Ca 2+ -dependent focal exocytosis of golgi-derived vesicles helps phagocytic uptake in macrophages

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Abstract

The role of Golgi apparatus during phagocytic uptake by macrophages has been ruled out in the past. Notably, all such reports were limited to Fc receptor-mediated phagocytosis. Here, we unravel a highly devolved mechanism for recruitment of Golgi-derived secretory vesicles during phagosome biogenesis, which was important for uptake of most cargos, except the IgG-coated ones. We report recruitment of mannosidase-IIpositive Golgi-derived vesicles during uptake of diverse targets, including latex beads, Escherichia coli, Salmonella typhimurium, and Mycobacterium tuberculosis in human and mouse macrophages. The recruitment of mannosidase-II vesicles was an early event mediated by focal exocytosis and coincided with the recruitment of transferrin receptor, VAMP3, and dynamin-2. Brefeldin A treatment inhibited mannosidase-II recruitment and phagocytic uptake of serum-coated or-uncoated latex beads and E. coli. However, consistent with previous studies, brefeldin A treatment did not affect uptake of IgG-coated latex beads. Mechanistically, recruitment of mannosidase-II vesicles during phagocytic uptake required Ca 2+ from both extra-and intracellular sources apart from PI3K, microtubules, and dynamin-2. Extracellular Ca 2+ via voltagegated Ca 2+ channels established a Ca 2+ -dependent local phosphatidylinositol 1,4,5-trisphosphate gradient, which guides the focal movement of Golgi-derived vesicles to the site of uptake. We confirmed Golgi-derived vesicles recruited during phagocytosis were secretory vesicles as their recruitment was sensitive to depletion of VAMP2 or NCS1, whereas recruitment of the recycling endosome marker VAMP3 was unaffected. Depletion of both VAMP2 and NCS1 individually resulted in the reduced uptake by macrophages. Together, the study provides a previously unprecedented role of Golgiderived secretory vesicles in phagocytic uptake, the key innate defense function.

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Vashi, N., Andrabi, S. B. A., Ghanwat, S., Suar, M., & Kumar, D. (2017). Ca 2+ -dependent focal exocytosis of golgi-derived vesicles helps phagocytic uptake in macrophages. Journal of Biological Chemistry, 292(13), 5144–5165. https://doi.org/10.1074/jbc.M116.743047

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