Kovalenko I B, Abaturova A M, Gromov P A, Ustinin D M, Riznichenko G Iu, Grachev E A, Rubin A B
Biofizika. 2008 Mar-Apr;53(2):261-70.
The diffusion of the protein plastocyanine and complex formation between plastocyanine and cytochrome f (a subunit of a cytochrome b6/f complex) in the chloroplast thylakoid lumen has been studied. A 3D computer simulation model of diffusion and binding of plastocyanine and cytochrome f has been constructed, which considers their electrostatic interaction. Based on the experimental data, the parameters of the model for complex formation between plastocyanine and cytochrome f in solution have been estimated. The dependence of the rate of plastocyanine-cytochrome f reaction on the size of the luminal space has been studied. It was shown that the contraction of the luminal space leads to a decrease in the reaction rate, which is in agreement with the experimental data on the inhibition of the reaction under hyperosmotic stress.
研究了叶绿体类囊体腔中质体蓝素的扩散以及质体蓝素与细胞色素f(细胞色素b6/f复合体的一个亚基)之间的复合物形成。构建了质体蓝素和细胞色素f扩散与结合的三维计算机模拟模型,该模型考虑了它们的静电相互作用。基于实验数据,估算了溶液中质体蓝素与细胞色素f形成复合物的模型参数。研究了质体蓝素-细胞色素f反应速率对腔室空间大小的依赖性。结果表明,腔室空间的收缩导致反应速率降低,这与高渗胁迫下反应受抑制的实验数据一致。