Crowding effects on the structural transitions in a flexible helical homopolymer
arXiv:0903.0746 · doi:10.1103/PhysRevLett.102.118101
Abstract
We elucidate the structural transitions in a helical off-lattice homopolymer induced by crowding agents, as function of the number of monomers () and volume fraction () of crowding particles. At , the homopolymer undergoes transitions from a random coil to a helix, helical hairpin \textbf{HH}, and helix bundle \textbf{HB} structures depending on , and temperature. Crowding induces chain compaction that can promote \textbf{HH} or \textbf{HB} formation depending on . Typically, the helical content decreases which is reflected in the decrease in the transition temperatures that depend on , , and the size of the crowding particles.
9 pages, 4 figures