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Functional and topological aspects of pH-dependent regulation of electron and proton transport in chloroplasts in silico

机译:pH值调节硅叶绿体中电子和质子传输的功能和拓扑方面

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摘要

In this work, we summarize results of computer simulation of electron and proton transport processes coupled to ATP synthesis in chloroplasts performed within the frames of a mathematical model developed as a system of differential equations for concentrations of electron carriers and hydrogen ion inside and outside the granal and stromal thylakoids. The model takes into account topological peculiarities and lateral heterogeneity of the chloroplast lamellar system. This allowed us to analyze the influence of restricted diffusion of protons inside small compartments of a chloroplast (e.g., in the narrow inter-thylakoid gap) on electron transport processes. The model adequately describes two modes of pH-dependent feedback control of electron transport associated with: (i) the acidification of the thylakoid lumen, which causes the slowing down of plastoquinol oxidation and stimulates an increase in dissipation of excess energy in PS2, and (ii) the alkalization of stroma, inducing the activation of the BBC (Bassham-Benson-Calvin) cycle and intensified consumption of ATP and NADPH. The influence of ATP on electron transport is mediated by modulation of the thylakoid membrane conductivity to protons through the ATP synthase complexes. We also analyze the contribution of alternative electron transport pathways to the maintenance of optimal balance between the energy donating and energy consuming stages of the light-induced photosynthetic processes.
机译:在这项工作中,我们总结了在数学模型的框架内进行的电子和质子传输过程与叶绿体中ATP合成耦合的计算机模拟结果,该数学模型是作为颗粒内部和外部的电子载流子和氢离子浓度的微分方程组开发的和基质类囊体。该模型考虑了叶绿体层状系统的拓扑特性和横向异质性。这使我们能够分析质子在叶绿体小隔室内(例如在狭窄的类囊体间隙中)的有限扩散对电子传输过程的影响。该模型充分描述了与电子传输有关的pH依赖反馈控制的两种模式,该模式涉及:(i)类囊体腔的酸化,这会导致质体喹诺醇氧化减慢并刺激PS2中多余能量的耗散增加,以及( ii)基质的碱化,诱导BBC(Bassham-Benson-Calvin)周期的活化并增加ATP和NADPH的消耗。 ATP对电子传输的影响是通过将类囊体膜电导率通过ATP合酶复合物调节为质子来介导的。我们还分析了替代电子传输途径对光诱导的光合作用过程的能量贡献和能量消耗阶段之间保持最佳平衡的贡献。

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