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Bacterial peptide methionine sulphoxide reductase: co-induction with glutathione S-transferase during chemical stress conditions.

机译:细菌肽蛋氨酸亚砜还原酶:在化学胁迫条件下与谷胱甘肽S-转移酶共同诱导。

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摘要

Peptide methionine sulphoxide reductase (MsrA; EC 1.8.4.6) is a ubiquitous enzyme catalysing the reduction of methionine sulphoxide to methionine in proteins, while the glutathione S-transferases (GSTs) are a major family of detoxification enzymes. A gene homologous to MsrA was identified in a chromosomal fragment from the bacterium Ochrobactrum anthropi, and this gene is located just downstream of a GST gene identified previously (OaGST) [Favaloro, Tamburro, Angelucci, De Luca, Melino, Di Ilio and Rotilio (1998) Biochem. J. 335, 573-579]. This raises the question of whether the products of these two genes may be involved in a common cellular protection function. To test this hypothesis, the hypothetical MsrA protein has been overexpressed in Escherichia coli as a functional 51 kDa GST fusion protein. Following cleavage with thrombin and purification, the soluble 24 kDa protein showed MsrA activity with N-acetylmethionine sulphoxide as substrate, as well as with other sulphoxide compounds. Therefore polyclonal antibodies were raised against the recombinant protein, and the modulation of MsrA in this bacterium, grown in the presence of different stimulants simulating several stress conditions, was investigated. The level of expression of MsrA was detected both by measuring the mRNA level and by immunoblotting experiments, in addition to measuring its catalytic activity. MsrA is a constitutive enzyme which is also inducible by chemical stress involving phenolic compounds such as phenol and 4-chlorophenol. Recently we reported that the GST of this bacterium, like MsrA, is only modulated by toxic chemical compounds [Favaloro, Tamburro, Trofino, Bologna, Rotilio and Heipieper (2000) Biochem. J. 346, 553-559]; therefore this is the first indication of a co-induction of the MsrA and GST enzymes during chemical stress.
机译:肽蛋氨酸亚砜还原酶(MsrA; EC 1.8.4.6)是一种普遍存在的酶,可催化蛋白质中蛋氨酸亚砜还原为蛋氨酸,而谷胱甘肽S-转移酶(GST)是排毒酶的主要家族。在人类嗜人牙ch细菌的染色体片段中鉴定出与MsrA同源的基因,该基因位于先前鉴定的GST基因(OaGST)的下游[Favaloro,Tamburro,Angelucci,De Luca,Melino,Di Ilio和Rotilio( 1998)生物化学。 J. 335,573-579]。这就提出了这两个基因的产物是否可能参与共同的细胞保护功能的问题。为了验证该假设,假设的MsrA蛋白已在大肠杆菌中过表达,成为功能性的51 kDa GST融合蛋白。用凝血酶裂解并纯化后,可溶的24 kDa蛋白以N-乙酰甲硫氨酸亚砜为底物以及其他亚砜化合物显示MsrA活性。因此,产生了针对重组蛋白的多克隆抗体,并且研究了在模拟几种胁迫条件的不同刺激物存在下生长的该细菌中MsrA的调节。除了测量其催化活性之外,还通过测量mRNA水平和通过免疫印迹实验来检测MsrA的表达水平。 MsrA是一种组成性酶,也可通过涉及酚类化合物(例如苯酚和4-氯苯酚)的化学胁迫诱导。最近,我们报道了这种细菌的GST,如MsrA,仅受有毒化学化合物调控[Favaloro,Tamburro,Trofino,Bologna,Rotilio和Heipieper(2000)Biochem。 J. 346,553-559];因此,这是化学胁迫期间MsrA和GST酶共同诱导的第一个迹象。

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