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izvor podataka: crosbi

Stability of Biological Membranes upon Mechanical Indentation (CROSBI ID 260092)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Franz, Florian ; Aponte-Santamaría, Camilo ; Daday, Csaba ; Miletić, Vedran ; Gräter, Frauke Stability of Biological Membranes upon Mechanical Indentation // The journal of physical chemistry. B, Condensed matter, materials, surfaces, interfaces & biophysical, 122 (2018), 28; 7073-7079. doi: 10.1021/acs.jpcb.8b01861

Podaci o odgovornosti

Franz, Florian ; Aponte-Santamaría, Camilo ; Daday, Csaba ; Miletić, Vedran ; Gräter, Frauke

engleski

Stability of Biological Membranes upon Mechanical Indentation

Mechanical perturbations are ubiquitous in living cells, and many biological functions are dependent on the mechanical response of lipid membranes. Recent force-spectroscopy studies have captured the stepwise fracture of stacks of bilayers, avoiding substrate effects. However, the effect of stacking bilayers, as well as the exact molecular mechanism of the fracture process, is unknown. Here, we use atomistic and coarse-grained force-clamp molecular dynamics simulation to assess the effects of mechanical indentation on stacked and single bilayers. Our simulations show that the rupture process obeys the laws of force-activated barrier crossing, and stacking multiple membranes stabilizes them. The rupture times follow a log-normal distribution which allows the interpretation of membrane rupture as a pore-growth process. Indenter hydrophobicity determines the type of pore formation, the preferred dwelling region, and the resistance of the bilayer against rupture. Our results provide a better understanding of the nanomechanics underlying the plastic rupture of lipid membranes.

mechanical indentation ; biological membranes ; molecular dynamics simulation ; conditional stop

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Podaci o izdanju

122 (28)

2018.

7073-7079

objavljeno

1520-6106

1520-5207

10.1021/acs.jpcb.8b01861

Povezanost rada

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Fizika, Kemija, Računarstvo

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