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A V Dobrynin

Publications and source records attributed to A V Dobrynin.

2 recordsLinked to original sources

Polymer confinement and bacterial gliding motility.

Cyanobacteria and myxobacteria use slime secretion for gliding motility over surfaces. The slime is produced by the nozzle-like pores located on the bacteria surface. To understand the mechanism of gliding motion and its relation to slime polymerization, we have performed molecular dynamics simulations of a molecular nozzle with growing inside polymer chains. These simulations show that the compression of polymer chains inside the nozzle is a driving force for propulsion. There is a linear relationship between the average nozzle velocity and the chain polymerization rate with a proportionality coefficient dependent on the geometric characteristics of the nozzle such as its length and friction coefficient. This minimal model of the molecular engine was used to explain the gliding motion of bacteria over surfaces.

Cell Membrane↗

Polyampholyte adsorption on a charged sphere.

A theory of the adsorption of polyampholyte chains on a charged spherical particle is developed. It is shown that the equilibrium polymer density profile near an adsorbing particle may be found by balancing the polarization-induced attraction of polyampholytes to the charged spherical particle with the monomer-monomer repulsion. At intermediate values of the particle charge, the polyampholyte chains touching the surface of the particle form a self-similar flowerlike structure. The structure of an adsorbed polyampholyte in the flowerlike conformation is similar to that of a neutral star polymer.

Journal Article↗