Segregation of transferrin to a mildly acidic (pH 6.5) para-Golgi compartment in the recycling pathway

DJ Yamashiro, B Tycko, SR Fluss, FR Maxfield - Cell, 1984 - cell.com
DJ Yamashiro, B Tycko, SR Fluss, FR Maxfield
Cell, 1984cell.com
To study the intracellular sorting of internalized ligands and receptors, we examined the
pathways of two ligands: transferrin, which is recycled, and CQ-macroglobulin(cQM), which
is degraded. In CHO cells the two ligands rapidly segregate into different intracellular
compartments. Within 5 min fluoresceinlabeled transferrin (F-Tf) is found in a large round
juxtanuclear structure. Rhodamine-labeled a, M is found in a punctate pattern. Ultra-
structural localization studies demonstrate that colloidal gold-cYzM is found predominantly …
Summary
To study the intracellular sorting of internalized ligands and receptors, we examined the pathways of two ligands: transferrin, which is recycled, and CQ-macroglobulin(cQM), which is degraded. In CHO cells the two ligands rapidly segregate into different intracellular compartments. Within 5 min fluoresceinlabeled transferrin (F-Tf) is found in a large round juxtanuclear structure. Rhodamine-labeled a, M is found in a punctate pattern. Ultra-structural localization studies demonstrate that colloidal gold-cYzM is found predominantly in endocytic vesicles, while ferritin-transferrin is found in small vesicles and tubular structures in a region adjacent to the Golgi complex. Using image intensified fluorescence microscopy and digital image analysis, we determined that the F-Tf containing structure has a pH of 6.4 f 0.2, while endocytic vesicles containing F-a2M have a pH of 5.4 f 0.1. Our study defines a mildly acidic compartment, distinct from endocytic vesicles, that is involved in the recycling of internalized components back to the cell surface.
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