Alves Rui, Herrero Enrique, Sorribas Albert
Departament de Ciencies Mediques Basiques, Universidad de Lleida, Lleida, Spain.
Proteins. 2004 Aug 1;56(2):354-66. doi: 10.1002/prot.20110.
Adrenodoxin reductase homologue (Arh1) and yeast adrenodoxin homologue (Yah1) are essential Saccharomyces cerevisiae mitochondrial proteins involved in heme A biosynthesis and in iron-sulfur cluster (FeSC) assembly. Although the role of Arh1 and Yah1 in heme A biosynthesis is fairly well established, their systemic role on FeSC synthesis is not well understood. Also, while it is thought that the reductase Arh1 provides electrons for the ferredoxin Yah1, two hybrid experiments do not show interaction between the two proteins. In the first part of this article, we use structural bioinformatics methods to evaluate the possibility of interaction between Arh1 and Yah1. Using protein model building and docking algorithms, we predict a complex between Arh1 and Yah1 that is similar to that of their bovine homologues (adrenodoxin reductase-adrenodoxin), suggesting that Arh1 can indeed reduce Yah1. The predicted complex allows us to suggest point mutations to either molecule that could hinder Arh1-Yah1 interaction and test the role of Arh1 as the reductase for Yah1. In the second part of this article, we investigate the physiological role of Arh1-Yah1 on FeSC assembly by deriving alternative mathematical models of the process, based on published information. Comparing the dynamical behavior of each model with that observed in reported experiments emphasizes the importance of Arh1-Yah1 providing electrons for in situ FeSC repair. Only when this mode of action of either of the two proteins in FeSC synthesis is considered can previously reported results be reproduced.
肾上腺皮质铁氧还蛋白还原酶同源物(Arh1)和酵母肾上腺皮质铁氧还蛋白同源物(Yah1)是酿酒酵母中参与血红素A生物合成和铁硫簇(FeSC)组装的必需线粒体蛋白。虽然Arh1和Yah1在血红素A生物合成中的作用已相当明确,但它们在FeSC合成中的整体作用尚不清楚。此外,虽然人们认为还原酶Arh1为铁氧还蛋白Yah1提供电子,但双杂交实验并未显示这两种蛋白之间存在相互作用。在本文的第一部分,我们使用结构生物信息学方法评估Arh1和Yah1之间相互作用的可能性。通过蛋白质模型构建和对接算法,我们预测了Arh1和Yah1之间的复合物,该复合物与其牛同源物(肾上腺皮质铁氧还蛋白还原酶 - 肾上腺皮质铁氧还蛋白)的复合物相似,这表明Arh1确实可以还原Yah1。预测的复合物使我们能够对可能阻碍Arh1 - Yah1相互作用的任何一种分子提出点突变,并测试Arh1作为Yah1还原酶的作用。在本文的第二部分,我们根据已发表的信息推导该过程的替代数学模型,以研究Arh1 - Yah1在FeSC组装中的生理作用。将每个模型的动力学行为与报道实验中观察到的行为进行比较,强调了Arh1 - Yah1为原位FeSC修复提供电子的重要性。只有考虑到这两种蛋白在FeSC合成中的这种作用模式,才能重现先前报道的结果。