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The Impact of Rate Formulations on Stochastic Molecular Motor Dynamics (CROSBI ID 275409)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Blackwell, R. ; Jung, D. ; Bukenberger, M. ; Smith, Ana Sunčana The Impact of Rate Formulations on Stochastic Molecular Motor Dynamics // Scientific reports, 9 (2019), 1; 11491-11502. doi: 10.1038/s41598-019-54344-2

Podaci o odgovornosti

Blackwell, R. ; Jung, D. ; Bukenberger, M. ; Smith, Ana Sunčana

engleski

The Impact of Rate Formulations on Stochastic Molecular Motor Dynamics

Cells are complex structures which require considerable amounts of organization via transport of large intracellular cargo. While passive diffusion is often sufficiently fast for the transport of smaller cargo, active transport is necessary to organize large structures on the short timescales necessary for biological function. The main mechanism of this transport is by cargo attachment to motors which walk in a directed fashion along intracellular filaments. There are a number of models which seek to describe the motion of motors with attached cargo, from detailed microscopic to coarse phenomenological descriptions. We focus on the intermediate-detailed discrete stochastic hopping models, and explore how cargo transport changes depending on the number of motors, motor interaction, system constraints and rate formulations, which are derived from common thermodynamic assumptions. We find that, despite obeying the same detailed balance constraint, the choice of rate formulation considerably affects the characteristics of the overall motion of the system, with one rate formulation exhibiting novel behavior of loaded motor groups moving faster than a single unloaded motor.

Stochastic Molecular Motor Dynamics

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Podaci o izdanju

9 (1)

2019.

11491-11502

objavljeno

2045-2322

10.1038/s41598-019-54344-2

Povezanost rada

Fizika, Interdisciplinarne prirodne znanosti

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