Pujol-Carrion Nuria, Belli Gemma, Herrero Enrique, Nogues Antoni, de la Torre-Ruiz Maria Angeles
Departament de Ciències Mèdiques Bàsiques, Universitat de Lleida, Lleida 25198, Spain.
J Cell Sci. 2006 Nov 1;119(Pt 21):4554-64. doi: 10.1242/jcs.03229.
Grx3 and Grx4, two monothiol glutaredoxins of Saccharomyces cerevisiae, regulate Aft1 nuclear localisation. We provide evidence of a negative regulation of Aft1 activity by Grx3 and Grx4. The Grx domain of both proteins played an important role in Aft1 translocation to the cytoplasm. This function was not, however, dependent on the availability of iron. Here we demonstrate that Grx3, Grx4 and Aft1 interact each other both in vivo and in vitro, which suggests the existence of a functional protein complex. Interestingly, each interaction occurred independently on the third member of the complex. The absence of both Grx3 and Grx4 induced a clear enrichment of G1 cells in asynchronous cultures, a slow growth phenotype, the accumulation of intracellular iron and a constitutive activation of the genes regulated by Aft1. The grx3grx4 double mutant was highly sensitive to the oxidising agents hydrogen peroxide and t-butylhydroperoxide but not to diamide. The phenotypes of the double mutant grx3grx4 characterised in this study were mainly mediated by the Aft1 function, suggesting that grx3grx4 could be a suitable cellular model for studying endogenous oxidative stress induced by deregulation of the iron homeostasis. However, our results also suggest that Grx3 and Grx4 might play additional roles in the oxidative stress response through proteins other than Aft1.
酿酒酵母的两种单硫醇谷氧还蛋白Grx3和Grx4调节Aft1的核定位。我们提供了Grx3和Grx4对Aft1活性进行负调控的证据。这两种蛋白的Grx结构域在Aft1转运至细胞质过程中发挥重要作用。然而,该功能并不依赖于铁的可利用性。在此我们证明,Grx3、Grx4和Aft1在体内和体外均相互作用,这表明存在一种功能性蛋白复合物。有趣的是,每种相互作用均独立于复合物的第三个成员发生。Grx3和Grx4均缺失导致异步培养物中G1期细胞明显富集、生长缓慢的表型、细胞内铁的积累以及Aft1调控基因的组成型激活。grx3grx4双突变体对氧化剂过氧化氢和叔丁基过氧化氢高度敏感,但对二酰胺不敏感。本研究中所表征的双突变体grx3grx4的表型主要由Aft1功能介导,这表明grx3grx4可能是研究铁稳态失调诱导的内源性氧化应激的合适细胞模型。然而,我们的结果还表明,Grx3和Grx4可能通过Aft1以外的蛋白在氧化应激反应中发挥其他作用。