Literature DB >> 17633539

[Multiparticle computer simulation of photosynthetic electron transport in a thylakoid membrane].

I B Kovalenko, A M Abaturov, D M Ustinin, G Iu Riznichenko, E A Grachev, A B Rubin.   

Abstract

A method for multiparticle computer simulation of photosynthetic electron transport in a thylakoid membrane has been developed. The basic principles of this method were described previously. The method is used to describe the cyclic electron flow around photosystem I. The effects of size and shape of the reaction volume on the kinetics of interaction of a mobile carrier with a protein complex and the limited diffusion of reactants were studied. It was shown that the kinetic parameters of photosynthetic electron transport processes depend on the distribution of protein complexes in the membrane. It was shown that the limited nature of diffusion of plastoquinone molecules in the membrane leads to a tenfold decrease in the efficient diffusion coefficient. It was shown that the occurrence of two phases of dark reduction of photooxidized P700+ is due to a heterogeneous spatial organization of the thylakoid membrane of a chloroplast.

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Year:  2007        PMID: 17633539

Source DB:  PubMed          Journal:  Biofizika        ISSN: 0006-3029


  2 in total

Review 1.  New direct dynamic models of protein interactions coupled to photosynthetic electron transport reactions.

Authors:  Galina Yu Riznichenko; Ilya B Kovalenko; Anna M Abaturova; Alexandra N Diakonova; Dmitry M Ustinin; Eugene A Grachev; Andrew B Rubin
Journal:  Biophys Rev       Date:  2010-06-10

2.  The role of electrostatic interactions in the process of diffusional encounter and docking of electron transport proteins.

Authors:  I B Kovalenko; S S Khrushchev; V A Fedorov; G Yu Riznichenko; A B Rubin
Journal:  Dokl Biochem Biophys       Date:  2016-07-15       Impact factor: 0.788

  2 in total

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