MARCO is the major binding receptor for unopsonized particles and bacteria on human alveolar macrophages

Mohamed S Arredouani1, Aiyappa Palecanda, Henry Koziel

  • 1Physiology Program, Harvard School of Public Health, Boston, MA 02115, USA.

Insights

Alveolar macrophages use the scavenger receptor MARCO to bind inhaled particles and bacteria. This study identified MARCO as the key receptor, crucial for lung defense against environmental threats.

Area of Science:

  • Immunology
  • Cell Biology
  • Pulmonary Medicine

Background:

  • Alveolar macrophages (AMs) are critical for clearing inhaled particles and pathogens from the lungs.
  • Identifying the specific receptors involved in particle binding by AMs is essential for understanding lung defense mechanisms.

Purpose of the Study:

  • To identify the primary receptor responsible for binding unopsonized particles and bacteria on human alveolar macrophages.
  • To characterize the role of this receptor in the innate immune response within the lung.

Main Methods:

  • Functional screening of hybridoma-derived monoclonal antibodies (mAbs) against human AMs.
  • Identification of the target antigen using immunolabeling, immunoprecipitation, and COS cell transfection assays.
  • Epitope mapping of the identified antibody on the scavenger receptor MARCO.

Main Results:

  • A mAb, PLK-1, was isolated that significantly inhibited the binding of particles (TiO2, latex beads) and bacteria (E. coli, S. aureus) to human AMs.
  • The target antigen for PLK-1 was identified as the human class A scavenger receptor, MARCO (macrophage receptor with collagenous structure).
  • PLK-1 specifically bound to MARCO expressed on transfected cells and immunoprecipitated a ~70 kDa protein from human AMs, confirming MARCO as the binding receptor.

Conclusions:

  • The scavenger receptor MARCO plays a dominant role in the binding of inhaled particles and pathogens by human alveolar macrophages.
  • MARCO is a key component of the innate immune defense system in the human lung against environmental exposures.
  • Targeting MARCO may offer therapeutic strategies for modulating lung immune responses to inhaled substances.

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