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Random binding of dimers to chains
Authors:Jerome K. Percus  Ora E. Percus  Alan S. Perelson
Affiliation:(1) Courant Institute of Mathematical Sciences, New York University, New York, NY 10012, USA. e-mail: percus@cims.nyu.edu, US;(2) Theoretical Biology and Biophysics, Group T-10, Mail Stop K7190, Los Alamos National Laboratory, Los Alamos, NM 87545, USA. e-mail: asp@t10.lanl.gov, US
Abstract:We develop a probabilistic model for the binding of a small linear polymer to a larger chain. We assume that we can approximate the energy of interaction of the two chains by summing the pairwise interactions between subunits. Because the energy of interaction between a pair of subunits can depend on neighboring subunits, which we assume vary along the chain, we assign the pairwise energies of interactions according to a specified probability distribution. Thus we develop a statistical model for the binding of two molecules. While such models may not be appropriate for studying the interaction of a particular pair of molecules, they can provide insight into questions that deal with populations of molecules, such as why do MHC molecules bind peptides of a certain size? Here we analyze in detail the special case of a heterodimer binding to a polymer.
Keywords::   Dimers –   Binding –   Probability Theory –   MHC
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