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April 23, 2026BMC Biology0 citationsOpen Access

Physiological implications of phase separation in vesicle organization and trafficking

CLChe LiuJCJinbo ChengXWXiandeng Wu

Key Points

  • The aim is to explore the role of phase separation in cellular organization and its effects on vesicle dynamics.
  • Review of recent findings on phase separation mechanisms
  • Analysis of interactions between protein condensates and vesicles
  • Discussion of implications for vesicle biology and physiology
  • Phase separation aids in organizing and regulating membrane vesicles
  • It influences processes like synaptic vesicle cycling and COPII-mediated transport
  • Understanding these mechanisms is crucial for maintaining cellular homeostasis.

Abstract

Phase separation has emerged as a key mechanism of cellular compartmentalization, complementing classical membrane-bound organelles. In addition to forming membraneless compartments that provide confined environments for biochemical reactions, phase separation actively organizes and regulates membrane vesicles. Protein condensates interact with vesicular organelles through defined modes of communication, influencing their assembly, trafficking, and turnover. This review highlights recent advances in understanding how phase separation contributes to vesicle biology, including synaptic vesicle cycling, COPII-mediated transport, and endocytic vesicle organization, processes essential for maintaining physiological homeostasis and efficient intracellular transport.

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Cite This Study

Liu et al. (2026) studied this question.

synapsesocial.com/papers/69e9b62685696592c86eadfehttps://doi.org/10.1186/s12915-026-02607-6
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