The Ohio State University Biophysics Program, The Ohio State University, 484 West 12th Avenue, Columbus, Ohio, USA43210.
The Ohio State University Biochemistry Program, The Ohio State University, 484 West 12th Avenue, Columbus, Ohio, USA43210.
Metallomics. 2020 Jun 24;12(6):902-915. doi: 10.1039/c9mt00286c.
Iron-sulfur cluster proteins play key roles in a multitude of physiological processes; including gene expression, nitrogen and oxygen sensing, electron transfer, and DNA repair. Biosynthesis of iron-sulfur clusters occurs in mitochondria on iron-sulfur cluster scaffold proteins in the form of [2Fe-2S] cores that are then transferred to apo targets within metabolic or respiratory pathways. The mechanism by which cytosolic Fe-S cluster proteins mature to their holo forms remains controversial. The mitochondrial inner membrane protein Atm1p can transport glutathione-coordinated iron-sulfur clusters, which may connect the mitochondrial and cytosolic iron-sulfur cluster assembly systems. Herein we describe experiments on the yeast Atm1p/ABCB7 exporter that provide additional support for a glutathione-complexed cluster as the natural physiological substrate and a reflection of the endosymbiotic model of mitochondrial evolution. These studies provide insight on the mechanism of cluster transport and the molecular basis of human disease conditions related to ABCB7. Recruitment of MgATP following cluster binding promotes a structural transition from closed to open conformations that is mediated by coupling helices, with MgATP hydrolysis facilitating the return to the closed state.
铁硫簇蛋白在多种生理过程中发挥着关键作用;包括基因表达、氮氧感应、电子转移和 DNA 修复。铁硫簇的生物合成发生在线粒体中,形式为 [2Fe-2S] 核心,然后转移到代谢或呼吸途径中的 apo 靶标上。胞质铁硫簇蛋白成熟为其全酶形式的机制仍存在争议。线粒体内膜蛋白 Atm1p 可以转运谷胱甘肽协调的铁硫簇,这可能连接了线粒体和胞质铁硫簇组装系统。本文描述了酵母 Atm1p/ABCB7 外排泵的实验,为谷胱甘肽配合的簇作为天然生理底物提供了额外的支持,并反映了线粒体进化的内共生模型。这些研究为簇的转运机制以及与 ABCB7 相关的人类疾病状况的分子基础提供了深入了解。簇结合后 MgATP 的募集促进了从关闭到开放构象的结构转变,这是由偶联螺旋介导的,MgATP 水解促进了向关闭状态的返回。