Artigo Acesso aberto Revisado por pares

Jamming Proteins with Slipknots and Their Free Energy Landscape

2009; American Physical Society; Volume: 103; Issue: 26 Linguagem: Inglês

10.1103/physrevlett.103.268103

ISSN

1092-0145

Autores

Joanna I. Sułkowska, Piotr Sułkowski, José N. Onuchic,

Tópico(s)

Cellular Mechanics and Interactions

Resumo

Theoretical studies of stretching proteins with slipknots reveal a surprising growth of their unfolding times when the stretching force crosses an intermediate threshold. This behavior arises as a consequence of the existence of alternative unfolding routes that are dominant at different force ranges. The existence of an intermediate, metastable configuration where the slipknot is jammed is responsible for longer unfolding times at higher forces. Simulations are performed with a coarse-grained model with further quantification using a refined description of the geometry of the slipknots. The simulation data are used to determine the free energy landscape of the protein, which supports recent analytical predictions.

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