FB2024_03 , released June 25, 2024
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Citation
Biton, T., Scher, N., Carmon, S., Elbaz-Alon, Y., Schejter, E.D., Shilo, B.Z., Avinoam, O. (2023). Fusion pore dynamics of large secretory vesicles define a distinct mechanism of exocytosis.  J. Cell Biol. 222(11): e202302112.
FlyBase ID
FBrf0257597
Publication Type
Research paper
Abstract
Exocrine cells utilize large secretory vesicles (LSVs) up to 10 μm in diameter. LSVs fuse with the apical surface, often recruiting actomyosin to extrude their content through dynamic fusion pores. The molecular mechanism regulating pore dynamics remains largely uncharacterized. We observe that the fusion pores of LSVs in the Drosophila larval salivary glands expand, stabilize, and constrict. Arp2/3 is essential for pore expansion and stabilization, while myosin II is essential for pore constriction. We identify several Bin-Amphiphysin-Rvs (BAR) homology domain proteins that regulate fusion pore expansion and stabilization. We show that the I-BAR protein Missing-in-Metastasis (MIM) localizes to the fusion site and is essential for pore expansion and stabilization. The MIM I-BAR domain is essential but not sufficient for localization and function. We conclude that MIM acts in concert with actin, myosin II, and additional BAR-domain proteins to control fusion pore dynamics, mediating a distinct mode of exocytosis, which facilitates actomyosin-dependent content release that maintains apical membrane homeostasis during secretion.
PubMed ID
PubMed Central ID
PMC10501449 (PMC) (EuropePMC)
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Secondary IDs
    Language of Publication
    English
    Additional Languages of Abstract
    Parent Publication
    Publication Type
    Journal
    Abbreviation
    J. Cell Biol.
    Title
    Journal of Cell Biology
    Publication Year
    1966-
    ISBN/ISSN
    0021-9525
    Data From Reference
    Aberrations (1)
    Alleles (41)
    Genes (17)
    Natural transposons (1)
    Insertions (10)
    Experimental Tools (3)
    Transgenic Constructs (39)