Department of Chemistry and Biochemistry, The Ohio State University, 100 West 18th Avenue, Columbus, Ohio 43210, USA.
Metallomics. 2018 Sep 19;10(9):1282-1290. doi: 10.1039/c8mt00128f.
The [2Fe-2S] cluster-bridged complex of BOLA3 with GLRX5 has been implicated in cluster trafficking, but cluster exchange involving this heterocomplex has not been reported. Herein we describe an investigation of the cluster exchange reactivity of holo BOLA3-GLRX complexes using two different monothiol glutaredoxins, H.s. GLRX5 and S.c. Grx3, which share significant identity. We observe that a 1 : 1 mixture of apo BOLA3 and glutaredoxin protein is able to accept a cluster from donors such as ISCU and a 2Fe-2S4 complex, with preferential formation of the cluster-bridged heterodimer over the plausible holo homodimeric glutaredoxin. Holo BOLA3-GLRX5 transfers clusters to apo acceptors at rates comparable to other Fe-S cluster trafficking proteins. Isothermal titration calorimetry experiments with apo proteins demonstrated a strong binding of BOLA3 with both GLRX5 and Grx3, while binding with an alternative mitochondrial partner, NFU1, was weak. Cluster exchange and calorimetry experiments resulted in a very similar behavior for yeast Grx3 (cytosolic) and human GLRX5 (mitochondrial), indicating conservation across the monothiol glutaredoxin family for interactions with BOLA3 and supporting a functional role for the BOLA3-GLRX5 heterocomplex relative to the previously proposed BOLA3-NFU1 interaction. The results also demonstrate rapid formation of the heterocomplexed holo cluster via delivery from a glutathione-complexed cluster, again indicative of the physiological relevance of the 2Fe-2S4 complex in the cellular labile iron pool.
[2Fe-2S]簇桥联复合物 BOLA3 与 GLRX5 已被牵涉到簇运输中,但涉及这种异源复合物的簇交换尚未被报道。本文描述了对全酶 BOLA3-GLRX 复合物的簇交换反应性的研究,使用了两种不同的单硫谷氧还蛋白,H.s. GLRX5 和 S.c. Grx3,它们具有显著的同源性。我们观察到,apo BOLA3 和谷氧还蛋白蛋白的 1:1 混合物能够接受来自 ISCU 和 2Fe-2S4 复合物等供体的簇,优先形成簇桥联的异源二聚体,而不是可能的全酶同源二聚体谷氧还蛋白。全酶 BOLA3-GLRX5 以与其他 Fe-S 簇转运蛋白相当的速率将簇转移给 apo 受体。与 apo 蛋白的等温滴定量热实验表明,BO LA3 与 GLRX5 和 Grx3 都具有强烈的结合,而与替代的线粒体伴侣 NFU1 的结合较弱。簇交换和量热实验表明,酵母 Grx3(胞质溶胶)和人 GLRX5(线粒体)的行为非常相似,这表明在单硫谷氧还蛋白家族中,与 BOLA3 的相互作用具有保守性,并支持 BOLA3-GLRX5 异源复合物相对于先前提出的 BOLA3-NFU1 相互作用的功能作用。结果还表明,通过来自谷胱甘肽复合物的簇的传递,快速形成异源复合物的全酶簇,再次表明 2Fe-2S4 复合物在细胞不稳定铁池中具有生理相关性。