paper

Kinetic signature of cooperativity in the irreversible collapse of a polymer

arXiv:1804.04099 · doi:10.1103/PhysRevLett.121.057801

Abstract

We investigate the kinetics of a polymer collapse due to the formation of irreversible crosslinks between its monomers. Using the contact probability as a scale-dependent order parameter depending on the chemical distance , our simulations show the emergence of a cooperative pearling instability. Namely, the polymer undergoes a sharp conformational transition to a set of absorbing states characterized by a length scale corresponding to the mean pearl size. This length and the transition time depend on the polymer equilibrium dynamics and the crosslinking rate. We confirm experimentally this transition using a DNA conformation capture experiment in yeast.

Article: 12 pages, 4 figures. Supplementary material: 22 pages, 7 supplementary figures