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Recently, theoretical models to employ physical interactions between monomers for the selection of appropriate heteropolymer sequences have been suggested. The Shakhnovich-Gutin model simulates the in vivo creation of natural proteins by molecular evolution. Our model suggests a method for the in vitro synthesis of heteropolymers which are protein-like in the sense that they have unique 3D fold encoded in the sequence; furthermore, certain properties of this fold, such as presence of an active site capable of specifically binding to a given target molecule, is under the control of our synthetic procedure. We show that phase diagram of polymer chain prepared by either method, besides random and frozen globular phases, also includes a third globular phase, which we call the target phase. The random globule is comprised of a vast number of compact conformations, and although the frozen globule is dominated by one or few conformations, these are not under any control and generally do not...
Pande et al. (1995) studied this question.