Departament de Ciències Mèdiques Bàsiques, Facultat de Medicina, IRBLleida, Universitat de Lleida, 25001 Lleida, Spain.
Int J Mol Sci. 2022 Oct 29;23(21):13151. doi: 10.3390/ijms232113151.
Friedreich's ataxia is a neurodegenerative disease caused by mutations in the frataxin gene. Frataxin homologues, including bacterial CyaY proteins, can be found in most species and play a fundamental role in mitochondrial iron homeostasis, either promoting iron assembly into metaloproteins or contributing to iron detoxification. While several lines of evidence suggest that eukaryotic frataxins are more effective than bacterial ones in iron detoxification, the residues involved in this gain of function are unknown. In this work, we analyze conservation of amino acid sequence and protein structure among frataxins and CyaY proteins to identify four highly conserved residue clusters and group them into potential functional clusters. Clusters 1, 2, and 4 are present in eukaryotic frataxins and bacterial CyaY proteins. Cluster 3, containing two serines, a tyrosine, and a glutamate, is only present in eukaryotic frataxins and on CyaY proteins from the genus. Residues from cluster 3 are blocking a small cavity of about 40 Å present in 's CyaY. The function of this cluster is unknown, but we hypothesize that its tyrosine may contribute to prevent formation of reactive oxygen species during iron detoxification. This cluster provides an example of gain of function during evolution in a protein involved in iron homeostasis, as our results suggests that Cluster 3 was present in the endosymbiont ancestor of mitochondria and was conserved in eukaryotic frataxins.
弗里德赖希共济失调是一种由 frataxin 基因突变引起的神经退行性疾病。Frataxin 同源物,包括细菌 CyaY 蛋白,存在于大多数物种中,在维持线粒体铁稳态方面发挥着重要作用,促进铁组装成金属蛋白或有助于铁解毒。虽然有几条证据表明真核 frataxins 在铁解毒方面比细菌更有效,但参与这种功能获得的残基尚不清楚。在这项工作中,我们分析了 frataxins 和 CyaY 蛋白之间的氨基酸序列和蛋白质结构的保守性,以鉴定四个高度保守的残基簇,并将它们分为潜在的功能簇。簇 1、2 和 4 存在于真核 frataxins 和细菌 CyaY 蛋白中。簇 3 仅存在于真核 frataxins 和属的 CyaY 蛋白中,包含两个丝氨酸、一个酪氨酸和一个谷氨酸。簇 3 包含的残基阻止了大约 40 Å 的小空腔的存在。CyaY 的。该簇的功能未知,但我们假设其酪氨酸可能有助于防止铁解毒过程中活性氧的形成。该簇提供了一个在参与铁稳态的蛋白质中进化过程中功能获得的例子,因为我们的结果表明,簇 3 存在于线粒体的内共生体祖先中,并在真核 frataxins 中得到保守。