Zobrazeno 1 - 10
of 10
pro vyhledávání: '"Y. M. Barabash"'
Publikováno v:
Біофізичний вісник, Iss 41, Pp 63-73 (2019)
Актуальність. Реакції природних об’єктів на зовнішній вплив аналізуються за допомогою рівнянь балансу, якщо такі реакції мають мульти
Externí odkaz:
https://doaj.org/article/b114f247bd7047909477ad4af84b1ca6
Publikováno v:
Біофізичний вісник, Iss 40, Pp 40-51 (2018)
Актуальність. Мембранні білково-пігментні комплекси фотосинтетичних ізольованих реакційних центрів (РЦ) Rhodobacter Sphaeroides є макромолекуляр
Externí odkaz:
https://doaj.org/article/878d8d8ac5c947cdae9e3e4f5bae09a4
Publikováno v:
Open Journal of Analytical and Bioanalytical Chemistry. 3:057-064
Relevant: Is the study of the response of biological macromolecules to external stimuli. Often the reaction of macromolecules has an effect of structural self-regulation. In this case, their reaction is not only external infl uence, but also the spat
Publikováno v:
Biophysical Bulletin.
Background: Reactions of the natural objects to external influences can be analyzed using balance equations. If such reactions have a multi-exponential character, they can be represented as a sum of exponent components. Such kind of reaction is due b
Publikováno v:
Biophysical Bulletin.
Background: The membrane protein-pigment complexes of photosynthetic isolated reaction centers (RC) Rhodobacter Sphaeroides are macromolecular systems for studying the physical mechanisms of electron and proton transport in biological structures, the
Publikováno v:
Heliyon
Heliyon, Vol 5, Iss 7, Pp e02108-(2019)
Heliyon, Vol 5, Iss 7, Pp e02108-(2019)
The aim of the work is to analyze the response of a biomolecule to an external influence based on the study of its hidden states by identifying differential equations with constant coefficients. The relevance of the work lies in the fact that often t
Publikováno v:
Nanoscale Research Letters
The present work is related to the investigation of slow kinetics of electron transport in the reaction centers (RCs) of Rhodobacter sphaeroides. Experimental data on the absorption kinetics of aqueous solutions of reaction centers at different modes
Autor:
Leonid N. Christophorov, Peter P. Knox, Valeriy N. Kharkyanen, N. M. Berezetskaya, Eugene P. Lukashev, Y. M. Barabash
Publikováno v:
Chemical Physics Letters. 512:113-117
A series of distinctive peaks of the relaxation time spectrum is revealed in dispersive kinetics of recombination of the photogenerated radical pair in the photosynthetic reaction center (RC). They reflect the formation of ‘taxonomic’ conformatio
Autor:
M. T. Kapoustina, V. N. Kharkyanen, Leonid N. Christophorov, Peter P. Knox, Y. M. Barabash, Alexander O. Goushcha, Anthony J. Manzo, Gary W. Scott, Natalja M. Berezetska
Publikováno v:
Biophysical Journal. 84:1146-1160
Experimental and theoretical results in support of nonlinear dynamic behavior of photosynthetic reaction centers under light-activated conditions are presented. Different conditions of light adaptation allow for preparation of reaction centers in eit
Publikováno v:
Photosynthesis Research
Manzo, Anthony J.; Goushcha, Alexander O.; Barabash, Yuri M.; Kharkyanen, Valery N.; & Scott, Gary W.(2009). Equilibration kinetics in isolated and membrane-bound photosynthetic reaction centers upon illumination: a method to determine the photoexcitation rate. Photosynthesis Research: Official Journal of the International Society of Photosynthesis Research, 101(1), pp 35-45. doi: 10.1007/s11120-009-9461-z. Retrieved from: http://www.escholarship.org/uc/item/8gj3835w
Manzo, Anthony J.; Goushcha, Alexander O.; Barabash, Yuri M.; Kharkyanen, Valery N.; & Scott, Gary W.(2009). Equilibration kinetics in isolated and membrane-bound photosynthetic reaction centers upon illumination: a method to determine the photoexcitation rate. Photosynthesis Research: Official Journal of the International Society of Photosynthesis Research, 101(1), pp 35-45. doi: 10.1007/s11120-009-9461-z. Retrieved from: http://www.escholarship.org/uc/item/8gj3835w
Kinetics of electron transfer, following variation of actinic light intensity, for photosynthetic reaction centers (RCs) of purple bacteria (isolated and membrane-bound) were analyzed by measuring absorbance changes in the primary photoelectron donor