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Electrostatically driven Monte Carlo

Ripoll D R and H A Scheraga 1989. On the Multiple-Minimum Problem in the Conformational Anal of Polypeptides. IB. An Electrostatically Driven Monte Carlo Method Tests on met-Enkepha journal of Protein Chemistry 8 263-287. [Pg.577]

Figure 30 Stereo views of some conformations of Met-enkephalin along a conformational pathway in the electrostatically driven Monte Carlo procedure during a folding simulation, starting from a randomly generated structure. The structure in (d)191 is the same as that in Figure 23. Figure 30 Stereo views of some conformations of Met-enkephalin along a conformational pathway in the electrostatically driven Monte Carlo procedure during a folding simulation, starting from a randomly generated structure. The structure in (d)191 is the same as that in Figure 23.
On the Multiple-Minima Problem in the Conformational Analysis of Polypeptides. V. Application of the Self-consistent Electrostatic Field and the Electrostatically Driven Monte Carlo Methods to Bovine Pancreatic Trypsin Inhibitor. [Pg.134]

D. R. Ripoll, M. J. Vasquez, and H. A. Scheraga, Biopolymers, 31, 319 (1991). The Electrostatically Driven Monte Carlo Method Application to Conformational Analysis of Decaglycine. [Pg.139]

D. R. Ripoll and H. A. Scheraga. On the multiple minima problem in the conformational analysis of polypeptides. IV. Application of the electrostatically driven Monte Carlo method to the 20-residue membrane-bound portion of melittin. Biopolymers 30 165-176(1990). [Pg.100]


See other pages where Electrostatically driven Monte Carlo is mentioned: [Pg.533]    [Pg.106]    [Pg.110]    [Pg.110]    [Pg.204]    [Pg.212]    [Pg.212]    [Pg.28]    [Pg.244]    [Pg.517]    [Pg.381]    [Pg.143]    [Pg.281]    [Pg.527]   
See also in sourсe #XX -- [ Pg.27 ]




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