학술논문

Morphological transformations of vesicles with confined flexible filaments.
Document Type
Article
Source
Proceedings of the National Academy of Sciences of the United States of America. 5/2/2023, Vol. 120 Issue 18, p1-21. 21p.
Subject
*FIBERS
*MOLECULAR dynamics
*ARTIFICIAL cells
*OSMOTIC pressure
*CELL morphology
Language
ISSN
0027-8424
Abstract
Afundamental understanding of cell shaping with confined flexible filaments, including microtubules, actin filaments, and engineered nanotubes, has been limited by the complex interplay between the cell membrane and encapsulated filaments. Here, combining theoretical modeling and molecular dynamics simulations, we investigate the packing of an open or closed filament inside a vesicle. Depending on the relative stiffness and size of the filament to the vesicle as well as the osmotic pressure, the vesicle could evolve from an axisymmetric configuration to a general configuration with a maximum of three reflection planes, and the filament could bend in or out of plane or even coil up. A plethora of system morphologies are determined. Morphological phase diagrams predicting conditions of shape and symmetry transitions are established. Organization of actin filaments or bundles, microtubules, and nanotube rings inside vesicles, liposomes, or cells are discussed. Our results provide a theoretical basis to understand cell shaping and cellular stability and to help guide the development and design of artificial cells and biohybrid microrobots. [ABSTRACT FROM AUTHOR]