Instant Membrane Stabilization by Damage-Triggered Actin Polymerization in Giant Unilamellar Vesicles

  • Nguyen, Huong Thanh
  • Lee, Sang Ho
  • Kim, Chang Ho
  • Shin, Kwanwoo
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초록

Giant unilamellar vesicles (GUVs) rupture catastrophically when membrane pores expand under tension, because they lack cellular repair machinery. Here we present a minimal, damage-triggered stabilization mechanism based on rapid actin polymerization inside GUVs. ATP-activated G-actin was encapsulated in a divalent-cation-free lumen while high concentrations of Ca2+ or Mg2+ were supplied externally, creating a condition where membrane poration immediately drives cation influx. Upon poration, localized cation entry induces fast F-actin assembly that forms a cortical-like meshwork at the defect, mechanically arresting pore enlargement and preserving vesicle morphology for extended periods. The resulting actin plug does not restore full impermeability to small molecules, but it substantially increases vesicle survival against rupture and recapitulates the “plugging” aspect of single-cell membrane wound responses in a bottom-up artificial cell model. © 2026 The Author(s). ChemBioChem published by Wiley-VCH GmbH.

키워드

actin polymerizationartificial cellgiant unilamellar vesiclemembrane stabilizationTRANSIENT PORESREPAIRMECHANISMDYNAMICS
제목
Instant Membrane Stabilization by Damage-Triggered Actin Polymerization in Giant Unilamellar Vesicles
저자
Nguyen, Huong ThanhLee, Sang HoKim, Chang HoShin, Kwanwoo
DOI
10.1002/cbic.202500974
발행일
2026-03
유형
Article
저널명
ChemBioChem
27
6