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Crystal structure and biochemical characterization of Chlamydomonas FDX2 reveal two residues that when mutated partially confer FDX2 the redox potential and catalytic properties of FDX1

机译:衣藻FDX2的晶体结构和生化特性揭示了两个残基当突变时它们部分赋予FDX2部分氧化还原电势和FDX1的催化性能

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摘要

The green alga Chlamydomonas reinhardtii contains six plastidic [2Fe2S]-cluster ferredoxins (FDXs), with FDX1 as the predominant isoform under photoautotrophic growth. FDX2 is highly similar to FDX1 and has been shown to interact with specific enzymes (such as nitrite reductase), as well as to share interactors with FDX1, such as the hydrogenases (HYDA), ferredoxin:NAD(P) reductase I (FNR1), and pyruvate:ferredoxin oxidoreductase (PFR1), albeit performing at low catalytic rates. Here we report the FDX2 crystal structure solved at 1.18 Å resolution. Based on differences between the Chlorella fusca FDX1 and C. reinhardtii FDX2 structures, we generated and purified point-mutated versions of the FDX2 protein and assayed them in vitro for their ability to catalyze hydrogen and NADPH photo-production. The data show that structural differences at two amino acid positions contribute to functional differences between FDX1 and FDX2, suggesting that FDX2 might have evolved from FDX1 toward a different physiological role in the cell. Moreover, we demonstrate that the mutations affect both the midpoint potentials of the FDX and kinetics of the FNR reaction, possibly due to altered binding between FDX and FNR. An effect on H2 photo-production rates was also observed, although the kinetics of the reaction were not further characterized.Electronic supplementary materialThe online version of this article (doi:10.1007/s11120-015-0198-6) contains supplementary material, which is available to authorized users.
机译:绿藻衣藻(Chlamydomonas reinhardtii)包含6种质体[2Fe2S]-簇铁氧还蛋白(FDXs),其中FDX1是光合养分生长下的主要同工型。 FDX2与FDX1高度相似,并且已显示与特定酶(例如亚硝酸还原酶)相互作用,并且与FDX1共享相互作用物,例如氢化酶(HYDA),铁氧还蛋白:NAD(P)还原酶I(FNR1) ,以及丙酮酸:铁氧还蛋白氧化还原酶(PFR1),尽管催化速率较低。在这里,我们报告以1.18Å分辨率解析的FDX2晶体结构。根据小球藻FDX1和莱茵衣藻FDX2结构之间的差异,我们生成并纯化了FDX2蛋白的点突变形式,并在体外分析了它们催化氢和NADPH光产生的能力。数据表明,两个氨基酸位置的结构差异导致FDX1和FDX2之间的功能差异,这表明FDX2可能已经从FDX1进化为细胞中的不同生理角色。此外,我们证明了突变可能影响FDX的中点电位和FNR反应的动力学,这可能是由于FDX和FNR之间的结合改变。尽管未进一步表征反应动力学,但也观察到了对H2光产生速率的影响。电子补充材料本文的在线版本(doi:10.1007 / s11120-015-0198-6)包含补充材料,该材料为可供授权用户使用。

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