Search bioRxivSearch

Biology subjects

Matile, S.

Publications and source records attributed to Matile, S..

2 recordsLinked to original sources

ENDOSOMAL MEMBRANE TENSION CONTROLS ESCRT-III-DEPENDENT INTRA-LUMENAL VESICLE FORMATION

Plasma membrane tension strongly affects cell surface processes, such as migration, endocytosis and signalling. However, it is not known whether membrane tension of organelles regulates their functions, notably intracellular traffic. The ESCRT-III complex is the major membrane remodelling complex that drives Intra-Lumenal Vesicle (ILV) formation on endosomal membranes. Here, we made use of a new fluorescent membrane tension probe to show that ESCRT-III subunits are recruited onto endosomal membranes when membrane tension is reduced. We find that tension-dependent recruitment is associated with ESCRT-III polymerization and membrane deformation in vitro, and correlates with increased ILVs formation in ESCRT-III decorated endosomes in vivo. Finally, we find that endosomal membrane tension decreases when ILV formation is triggered by EGF under physiological conditions. These results indicate that membrane tension is a major regulator of ILV formation and of endosome trafficking, leading us to conclude that membrane tension can control organelle functions. One Sentence SummaryMembrane tension decrease facilitates membrane remodeling by ESCRT-III polymerization during intra-lumenal vesicle formation.

cell biology

TORC2 Affects Endocytosis through Plasma Membrane Tension

Target Of Rapamycin complex 2 (TORC2) is a conserved protein kinase that regulates multiple plasma membrane (PM)-related processes including endocytosis. Direct, chemical inhibition of TORC2 arrests endocytosis but with kinetics that are relatively slow and therefore inconsistent with signaling being mediated solely through simple phosphorylation cascades. Here, we show that, in addition to regulation of the phosphorylation of endocytic proteins, TORC2 also controls endocytosis by modulating PM tension. Elevated PM tension, upon TORC2 inhibition, impinges on endocytosis at two different levels: first, by severing the bonds between the PM adaptor proteins Sla2 and Ent1 and the actin cytoskeleton; and, second, by hindering recruitment of Rvs167, an N-BAR-containing protein important for vesicle fission, to endocytosis sites. These results underline the importance of biophysical cues in the regulation of cellular and molecular processes.

cell biology