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Structural comparison of the two alternative transition states for folding of TI I27
Authors:Geierhaas Christian D  Best Robert B  Paci Emanuele  Vendruscolo Michele  Clarke Jane
Institution:Department of Chemistry, Medical Research Council Centre for Protein Engineering, University of Cambridge, Cambridge CB2 1EW, United Kingdom.
Abstract:TI I27, a beta-sandwich domain from the human muscle protein titin, has been shown to fold via two alternative pathways, which correspond to a change in the folding mechanism. Under physiological conditions, TI I27 folds by a classical nucleation-condensation mechanism (diffuse transition state), whereas at extreme conditions of temperature and denaturant it switches to having a polarized transition state. We have used experimental Phi-values as restraints in ensemble-averaged molecular dynamics simulations to determine the ensembles of structures representing the two transition states. The comparison of these ensembles indicates that when native interactions are substantially weakened, a protein may still be able to fold if it can access an alternative transition state characterized by a much larger entropic contribution. Analysis of the probability distribution of Phi-values derived from ensemble averaged simulations, enables us to identify residues that form contacts in some members of the ensemble but not in others illustrating that many interactions present in transition states are not strictly required for the successful completion of the folding process.
Keywords:TS  transition state  TSE  transition state ensemble  TSL  transition state of TI I27 dominant at low concentration of denaturant  TSH  transition state of TI I27 dominant at high concentration of denaturant  TSEL  transition state ensemble of TI I27 dominant at low concentration of denaturant  TSEH  transition state ensemble of TI I27 dominant at high concentration of denaturant  pathway L  folding pathway of TI I27 dominant at low concentration of denaturant  pathway H  folding pathway of TI I27 dominant at high concentration of denaturant  SASA  solvent accessible surface area  Rg  radius of gyration  RMSD  root mean-square deviation  dRMS  distance-based root-mean-square deviation  EEF1  effective energy function  and Ig  immunoglobulin
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