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Spiwok, V.

Publications and source records attributed to Spiwok, V..

2 recordsLinked to original sources

Design of proteins by parallel tempering in the sequence space

Design of new proteins is often formulated as an optimization task. An amino acid sequence is characterized by an energy, and this energy is sampled and minimized. Here, we use a parallel tempering algorithm to accelerate this task. A series of 100- or 200-residue proteins was designed using a modified Evolutionary Scale Modeling design module to maximize the confidence in structure prediction and globularity and minimize the surface hydrophobic residues. We show that parallel tempering is a viable alternative to Monte Carlo sampling and simulated annealing or related energy-based protein design methods, especially in the situation where a continuous flow of designed sequences is desired.

biochemistry↗

Free Energy Differences from Molecular Simulations: Exact Confidence Intervals from Transition Counts

Here we demonstrate a method to estimate the errors of free energy differences calculated by molecular simulations. The widths of the confidence intervals can be calculated solely from temperature and the number of transitions between states. Accuracy better than {+/-} 4.184 kJ/mol (1 kcal/mol) can be achieved by a simulation at 300 K with four forward and four reverse transitions. Markovianity of the process is a pre-requisite. For a two-state Markovian system, the confidence interval suggested below is exact (not only asymptotic or approximative), regardless the number of transitions. TOC Graphic O_FIG_DISPLAY_L [Figure 1] M_FIG_DISPLAY C_FIG_DISPLAY

biophysics↗