Institute of Microbiology, Seoul National University, Seoul 151-742, South Korea.
Biochem Biophys Res Commun. 2010 Feb 12;392(3):467-72. doi: 10.1016/j.bbrc.2010.01.051. Epub 2010 Jan 18.
Mitochondrial monothiol glutaredoxins that bind Fe-S cluster are known to participate in Fe-S cluster assembly. However, their precise role has not been well understood. Among three monothiol glutaredoxins (Grx3, 4, and 5) in Schizosaccharomyces pombe only Grx5 resides in mitochondria. The Deltagrx5 mutant requires cysteine on minimal media, and does not grow on non-fermentable carbon source such as glycerol. We found that the mutant is low in the activity of Fe-S enzymes in mitochondria as well as in the cytoplasm. Screening of multi-copy suppressor of growth defects of the mutant identified isa1(+) gene encoding a putative A-type Fe-S scaffold, in addition to mas5(+) and hsc1(+) genes encoding putative chaperones for Fe-S assembly process. Examination of other scaffold and chaperone genes revealed that isa2(+), but not isu1(+) and ssc1(+), complemented the growth phenotype of Deltagrx5 mutant as isa1(+) did, partly through restoration of Fe-S enzyme activities. The mutant also showed a significant decrease in the amount of mitochondrial DNA. We demonstrated that Grx5 interacts in vivo with Isa1 and Isa2 proteins in mitochondria by observing bimolecular fluorescence complementation. These results indicate that Grx5 plays a central role in Fe-S assembly process through interaction with A-type Fe-S scaffold proteins Isa1 and Isa2, each of which is an essential protein in S. pombe, and supports mitochondrial genome integrity as well as Fe-S assembly.
已知结合 Fe-S 簇的线粒体单硫醇谷氧还蛋白参与 Fe-S 簇的组装。然而,它们的确切作用还没有被很好地理解。在裂殖酵母中有三种单硫醇谷氧还蛋白(Grx3、4 和 5),只有 Grx5 存在于线粒体中。Deltagrx5 突变体在最低培养基中需要半胱氨酸,并且不能在非发酵碳源如甘油上生长。我们发现突变体在线粒体和细胞质中的 Fe-S 酶活性都很低。对突变体生长缺陷的多拷贝抑制筛选鉴定了编码假定 A 型 Fe-S 支架的 isa1(+)基因,除了编码 Fe-S 组装过程假定伴侣的 mas5(+)和 hsc1(+)基因之外。对其他支架和伴侣基因的检查表明,isa2(+),而不是 isu1(+)和 ssc1(+),与 isa1(+)一样部分通过恢复 Fe-S 酶活性来补充 Deltagrx5 突变体的生长表型。突变体还显示线粒体 DNA 数量显著减少。我们通过观察双分子荧光互补实验证明了 Grx5 在体内与线粒体中的 Isa1 和 Isa2 蛋白相互作用。这些结果表明,Grx5 通过与 A 型 Fe-S 支架蛋白 Isa1 和 Isa2 相互作用,在 Fe-S 组装过程中发挥核心作用,这两种蛋白都是裂殖酵母中的必需蛋白,并且支持线粒体基因组的完整性以及 Fe-S 的组装。