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Updated: Aug 19, 2026

Spontaneous Formation and Rearrangement of Artificial Lipid Nanotube Networks as a Bottom-Up Model for Endoplasmic Reticulum
Published on: January 22, 2019
Lipid bilayer perturbations around a transmembrane nanotube: a coarse grain molecular dynamics study
Steve O Nielsen1, Bernd Ensing, Vanessa Ortiz
1Center for Molecular Modeling and Department of Chemistry, University of Pennsylvania, Philadelphia, USA. snielsen@cmm.upenn.edu
Abstract:
The perturbations induced in a lipid bilayer by the presence of a transmembrane nanotube are investigated using coarse grained molecular dynamics. Meniscus formation by the lipids and tilting of the nanotube occur in response to hydrophobic mismatch, although these two effects do not compensate completely for the total mismatch. The lipid head-to-tail vector field is examined and shows strong ordering in the membrane plane regardless of the nanotube length. Molecular layering at the lipid-nanotube interface is reported. This study extends previous theoretical approaches to a more realistic setting.

