Formation of tubes during self-assembly of bacterial surface layers.

Manfred Bobeth, Andreas Blecha, Anja Blüher, Michael Mertig, Nuriye Korkmaz, Kai Ostermann, Gerhard Rödel, Wolfgang Pompe

Journal: Langmuir : the ACS journal of surfaces and colloids 2012;27(24):15102-11

PMID: 22029537

Abstract

Based on experimental studies on tube formation during self-assembly of bacterial surface (S)-layers, a mechanistic model for describing the underlying basic mechanisms is proposed and the effect of process parameters on growth velocity and tube radius is investigated. The S-layer is modeled as a curved sheet with discrete binding sites for the association of monomers distributed along the S-layer edges. Reported changes of the tube radius owing to genetic protein modifications are explained within the framework of continuum mechanics. S-layer growth velocity and shape development are analyzed by Monte Carlo simulation in their dependence on the attachment and detachment frequencies of monomers at the S-layer. For curved S-layer patches, a criterion for the formation of S-layer tubes is derived. Accordingly, tubes can form only within a certain range of the initial monomer concentration. Furthermore, the effect of calcium ion concentration on tube formation is discussed, including recent experimental findings on the calcium effect.

© 2011 American Chemical Society

Address: Institut für Werkstoffwissenschaft and Max-Bergmann-Zentrum für Biomaterialien, Technische Universität Dresden, 01062 Dresden, Germany.

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