首页> 美国卫生研究院文献>Biophysical Journal >Brownian Dynamics Study of Cytochrome f Interactions with Cytochrome c6 and Plastocyanin in Chlamydomonas reinhardtii Plastocyanin and Cytochrome c6 Mutants
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Brownian Dynamics Study of Cytochrome f Interactions with Cytochrome c6 and Plastocyanin in Chlamydomonas reinhardtii Plastocyanin and Cytochrome c6 Mutants

机译:莱茵衣藻细胞色素C和细胞色素c6突变体中细胞色素f与细胞色素c6和植物色素的相互作用的布朗动力学研究。

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摘要

Using Brownian dynamics simulations, all of the charged residues in Chlamydomonas reinhardtii cytochrome c6 (cyt c6) and plastocyanin (PC) were mutated to alanine and their interactions with cytochrome f (cyt f) were modeled. Systematic mutation of charged residues on both PC and cyt c6 confirmed that electrostatic interactions (at least in vitro) play an important role in bringing these proteins sufficiently close to cyt f to allow hydrophobic and van der Waals interactions to form the final electron transfer-active complex. The charged residue mutants on PC and cyt c6 displayed similar inhibition classes. Our results indicate a difference between the two acidic clusters on PC. Mutations D44A and E43A of the lower cluster showed greater inhibition than do any of the mutations of the upper cluster residues. Replacement of acidic residues on cyt c6 that correspond to the PC's lower cluster, particularly E70 and E69, was observed to be more inhibitory than those corresponding to the upper cluster. In PC residues D42, E43, D44, D53, D59, D61, and E85, and in cyt c6 residues D2, E54, K57, D65, R66, E70, E71, and the heme had significant electrostatic contacts with cyt f charged residues. PC and cyt c6 showed different binding sites and orientations on cyt f. As there are no experimental cyt c6 mutation data available for algae, our results could serve as a good guide for future experimental work on this protein. The comparison between computational values and the available experimental data (for PC-cyt f interactions) showed overall good agreement, which supports the predictive power of Brownian dynamics simulations in mutagenesis studies.
机译:使用布朗动力学模拟,莱茵衣藻细胞色素c6(cyt c6)和质体蓝蛋白(PC)中所有带电残基均突变为丙氨酸,并模拟了它们与细胞色素f(cyt f)的相互作用。 PC和cyt c6上带电残基的系统突变证实,静电相互作用(至少在体外)在使这些蛋白与cyt f足够接近以允许疏水和范德华相互作用形成最终的电子转移活性中起重要作用复杂。 PC和cyt c6上带电的残基突变体表现出相似的抑制类别。我们的结果表明PC上两个酸性簇之间的差异。与较高簇残基的任何突变相比,较低簇的突变D44A和E43A显示出更大的抑制作用。 cyt c6上对应于PC较低簇的酸性残基的置换,尤其是E70和E69,被观察到比对应于较高簇的酸性残基更具抑制性。在PC残基D42,E43,D44,D53,D59,D61和E85中,在cyt c6中,残基D2,E54,K57,D65,R66,E70,E71和血红素与cyt f带电残基具有明显的静电接触。 PC和cyt c6在cyt f上显示出不同的结合位点和方向。由于没有可用于藻类的实验性cyt c6突变数据,因此我们的结果可为该蛋白的未来实验工作提供良好的指导。计算值与可用实验数据(用于PC-cyt f相互作用)之间的比较显示出总体良好的一致性,这支持了诱变研究中布朗动力学模拟的预测能力。

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