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Updated: May 9, 2026

"Phagosome Closure Assay" to Visualize Phagosome Formation in Three Dimensions Using Total Internal Reflection Fluorescent Microscopy (TIRFM)
Published on: August 26, 2016
The recruitment of p47(phox) and Rac2G12V at the phagosome is transient and phosphatidylserine dependent
Marie Cécile Faure1, Jean-Claude Sulpice, Maud Delattre
1Univ. Paris-Sud, Orsay, F-91405, France; INSERM UMRS757, Orsay, F-91405, France; Life Sciences Research Unit, University of Luxembourg, Luxembourg, L-1511, Luxembourg.
Background Information:
During phagocytosis, neutrophils internalise pathogens in a phagosome and produce reactive oxygen species (ROS) by the NADPH oxidase to kill the pathogen. The cytosolic NADPH oxidase subunits p40(phox), p47(phox), p67(phox) and Rac2 translocate to the phagosomal membrane to participate in enzyme activation. The kinetics of this recruitment and the underlying signalling pathways are only partially understood. Anionic phospholipids, phosphatidylserine (PS) and phosphoinositides (PPI) provide an important attachment site for numerous proteins, including several oxidase subunits.
Results:
We investigated the kinetics of p47(phox) and Rac2 phagosomal membrane recruitment. Both subunits are known to interact with anionic phospholipids; we therefore addressed the role of PS in this recruitment. Phagosomal accumulation of p47(phox) and Rac2 tagged with fluorescent proteins was analysed by videomicroscopy. We used the C2 domain of lactadherin (lactC2) that interacts strongly and specifically with PS to monitor intracellular PS localisation and to decrease PS accessibility. During phagocytosis of opsonised zymosan, p47(phox) and constitutively active Rac2G12V briefly translocated to the phagosomal membrane, whereas ROS production continued for a longer period. However, in the presence of lactC2, Rac2G12V recruitment was inhibited and the kinetics of p47(phox) recruitment and detachment were delayed. A reduced phagosomal ROS production was also observed during the first 7 min following the phagosome closure.
Conclusions:
These results suggest that p47(phox) and Rac2 accumulate only transiently at the phagosome at the onset of NADPH activity and detach from the phagosome before the end of ROS production. Furthermore, lactC2, by masking PS, interfered with the phagosomal recruitment of p47(phox) and Rac2 and disturbed NADPH oxidase activity. Thus, PS appears as a modulator of NADPH oxidase activation.
Insights
Neutrophil phagocytosis involves NADPH oxidase activation, where p47(phox) and Rac2 proteins transiently bind to the phagosome. Phosphatidylserine (PS) binding influences this recruitment and modulates NADPH oxidase activity.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- Neutrophils internalize pathogens via phagocytosis, utilizing NADPH oxidase to produce reactive oxygen species (ROS) for pathogen killing.
- Activation of NADPH oxidase requires the translocation of cytosolic subunits, including p47(phox) and Rac2, to the phagosomal membrane.
- Anionic phospholipids like phosphatidylserine (PS) serve as docking sites for these oxidase subunits, but their precise role in recruitment kinetics is unclear.
Purpose of the Study:
- To investigate the kinetics of p47(phox) and Rac2 recruitment to the phagosomal membrane during phagocytosis.
- To elucidate the role of phosphatidylserine (PS) in mediating the recruitment and activation of NADPH oxidase subunits.
Main Methods:
- Videomicroscopy was used to analyze the phagosomal membrane recruitment of fluorescently tagged p47(phox) and Rac2.
- The C2 domain of lactadherin (lactC2) was employed to monitor PS localization and accessibility, and to inhibit PS binding.
- Phagocytosis of opsonized zymosan particles was used as the model system.
Main Results:
- p47(phox) and Rac2 transiently accumulated at the phagosome during early phagocytosis, preceding sustained ROS production.
- Inhibition of PS binding by lactC2 delayed p47(phox) and Rac2 recruitment and detachment kinetics.
- Reduced ROS production was observed during the initial 7 minutes post-phagosome closure when PS accessibility was reduced.
Conclusions:
- p47(phox) and Rac2 exhibit transient phagosomal localization at the onset of NADPH oxidase activity, detaching before ROS production ceases.
- Phosphatidylserine (PS) acts as a crucial modulator of NADPH oxidase activation by influencing the recruitment dynamics of p47(phox) and Rac2.
- Interference with PS binding by lactC2 impairs NADPH oxidase function, highlighting PS's regulatory role.
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