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Stress‐Induced Switch in Small Extracellular Vesicle Secretion: From Constitutive ‘Torn Bag Mechanism’ to Exocytosis

Lenzinger, Dorina and Lankovics, Lilla and Dudás, István and Bárkai, Tünde and Szász, Adrienn Zsófia and Balbisi, Mirjam and Wu, Anthony Yan‐Tang and Visnovitzné Dr Vukman, Krisztina and Fletcher, Kelsey Aine and Csomos, Attila and Mucsi, Zoltán and Bugyik, Edina and Cserép, Csaba and Dénes, Ádám and Bősze, Szilvia and Turiák, Lilla and Lai, Charles Pin‐Kuang and Buzás, Edit Irén and Visnovitz, Tamás (2026) Stress‐Induced Switch in Small Extracellular Vesicle Secretion: From Constitutive ‘Torn Bag Mechanism’ to Exocytosis. JOURNAL OF EXTRACELLULAR VESICLES, 15 (8). No.-e70345. ISSN 2001-3078

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Abstract

The biogenesis of small extracellular vesicles (sEVs) is only partially understood. Our recent findings provide evidence that a newly described sEV secretion pathway, the amphiectosome release followed by the sEV discharge by the ‘torn bag mechanism’ are present in all tested cell lines and mouse organs. Surprisingly, in in situ fixed steady‐state cells, transmission electron microscopy did not reveal sEV release via exocytosis of multivesicular endosomes (MVEs). In the current study, we extended our previous analysis to additional mouse organs and confirmed the presence of secreted amphiectosomes in all of them. Furthermore, we investigated which parameters influence the activation of the distinct sEV release mechanisms in HEK cells. Our results show that under stress conditions (such as Ca 2+ ionophore‐induced membrane stress or metabolic stress, induced by serum starvation), exocytosis of MVEs is activated, while this process is absent in steady‐state conditions. By silencing ATG5 (a key regulator of autophagy) and RAB27a (an essential small GTPase for MVE exocytosis), we selectively modulated these two mechanisms, respectively. Amphiectosome release depended on both autophagy and ATG5, while exocytosis of MVE was autophagy‐independent but RAB27a‐dependent. Our findings suggest that sEV release via the ‘torn bag mechanism’ is a general and essential secretion pathway in non‐stressed, steady‐state mammalian cells, while stress conditions induce the sEV release via MVE exocytosis.

Item Type: Article
Uncontrolled Keywords: amphiectosome, autophagy, exocytosis, exosome secretion, stress, ‘torn bag mechanism’, small extracellular vesicles
Subjects: Q Science / természettudomány > QH Natural history / természetrajz > QH426 Genetics / genetika, örökléstan
Q Science / természettudomány > QR Microbiology / mikrobiológia > QR180 Immunology / immunológia
R Medicine / orvostudomány > R1 Medicine (General) / orvostudomány általában
SWORD Depositor: MTMT SWORD
Depositing User: MTMT SWORD
Date Deposited: 15 Sep 2026 10:27
Last Modified: 15 Sep 2026 10:27
URI: https://real.mtak.hu/id/eprint/246302

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