RRC ID 78343
著者 Szenci G, Glatz G, Takáts S, Juhász G.
タイトル The Ykt6-Snap29-Syx13 SNARE complex promotes crinophagy via secretory granule fusion with Lamp1 carrier vesicles.
ジャーナル Sci Rep
Abstract In the Drosophila larval salivary gland, developmentally programmed fusions between lysosomes and secretory granules (SGs) and their subsequent acidification promote the maturation of SGs that are secreted shortly before puparium formation. Subsequently, ongoing fusions between non-secreted SGs and lysosomes give rise to degradative crinosomes, where the superfluous secretory material is degraded. Lysosomal fusions control both the quality and quantity of SGs, however, its molecular mechanism is incompletely characterized. Here we identify the R-SNARE Ykt6 as a novel regulator of crinosome formation, but not the acidification of maturing SGs. We show that Ykt6 localizes to Lamp1+ carrier vesicles, and forms a SNARE complex with Syntaxin 13 and Snap29 to mediate fusion with SGs. These Lamp1 carriers represent a distinct vesicle population that are functionally different from canonical Arl8+, Cathepsin L+ lysosomes, which also fuse with maturing SGs but are controlled by another SNARE complex composed of Syntaxin 13, Snap29 and Vamp7. Ykt6- and Vamp7-mediated vesicle fusions also determine the fate of SGs, as loss of either of these SNAREs prevents crinosomes from acquiring endosomal PI3P. Our results highlight that fusion events between SGs and different lysosome-related vesicle populations are critical for fine regulation of the maturation and crinophagic degradation of SGs.
巻・号 14(1)
ページ 3200
公開日 2024-2-8
DOI 10.1038/s41598-024-53607-x
PII 10.1038/s41598-024-53607-x
PMID 38331993
PMC PMC10853563
MeSH Lysosomes / metabolism Membrane Fusion / physiology Qa-SNARE Proteins / metabolism R-SNARE Proteins / genetics R-SNARE Proteins / metabolism SNARE Proteins* / genetics SNARE Proteins* / metabolism Secretory Vesicles* / metabolism
リソース情報
ショウジョウバエ 1515R-1