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首页> 外文期刊>Biochemistry >Effects of Diffusion and Topological Factors on the Efficiency of Energy Coupling in Chloroplasts with Heterogeneous Partitioning of Protein Complexes in Thylakoids of Grana and Stroma.A Mathematical Model
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Effects of Diffusion and Topological Factors on the Efficiency of Energy Coupling in Chloroplasts with Heterogeneous Partitioning of Protein Complexes in Thylakoids of Grana and Stroma.A Mathematical Model

机译:扩散和拓扑因素对叶绿体和基质间质类囊体中蛋白质复合物异质分配的叶绿体能量耦合效率的影响数学模型

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In this work,we studied theoretically the effects of diffusion restrictions and topological factors that could influence the efficiency of energy coupling in the heterogeneous lamellar system of higher plant chloroplasts.Our computations are based on a mathematical model for electron and proton transport in chloroplasts coupled to ATP synthesis in chloroplasts that takes into account the nonuniform distribution of electron transport and ATP synthase complexes in the thylakoids of grana and stroma.Numerical experiments allowed the lateral profiles of pH in the thylakoid lumen and in the narrow gap between grana thylakoids to be simulated under different metabolic conditions(in the state of photosynthetic control and under conditions of photophosphorylation).This model also provided an opportunity to simulate the effects of steric constraints(the extent of appression of thylakoids in grana)on the rates of non-cyclic electron transport and ATP synthesis.This model demonstrated that there might be two mechanisms of regulation of electron and proton transport in chloroplasts:1)slowing down of non-cyclic electron transport due to a decrease in the intra-thylakoid pH,and 2)retardation of plasto-quinone reduction due to slow diffusion of protons inside the narrow gap between the thylakoids of grana.Numerical experiments for model systems that differ with respect to the arrangement of thylakoids in grana allowed the effects of osmolarity on the photophosphorylation rate in chloroplasts to be explained.
机译:在这项工作中,我们从理论上研究了扩散限制和拓扑因素对高等植物叶绿体非均质层状体系中能量耦合效率的影响。我们的计算基于耦合到叶绿体中的电子和质子传输的数学模型叶绿体中的ATP合成考虑了电子传输和ATP合酶复合物在粒状和间质类囊体中的不均匀分布。通过数值实验,可以在以下条件下模拟类囊体腔内和粒状类囊体之间狭窄间隙中pH的侧向分布该模型还提供了一个机会,可以模拟空间约束(谷物中类囊体的表达程度)对非循环电子传输速率的影响,并提供了一个机会,可以模拟不同的代谢条件(在光合作用状态和光磷酸化条件下)。 ATP合成。该模型表明可能是调节叶绿体中电子和质子传输的两种机制:1)由于类囊体内pH降低导致非循环电子传输减慢,以及2)质子扩散慢导致延缓质体醌还原在谷物中类囊体的排列方面不同的模型系统的数值实验的渗透压实验可以解释渗透压对叶绿体中光磷酸化速率的影响。

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