Anders Irbäck
Professor
Thermal versus mechanical unfolding of ubiquitin
Författare
Summary, in English
The authors studied the temperature-induced unfolding of ubiquitin by all-atom Monte Carlo simulations. The unfolding behavior is compared with that seen in previous simulations of the mechanical unfolding of this protein, based on the same model. In mechanical unfolding, secondary-structure elements were found to break in a quite well-defined order. In thermal unfolding, the authors saw somewhat larger event-to-event fluctuations, but the unfolding pathway, was still far from random. Two long-lived secondary-structure elements could be identified in the simulations. These two elements have been found experimentally to be the thermally most stable ones. Interestingly, one of these long-lived elements, the first P-hairpin, was found to break early in the mechanical unfolding simulations. Their combined simulation results thus enable the authors to predict in detail important differences between the thermal and mechanical unfolding behaviors of ubiquitin.
Avdelning/ar
- Beräkningsbiologi och biologisk fysik - Har omorganiserats
Publiceringsår
2006
Språk
Engelska
Sidor
759-766
Publikation/Tidskrift/Serie
Proteins
Volym
65
Issue
3
Dokumenttyp
Artikel i tidskrift
Förlag
John Wiley & Sons Inc.
Ämne
- Biophysics
Nyckelord
- protein folding
- unfolding
- temperature-induced unfolding
- all-atom model
- force-induced
- Monte Carlo simulation
Aktiv
Published
ISBN/ISSN/Övrigt
- ISSN: 0887-3585