Literature DB >> 23006307

Osmotic Pressure Induced Coupling between Cooperativity and Stability of a Helix-Coil Transition.

Artem Badasyan1, Shushanik Tonoyan, Achille Giacometti, Rudolf Podgornik, V Adrian Parsegian, Yevgeni Mamasakhlisov, Vladimir Morozov.   

Abstract

Most helix-coil transition theories can be characterized by three parameters: energetic, describing the (free) energy cost of forming a helical state in one repeating unit; entropic, accounting for the decrease of entropy due to formation of the helical state; and geometric, indicating how many repeating units are affected by the formation of one helical state. Depending on their effect on the helix-coil transition, solvents or cosolutes can be classified with respect to their action on these parameters. Solvent interactions that alter the entropic cost of helix formation by their osmotic action can affect both the stability (transition temperature) and the cooperativity (transition interval) of the helix-coil transition. Consistent inclusion of osmotic pressure effects in a description of helix-coil transition, for poly(L-glutamic acid) in solution with polyethylene glycol, can offer an explanation of the experimentally observed linear dependence of transition temperature on osmotic pressure as well as the concurrent changes in the cooperativity of the transition.

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Year:  2012        PMID: 23006307     DOI: 10.1103/PhysRevLett.109.068101

Source DB:  PubMed          Journal:  Phys Rev Lett        ISSN: 0031-9007            Impact factor:   9.161


  2 in total

1.  Helix-coil transition in terms of Potts-like spins.

Authors:  Artem Badasyan; Achille Giacometti; Rudolf Podgornik; Yevgeni Mamasakhlisov; Vladimir Morozov
Journal:  Eur Phys J E Soft Matter       Date:  2013-05-14       Impact factor: 1.890

2.  Investigating global phase diagrams (GPDs) with reentrant transition behavior.

Authors:  Jude Simons Bayor; Baohua Teng; Lingli Wang
Journal:  PLoS One       Date:  2018-07-12       Impact factor: 3.240

  2 in total

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