Exosomal cargos modulate autophagy in recipient cells via different signaling pathways
Mehdi Hassanpour, Aysa Rezabakhsh, Jafar Rezaie, Mohammad Nouri, Reza Rahbarghazi

TL;DR
This paper explores how exosomes and autophagy interact through shared pathways to maintain cell health and suggests this could lead to new treatments for lysosome-related disorders.
Contribution
The paper highlights a novel molecular crosstalk between exosome biogenesis and autophagy, emphasizing their shared pathways and mutual modulation.
Findings
Exosomes contain autophagic cargos that can induce autophagy in target cells.
Exosome biogenesis and autophagy share intertwined molecular pathways and crossbred vesicles called amphisomes.
The crosstalk between these processes helps maintain cellular homeostasis under stress.
Abstract
Vesicular system of mammalian cells is composed of two intracellular and extracellular vesicles systems, which contributes to the intra/intercellular communication and cellular homeostasis. These systems mediate transferring of biological molecules like proteins, nucleic acids, and lipids inside the cytoplasm, and between the cells. By the present study, authors describe molecular crosslink between exosome biogenesis and autophagy and take a certain focus on the autophagic cargos of exosomes and signaling pathways involved in exosome-induced autophagy in target cells and vice versa. Autophagy the generation of double-phospholipid vesicles, is a process that engulfs damaged proteins and organelles, share molecular similarity and function synergy with exosomes biogenesis for degradation or exocytosis of certain cargo. Exosomes, the smallest subtype of extracellular vesicles, originating…
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Taxonomy
TopicsExtracellular vesicles in disease · Autophagy in Disease and Therapy · Cancer-related molecular mechanisms research
