Johansson Catrine, Lillig Christopher Horst, Holmgren Arne
Medical Nobel Institute for Biochemistry, Department of Medical Biochemistry and Biophysics, Karolinska Institute, S-171 77 Stockholm, Sweden.
J Biol Chem. 2004 Feb 27;279(9):7537-43. doi: 10.1074/jbc.M312719200. Epub 2003 Dec 4.
Glutaredoxins catalyze glutathione-dependent thiol disulfide oxidoreductions via a GSH-binding site and active cysteines. Recently a second human glutaredoxin (Grx2), which is targeted to either mitochondria or the nucleus, was cloned. Grx2 contains the active site sequence CSYC, which is different from the conserved CPYC motif present in the cytosolic Grx1. Here we have compared the activity of Grx2 and Grx1 using glutathionylated substrates and active site mutants. The kinetic studies showed that Grx2 catalyzes the reduction of glutathionylated substrates with a lower rate but higher affinity compared with Grx1, resulting in almost identical catalytic efficiencies (k(cat)/K(m)). Permutation of the active site motifs of Grx1 and Grx2 revealed that the CSYC sequence of Grx2 is a prerequisite for its high affinity toward glutathionylated proteins, which comes at the price of lower k(cat). Furthermore Grx2 was a substrate for NADPH and thioredoxin reductase, which efficiently reduced both the active site disulfide and the GSH-glutaredoxin intermediate formed in the reduction of glutathionylated substrates. Using this novel electron donor pathway, Grx2 reduced low molecular weight disulfides such as CoA but with particular high efficiency glutathionylated substrates including GSSG. These results suggest an important role for Grx2 in protection and recovery from oxidative stress.
谷氧还蛋白通过谷胱甘肽结合位点和活性半胱氨酸催化依赖谷胱甘肽的硫醇二硫键氧化还原反应。最近,第二种定位于线粒体或细胞核的人谷氧还蛋白(Grx2)被克隆出来。Grx2含有活性位点序列CSYC,这与胞质Grx1中存在的保守CPYC基序不同。在这里,我们使用谷胱甘肽化底物和活性位点突变体比较了Grx2和Grx1的活性。动力学研究表明,与Grx1相比,Grx2催化谷胱甘肽化底物的还原速率较低,但亲和力较高,导致催化效率(k(cat)/K(m))几乎相同。Grx1和Grx2活性位点基序的置换表明,Grx2的CSYC序列是其对谷胱甘肽化蛋白具有高亲和力的先决条件,但其代价是k(cat)较低。此外,Grx2是NADPH和硫氧还蛋白还原酶的底物,它们能有效还原活性位点二硫键以及在谷胱甘肽化底物还原过程中形成的GSH-谷氧还蛋白中间体。利用这种新的电子供体途径,Grx2能还原低分子量二硫键,如辅酶A,但对包括GSSG在内的谷胱甘肽化底物具有特别高的还原效率。这些结果表明Grx2在氧化应激的保护和恢复中起重要作用。