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Role of the CPC sequence in the antioxidant activity of GcGAST protein in E.coli

机译:CPC序列在大肠杆菌GcGAST蛋白抗氧化活性中的作用

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Gibberellic acid stimulated transcriptional protein from Gymnadenia conopsea (GcGAST) is a novel member of GA-induced cysteine-rich protein family, which shared 12 highly conserved cysteine residues with other members in C-terminal domain. In the present paper, the recombinant plasmid, as well as two mutants Serine-Proline-Cysteine (SPC) and Cysteine-Proline-Serine (CPS), were constructed to investigate for the first time the effects of the cysteines in Cysteine-Proline-Cysteine (CPC) sequence on the antioxidant activity of GcGAST protein. It was found that E.coli expressing wt GcGAST exhibited significant resistance against exogenous H2O2. Similar phenomenon was observed for E.coli harboring SPC mutant. In contrast, the host cell overexpressing CPS mutant became more sensitive to H2O2. Some studies on the level of inclusion body revealed that wt GcGAST and SPC mutant embedded in Inclusion bodies (IB) could effectively eliminate H 2O2, whereas the mutagenesis to Ser of the second Cys residue in CPC sequence gave rise to the compete loss of H2O 2-eliminating ability. Fourier transform Infrared spectroscopy analysis indicated that the IB of CPS mutant contained more ??-sheet secondary structure than wt and SPC mutant. Non-reducing SDS-PAGE combined western-blotting analysis revealed that the disulfide bonds were important for the formation of IBs of wt GcGAST and SPC mutant, whereas non-reducing SDS-PAGE of resolubilized IBs showed that hydrophobic interaction favored the aggregation of IBs in CPS mutant. Taken together, these results suggested that GcGAST possessed antioxidant activity in the level of IB, which made some contribution to cellular resistance to H2O2. More importantly, the second cysteine residue in CPC sequence was more essential for its antioxidant biological function. ? 2013 Springer Science+Business Media New York.
机译:赤霉素刺激的Gymnadenia conopsea(GcGAST)转录蛋白是GA诱导的富含半胱氨酸的蛋白质家族的新成员,该家族与C末端域中的其他成员共享12个高度保守的半胱氨酸残基。在本文中,构建了重组质粒以及两个突变体丝氨酸-脯氨酸-半胱氨酸(SPC)和半胱氨酸-脯氨酸-丝氨酸(CPS),以首次研究半胱氨酸在半胱氨酸-脯氨酸-中的作用。半胱氨酸(CPC)序列对GcGAST蛋白的抗氧化活性。发现表达wt​​ GcGAST的大肠杆菌对外源H 2 O 2表现出显着的抗性。对于带有SPC突变体的大肠杆菌观察到类似现象。相反,过量表达CPS的宿主细胞对H2O2变得更加敏感。一些关于包涵体水平的研究表明,wt GcGAST和包埋在包涵体(IB)中的SPC突变体可以有效消除H 2O2,而诱变CPC序列中第二个Cys残基对Ser的诱变则导致了H2O 2的竞争损失。 -消除能力。傅里叶变换红外光谱分析表明,CPS突变体的IB比wt和SPC突变体包含更多的β-折叠二级结构。非还原SDS-PAGE结合蛋白质印迹分析表明,二硫键对于wt GcGAST和SPC突变体IB的形成很重要,而可还原IBs的非还原SDS-PAGE表明疏水相互作用有利于IBs的聚集。 CPS突变体。综上所述,这些结果表明GcGAST在IB水平上具有抗氧化活性,这对细胞对H2O2的抗性做出了贡献。更重要的是,CPC序列中的第二个半胱氨酸残基对其抗氧化生物学功能更为重要。 ? 2013年Springer Science + Business Media纽约。

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