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首页> 外文期刊>The Journal of biological chemistry >Glutathione Degradation by the Alternative Pathway (DUG Pathway) in Saccharomyces cerevisiae Is Initiated by (Dug2p-Dug3p)2 Complex, a Novel Glutamine Amidotransferase (GATase) Enzyme Acting on Glutathione
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Glutathione Degradation by the Alternative Pathway (DUG Pathway) in Saccharomyces cerevisiae Is Initiated by (Dug2p-Dug3p)2 Complex, a Novel Glutamine Amidotransferase (GATase) Enzyme Acting on Glutathione

机译:通过(Dug2P-Dug3P)2络合物,由作用于谷胱甘肽的新型谷氨酰胺酰胺转移酶(Gatase)酶,通过(Dug2P-Dug3P)2络合物引发谷胱甘肽(Dug2P-Dug3P)的谷胱甘肽(Dug Tudway)。

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The recently identified, fungi-specific alternative pathway of glutathione degradation requires the participation of three genes, DUG1, DUG2, and DUG3. Dug1p has earlier been shown to function as a Cys-Gly-specific dipeptidase. In the present study, we describe the characterization of Dug2p and Dug3p. Dug3p has a functional glutamine amidotransferase (GATase) II domain that is catalytically important for glutathione degradation as demonstrated through mutational analysis. Dug2p, which has an N-terminal WD40 and a C-terminal M20A peptidase domain, has no peptidase activity. The previously demonstrated Dug2p-Dug3p interaction was found to be mediated through the WD40 domain of Dug2p. Dug2p was also shown to be able to homodimerize, and this was mediated by its M20A peptidase domain. In vitro reconstitution assays revealed that Dug2p and Dug3p were required together for the cleavage of glutathione into glutamate and Cys-Gly. Purification through gel filtration chromatography confirmed the formation of a Dug2p-Dug3p complex. The functional complex had a molecular weight that corresponded to (Dug2p-Dug3p)2 in addition to higher molecular weight oligomers and displayed Michaelis-Menten kinetics. (Dug2p-Dug3p)2 had a Km for glutathione of 1.2 mm, suggesting a novel GATase enzyme that acted on glutathione. Dug1p activity in glutathione degradation was found to be restricted to its Cys-Gly peptidase activity, which functioned downstream of the (Dug2p-Dug3p)2 GATase. The DUG2 and DUG3 genes, but not DUG1, were derepressed by sulfur limitation. Based on these studies and the functioning of GATases, a mechanism is proposed for the functioning of the Dug proteins in the degradation of glutathione.
机译:最近鉴定的谷胱甘肽劣化的特异性替代途径需要参与三个基因,Dug1,Dug2和Dug3。已提前显示Dug1P以用作Cys-Gly特异性二肽酶。在本研究中,我们描述了Dug2P和Dug3P的表征。 Dug3P具有官能谷氨酰胺酰胺转移酶(Gatase)II结构域,其对于通过突变分析证明的谷胱甘肽降解催化重要性。具有N-末端Wd40和C末端M20A肽酶结构域的Dug2P没有肽酶活性。发现先前显示的Dug2P-Dug3P相互作用通过Dug2P的WD40结构域介导。 Dug2P还显示能够同态化,这是由其M20A肽酶结构域介导的。体外重构测定显示,需要将谷胱甘肽切割成谷氨酸和Cys-Gyly所需的Dug2P和Dug3P。通过凝胶过滤色谱法纯化证实了Dug2P-Dug3P复合物的形成。功能络合物除了高分子量低聚物外,还具有对应于(Dug2P-Dug3P)2的分子量,并显示迈克莱斯 - MENTEN动力学。 (Dug2P-Dug3P)2为1.2毫米的谷胱甘肽有km,表明一种在谷胱甘肽上作用的新型加碱基。发现谷胱甘肽降解中的Dug1P活性限于其Cys-Gly肽酶活性,其在(Dug2P-Dug3P)2个Gatase的下游作用。 Dug2和Dug3基因,但没有Dug1,通过硫的限制进行大规模压抑。基于这些研究和加湿的功能,提出了一种机理,用于在谷胱甘肽降解中的挖土蛋白的作用。

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