Endocytosis controls the internalization of molecules, receptors and membrane components, thereby regulating nutrient uptake, signaling and membrane composition. Increasing evidence shows that trafficking of endocytic cargo is coordinated by membrane contact sites (MCSs). Rather than passive bridges, MCSs act as dynamic platforms that organize communication between organelles, integrating metabolic and biochemical signals with spatial precision. Their ability to locally remodel membranes and generate spatially confined signaling domains directly shapes endocytic and endo-lysosomal trafficking. MCSs are also highly adaptive: they remodel in response to extracellular cues such as growth factors and can be exploited by pathogens to create replication-permissive niches, positioning MCSs as central hubs of intracellular organization and communication.

Bridging the gap between organelles: Membrane contact sites as regulator of endocytic dynamics / G. Miloro, M.C.. - In: CURRENT OPINION IN CELL BIOLOGY. - ISSN 0955-0674. - 100:(2026 Jun), pp. 102641.1-102641.10. [10.1016/j.ceb.2026.102641]

Bridging the gap between organelles: Membrane contact sites as regulator of endocytic dynamics

G. Miloro
Primo
;
P.P. Di Fiore;S. Sigismund
Ultimo
2026

Abstract

Endocytosis controls the internalization of molecules, receptors and membrane components, thereby regulating nutrient uptake, signaling and membrane composition. Increasing evidence shows that trafficking of endocytic cargo is coordinated by membrane contact sites (MCSs). Rather than passive bridges, MCSs act as dynamic platforms that organize communication between organelles, integrating metabolic and biochemical signals with spatial precision. Their ability to locally remodel membranes and generate spatially confined signaling domains directly shapes endocytic and endo-lysosomal trafficking. MCSs are also highly adaptive: they remodel in response to extracellular cues such as growth factors and can be exploited by pathogens to create replication-permissive niches, positioning MCSs as central hubs of intracellular organization and communication.
Settore BIOS-10/A - Biologia cellulare e applicata
giu-2026
11-apr-2026
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/1262735
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