Related Experiment Video
Updated: Feb 6, 2026

Simulating Impacts of Ice Storms on Forest Ecosystems
Published on: June 30, 2020
Resolving ESCRT-III Spirals at the Intercellular Bridge of Dividing Cells Using 3D STORM
Inna Goliand1, Shai Adar-Levor1, Inbar Segal1
1Department of Life Sciences and NIBN, Ben-Gurion University of the Negev, Beer Sheva 84105, Israel.
Abstract:
The ESCRT machinery mediates membrane fission in a variety of processes in cells. According to current models, ESCRT-III proteins drive membrane fission by assembling into helical filaments on membranes. Here, we used 3D STORM imaging of endogenous ESCRT-III component IST1 to reveal the evolution of the structural organization of ESCRT-III in mammalian cytokinetic abscission. Using this approach, ESCRT-III ring and spiral assemblies were resolved and characterized at different stages of abscission. Visualization of IST1 structures in cells lacking the microtubule-severing enzyme spastin and in cells depleted of specific ESCRT-III components or the ATPase VPS4 demonstrated the contribution of these components to the organization and function of ESCRTs in cells. This work provides direct evidence that ESCRT-III proteins form helical filaments to mediate their function in cells and raises new mechanistic scenarios for ESCRT-driven cytokinetic abscission.
Related Concept Videos
Voltage Dividers
Kirchhoff's voltage law implies that the sum of the voltages across the resistors in series equals the source voltage. This means that the current...
Current Dividers
Design Example: Strain Gauge Bridge or Wheatstone Bridge
Wheatstone Bridge
Thus, for accurate resistance measurements, a...
Bridge rectifier
Operationally, the bridge rectifier allows current flow through two of its diodes during each...
Cross-bridge Cycle

