Abstract
Phagocytosis of microbes coated with opsonins such as the complement component C3bi is the key activity of neutrophils. However, the mechanism by which opsonins enhance the rate of phagocytosis by these cells is unknown and has been difficult to study, partly because of the problem of observing and quantifying the events associated with phagocytosis. In this study, C3bi-opsonized particles were presented to neutrophils with a micromanipulator, so that the events of binding, pseudopod cup formation, engulfment, and completion of phagocytosis were clearly defined and distinguished from those involved with chemotaxis. Using this approach in combination with simultaneous phase contrast and Ca(2+) imaging, the temporal relationship between changes in cytosolic free Ca(2+) concentration and phagocytosis were correlated. Here we show that whereas small, localized Ca(2+) changes occur at the site of particle attachment and cup formation as a result of store release, rapid engulfment of the particle required a global change in cytosolic free Ca(2+) which resulted from Ca(2+) influx. This latter rise in cytosolic free Ca(2+) concentration also liberated a fraction of beta2 integrin receptors which were initially immobile on the neutrophil surface, as demonstrable by both fluorescence recovery after laser bleaching and by visualization of localized beta2 integrin labelling. Inhibitors of calpain activation prevented both the Ca(2+)-induced liberation of beta2 integrin and the rapid stage of phagocytosis, despite the persistence of the global Ca(2+) signal. Therefore, we propose that Ca(2+) activation of calpain causes beta2 integrin liberation, and that this signal plays a key role in the acceleration of beta2 integrin-mediated phagocytosis.
MeSH Terms
CD11b Antigen/metabolism
CD18 Antigens/metabolism
Calcium/metabolism
Calcium Signaling/physiology
Calpain/antagonists & inhibitors,metabolism
Cell Size
Chelating Agents/metabolism
Complement C3b/metabolism
Cysteine Proteinase Inhibitors/metabolism
Enzyme Activation
Fluorescence Recovery After Photobleaching
Fluorescent Dyes/metabolism
Fura-2/metabolism
Humans
Neutrophils/cytology,physiology
Phagocytosis/physiology
Zymosan/metabolism
Chemicals
CD11b Antigen
CD18 Antigens
Chelating Agents
Cysteine Proteinase Inhibitors
Fluorescent Dyes
Complement C3b
Zymosan
Calpain
Calcium
Fura-2
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Dewitt Sharon
Neutrophil Signalling Group, University Department of Surgery, University of Wales College of Medicine, Cardiff CF14 4XN, United Kingdom.
Hallett Maurice B
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