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◆ The Journal of biological chemistry2026-08-05

AP-3 complex sorts preferential cargo to govern dense core vesicle function in neuroendocrine cells.

Shashank Saxena, Chandramouli Mukherjee, Vinayak Ghosh, Badal Singh Chauhan, Bhavani Shankar Sahu

原始摘要(英文原文)· Original abstract
This study reveals the multifaceted role of the adaptor protein (AP-3) complex in the function of dense-core vesicles (DCVs). Despite numerous studies, an existing lack of knowledge concerning the role of AP-3 in DCV function prompted us to delve deeper. Biochemical analysis revealed compromised DCV exocytosis in AP-3 depleted PC12 cells. AP-3 depletion altered the size and positioning of DCVs. Golgi defects and RUSH (retention using selective hook) substantiated the role of AP-3 in trans-Golgi DCV sorting. Proteomics analysis of cellular fractions revealed that AP-3 depleted cells showed the loss of specific DCV proteins, accompanied by mislocalization and rerouting to lysosomes. Bioinformatics and proximity ligation assays revealed interactions of mislocalized proteins with the AP-3 subunit. These findings corroborated functional defects in granule maturation, release modes, zinc, and neurotransmitter mobilization. Our study demonstrates multifaceted roles of the AP-3 complex in governing DCV function, thereby enabling us to understand neurotransmitter and neuropeptide release.
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AP-3 complex sorts preferential cargo to govern dense core vesicle function in neuroendocrine cells. — 科研速览 Science Skim