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Bascle1
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of outstanding interest, in press, The authors prove that for a 3D lattice protein model a necessary and sufficient condition for the sequence to fold rapidly is a pronounced energy minimum corresponding to the native state. The paper includes an extensive review of physical aspects of the protein folding problem.
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of outstanding interest, Off-lattice simulations of short heteropolymer folding show a direct dependence of folding propensity on the choice of sequence and the stability of its lowest-energy state.
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of outstanding interest, Description of extensive Monte-Carlo dynamics simulations on short self-avoiding copolymers of non-polar and polar links on a 2D lattice. Sequences investigated were selected to have only one fold of the lowest energy. The existence of a small number of folding pathways is demonstrated.
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of special interest, Monte-Carlo dynamics simulations on short self-avoiding copolymers show that many folding pathways exist at the early (fast) stages of folding and only one pathway at the last (rate-limiting) step.
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of special interest, T.E. Creighton, WH Freeman & Co, New York, An extensive review of protein folding and folding intermediates which emphasizes the key role of the molten globule state.
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