Loop formation of a flexible polymer with two random reactive sites

Yu Jane Sheng, Pei Hsien Hsu, Jeff Z.Y. Chen, Heng Kwong Tsao

Research output: Contribution to journalArticlepeer-review

17 Scopus citations

Abstract

The dynamics of loop formation is investigated for a flexible polymer owing to the reversible intrachain reaction. The polymer is made of N hard spheres tethered by inextensible bonds, and the two reactive sites with binding energy -εare randomly located. The coil-to-loop crossover is characterized by the probability curve which depicts the variation of the open-state probability with temperature. The midpoint temperature (βm-1) is related to the conformational entropy loss ΔS from coil to loop states. It is found that βmε = ΔS/kB = ln N a + G, and the loop can be classified into three types: (i) end-to-end, α ≃ 1.98; (ii) end-to-interior, α ≃ 2.16; and (iii) interior-to-interior, α ≃ 2.48. The constant G varies with locations of the reactive sites. The kinetic rate constants can be well depicted by the Arrhenius kinetics with free energy barriers in agreement with crossover thermodynamics. Although the end-to-end loop is most easily formed for long enough polymers, the interior-to-interior loop is preferred for short chains. This consequence indicates that biopolymers may utilize loop types and contour distance between reactive sites to control the probability of loop formation.

Original languageEnglish
Pages (from-to)9257-9263
Number of pages7
JournalMacromolecules
Volume37
Issue number24
DOIs
StatePublished - 30 Nov 2004

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