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Journal of Cell Science· 2026Q2

A phosphoinositide and RAB switch controls early macropinocytosis

Hélène Spangenberg, Emilie Løgith Moe, Øyvind Ødegård‐Fougner, Marte Sneeggen et al.

Short summary

Inhibiting VPS34, a key enzyme in macropinosome maturation, causes macropinosomes to fuse with the plasma membrane instead of maturing into endosomes, driven by a switch from RAB5A to RAB8A.

AI-generated from the title and abstract; the full text is not read.

Key points

  • VPS34 inhibition prevents macropinosome maturation and fluid uptake.
  • VPS34 inhibition blocks recruitment of RAB5A and early endosomal factors to macropinosomes.
  • Instead, VPS34 inhibition leads to macropinosome accumulation of RAB8A, RAB10, RAB11A, and PtdIns4P.
  • Macropinosome fusion with the plasma membrane is dependent on RAB8A, while RAB5A is critical for endosomal identity.

AI-generated from the title and abstract; the full text is not read.

Abstract

Macropinocytosis is a non-selective endocytic process by which cells take up large amounts of extracellular fluid into giant vesicles known as macropinosomes. This mechanism is used by immune cells to sample the surroundings for antigens and can be exploited by cancer cells for nutrient uptake. What determines macropinosome fate after internalization is largely unknown. Here we investigate the role of the phosphatidylinositol 3-kinase VPS34/PIK3C3 and its product phosphatidylinositol 3-phosphate (PtdIns3P) in macropinosome fate determination. VPS34 inhibition reduced successful macropinosome maturation and fluid-phase uptake and prevented recruitment of early endosomal factors, including the small GTPase RAB5A and its effectors, to forming macropinosomes. Instead, forming macropinosomes under VPS34 inhibition accumulated regulators of endocytic recycling, including RAB8A, RAB10, RAB11A, and PtdIns4P, which led to fusion of macropinosomes with the plasma membrane. Whereas RAB5A was critical for establishment of endosomal identity, macropinosome fusion with the plasma membrane depended on RAB8A. Thus, macropinosome maturation is regulated by a VPS34-dependent phosphoinositide and RAB transition that determines whether newly formed macropinosomes acquire endosomal identity or recycle to the plasma membrane.

The authors' abstract, as published at the source. Journal of Cell Science, 2026 · DOI ↗

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Field: Cell Biology

Cell BiologyBiochemistry, Genetics and Molecular Biology