Literature DB >> 23860832

Nano breathers and molecular dynamics simulations in hydrogen-bonded chains.

L Kavitha1, A Muniyappan, A Prabhu, S Zdravković, S Jayanthi, D Gopi.   

Abstract

Non-linear localization phenomena in biological lattices have attracted a steadily growing interest and their existence has been predicted in a wide range of physical settings. We investigate the non-linear proton dynamics of a hydrogen-bonded chain in a semi-classical limit using the coherent state method combined with a Holstein-Primakoff bosonic representation. We demonstrate that even a weak inherent discreteness in the hydrogen-bonded (HB) chain may drastically modify the dynamics of the non-linear system, leading to instabilities that have no analog in the continuum limit. We suggest a possible localization mechanism of polarization oscillations of protons in a hydrogen-bonded chain through modulational instability analysis. This mechanism arises due to the neighboring proton-proton interaction and coherent tunneling of protons along hydrogen bonds and/or around heavy atoms. We present a detailed analysis of modulational instability, and highlight the role of the interaction strength of neighboring protons in the process of bioenergy localization. We perform molecular dynamics simulations and demonstrate the existence of nanoscale discrete breather (DB) modes in the hydrogen-bonded chain. These highly localized and long-lived non-linear breather modes may play a functional role in targeted energy transfer in biological systems.

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Year:  2012        PMID: 23860832      PMCID: PMC3532661          DOI: 10.1007/s10867-012-9283-7

Source DB:  PubMed          Journal:  J Biol Phys        ISSN: 0092-0606            Impact factor:   1.365


  38 in total

1.  Orientational discrete breathers in hydrogen-bonded chains.

Authors:  Julia M Khalack; M J Velgakis
Journal:  Phys Rev E Stat Nonlin Soft Matter Phys       Date:  2002-03-18

2.  Observation of breathers in Josephson ladders.

Authors:  P Binder; D Abraimov; A V Ustinov; S Flach; Y Zolotaryuk
Journal:  Phys Rev Lett       Date:  2000-01-24       Impact factor: 9.161

3.  Discrete breathers in nonlinear lattices: experimental detection in a josephson array.

Authors:  E Trías; J J Mazo; T P Orlando
Journal:  Phys Rev Lett       Date:  2000-01-24       Impact factor: 9.161

4.  Microscopic model of the actin-myosin interaction in muscular contractions.

Authors:  B Gaveau; M Moreau; B Schuman
Journal:  Phys Rev E Stat Nonlin Soft Matter Phys       Date:  2004-01-30

5.  Higher-order modulation instability in nonlinear fiber optics.

Authors:  Miro Erkintalo; Kamal Hammani; Bertrand Kibler; Christophe Finot; Nail Akhmediev; John M Dudley; Goëry Genty
Journal:  Phys Rev Lett       Date:  2011-12-13       Impact factor: 9.161

6.  Effect of hydrogen bond anharmonicity on supersonic discrete Davydov soliton propagation.

Authors:  Luis A Cisneros-Ake; A A Minzoni
Journal:  Phys Rev E Stat Nonlin Soft Matter Phys       Date:  2012-02-29

7.  ac-driven atomic quantum motor.

Authors:  A V Ponomarev; S Denisov; P Hänggi
Journal:  Phys Rev Lett       Date:  2009-06-08       Impact factor: 9.161

Review 8.  Protons and how they are transported by proton pumps.

Authors:  M J Buch-Pedersen; B P Pedersen; B Veierskov; P Nissen; M G Palmgren
Journal:  Pflugers Arch       Date:  2008-05-06       Impact factor: 3.657

9.  Discrete breathers at the interface between a diatomic and a monoatomic granular chain.

Authors:  C Hoogeboom; G Theocharis; P G Kevrekidis
Journal:  Phys Rev E Stat Nonlin Soft Matter Phys       Date:  2010-12-10

10.  Proton conduction in bacteriorhodopsin via a hydrogen-bonded chain with large proton polarizability.

Authors:  H Merz; G Zundel
Journal:  Biochem Biophys Res Commun       Date:  1981-07-30       Impact factor: 3.575

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  1 in total

Review 1.  Energy transport mechanism in the form of proton soliton in a one-dimensional hydrogen-bonded polypeptide chain.

Authors:  L Kavitha; R Priya; N Ayyappan; D Gopi; S Jayanthi
Journal:  J Biol Phys       Date:  2015-07-22       Impact factor: 1.365

  1 in total

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