Serrato Antonio Jesús, Guilleminot Jocelyne, Meyer Yves, Vignols Florence
Laboratoire Génome et Développement des Plantes, UMR CNRS-IRD-UPVD 5096, Université de Perpignan, Perpignan, Cedex, France.
Physiol Plant. 2008 Jul;133(3):611-22. doi: 10.1111/j.1399-3054.2008.01093.x. Epub 2008 Jul 1.
The Arabidopsis thaliana thioredoxin subgroup h III is composed of four members and includes the two monocysteinic (CXXS) thioredoxins encoded by the genome. We show that AtCXXS1 is the ortholog of monocysteinic thioredoxins present in all higher plants. In contrast, unicellular algae and the moss Physcomitrella patens do not encode monocysteinic thioredoxin. AtCXXS2, the second monocysteinic thioredoxin of Arabidopsis has no ortholog in any other higher plants. It probably appeared recently by duplications of a dicysteinic thioredoxin of the same subgroup h III. Both monocysteinic thioredoxins show a low disulfide reductase activity in vitro but are very efficient as disulfide isomerases in RNAse refolding tests. The possible interactions of these proteins with the glutathione glutaredoxin pathway are discussed on the basis of recent papers.
拟南芥硫氧还蛋白h III亚组由四个成员组成,包括基因组编码的两个单半胱氨酸(CXXS)硫氧还蛋白。我们发现AtCXXS1是所有高等植物中存在的单半胱氨酸硫氧还蛋白的直系同源物。相比之下,单细胞藻类和苔藓小立碗藓不编码单半胱氨酸硫氧还蛋白。拟南芥的第二个单半胱氨酸硫氧还蛋白AtCXXS2在任何其他高等植物中都没有直系同源物。它可能是最近由同一h III亚组的双半胱氨酸硫氧还蛋白复制产生的。两种单半胱氨酸硫氧还蛋白在体外均表现出较低的二硫键还原酶活性,但在核糖核酸酶重折叠试验中作为二硫键异构酶非常有效。基于最近的论文讨论了这些蛋白质与谷胱甘肽谷氧还蛋白途径可能的相互作用。