The properties of nonlinear excitations and verification of validity of theory of energy transport in the protein molecules

Journal Title: Annals of Proteomics and Bioinformatics - Year 2018, Vol 2, Issue 1

Abstract

Based on different properties of structure of helical protein molecules some theories of bio-energy transport along the molecular chains have been proposed and established, where the energy is released by hydrolysis of adenosine triphosphate (ATP). A brief survey of past researches on different models and theories of bio-energy, including Davydov’s, Brown et al’s, Schweitzer’s, Cruzeiro-Hansson’s, Forner‘s and Pang’s models were first stated in this paper. Subsequently we studied and reviewed mainly and systematically the properties and stability of the carriers (solitons) transporting the bio-energy at physiological temperature 300K in Pang’s and Davydov’s theories. However, these theoretical models including Davydov’s and Pang’s model were all established based on a periodic and uniform proteins, which are different from practically biological proteins molecules. Therefore, it is very necessary to inspect and verify the validity of the theory of bio-energy transport in really biological protein molecules.

Authors and Affiliations

Pang Xiao- Feng

Keywords

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  • EP ID EP558712
  • DOI 10.29328/journal.apb.1001006
  • Views 29
  • Downloads 0

How To Cite

Pang Xiao- Feng (2018). The properties of nonlinear excitations and verification of validity of theory of energy transport in the protein molecules. Annals of Proteomics and Bioinformatics, 2(1), 58-108. https://europub.co.uk/articles/-A-558712