Analytical results for cell constriction dominated by bending energy

Victor G. Almendro-Vedia, Francisco Monroy, and Francisco J. Cao
Phys. Rev. E 91, 012713 – Published 28 January 2015

Abstract

Analytical expressions are obtained for the main magnitudes of a symmetrically constricted vesicle. These equations provide an easy and compact way to predict minimal requirements for successful constriction and its main magnitudes. Thus, they can be useful for the design of synthetic divisomes and give good predictions for magnitudes including constriction energy, length of the constriction zone, volume and area of the vesicle, and the stability coefficient for symmetric constriction. The analytical expressions are derived combining a perturbative expansion in the Lagrangian for small deformations with a cosine ansatz in the constriction region. Already the simple fourth-order (or sixth-order) approximation provides a good approximation to the values of the main physical magnitudes during constriction, as we show through comparison with numerical results. Results are for vesicles with negligible effects from spontaneous curvature, surface tension, and pressure differences. This is the case when membrane components generating spontaneous curvature are scarce, membrane trafficking is present with low energetic cost, and the external medium is isotonic

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  • Received 15 July 2014
  • Revised 13 October 2014

DOI:https://doi.org/10.1103/PhysRevE.91.012713

©2015 American Physical Society

Authors & Affiliations

Victor G. Almendro-Vedia1, Francisco Monroy2, and Francisco J. Cao1,*

  • 1Departamento de Física Atómica, Molecular y Nuclear, Universidad Complutense de Madrid, 28040 Madrid, Spain
  • 2Departamento de Química Física I, Universidad Complutense de Madrid, 28040 Madrid, Spain

  • *Corresponding author: francao@fis.ucm.es

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Vol. 91, Iss. 1 — January 2015

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