic fluid (AF) from sterile inflammatory rabbit exudates.
  • To identify the specific proteins responsible for the observed antimicrobial effects.

Main Methods:

  • Collected cell-free ascitic fluid (AF) from glycogen-induced rabbit peritoneal exudates.
  • Assessed antibacterial activity of AF against Gram-negative and Gram-positive bacteria.
  • Utilized neutralizing antibodies against bactericidal/permeability-increasing protein (BPI) and purified BPI and p15 proteins.

Main Results:

  • AF demonstrated potent activity against serum-resistant Gram-negative and Gram-positive bacteria, unlike plasma.
  • Antibacterial activity in AF increased with PMN influx, peaking within 12 hours.
  • Bactericidal/permeability-increasing protein (BPI) and 15 kDa PMN proteins (p15s) were identified as key synergistic components responsible for AF's potent microbicidal activity against encapsulated *E. coli*.

Conclusions:

  • This study establishes an extracellular function for endogenous BPI in inflammatory exudates.
  • BPI and p15s form a potent microbicidal system effective against Gram-negative bacteria resistant to plasma proteins and phagocytes.

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