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对来自植物病原菌胡萝卜软腐欧文氏菌的谷胱甘肽转移酶家族的功能和结构特性的描述。

Delineation of the functional and structural properties of the glutathione transferase family from the plant pathogen Erwinia carotovora.

作者信息

Theoharaki Christina, Chronopoulou Evangelia, Vlachakis Dimitrios, Ataya Farid S, Giannopoulos Panagiotis, Maurikou Sofia, Skopelitou Katholiki, Papageorgiou Anastassios C, Labrou Nikolaos E

机构信息

Laboratory of Enzyme Technology, Department of Biotechnology, School of Food, Biotechnology and Development, Agricultural University of Athens, 75 Iera Odos Street, 118 55, Athens, Greece.

Laboratory of Genetics, Department of Biotechnology, School of Food, Biotechnology and Development, Agricultural University of Athens, 75 Iera Odos Street, 118 55, Athens, Greece.

出版信息

Funct Integr Genomics. 2019 Jan;19(1):1-12. doi: 10.1007/s10142-018-0618-8. Epub 2018 Jun 25.

Abstract

Erwinia carotovora, a widespread plant pathogen that causes soft rot disease in many plants, is considered a major threat in agriculture. Bacterial glutathione transferases (GSTs) play important roles in a variety of metabolic pathways and processes, such as the biodegradation of xenobiotics, protection against abiotic stress, and resistance against antimicrobial drugs. The GST family of canonical soluble enzymes from Erwinia carotovora subsp. atroseptica strain SCRI1043 (EcaGSTs) was investigated. Genome analysis showed the presence of six putative canonical cytoplasmic EcaGSTs, which were revealed by phylogenetic analysis to belong to the well-characterized GST classes beta, nu, phi, and zeta. The analysis also revealed the presence of two isoenzymes that were phylogenetically close to the omega class of GSTs, but formed a distinct class. The EcaGSTs were cloned and expressed in Escherichia coli, and their catalytic activity toward different electrophilic substrates was elucidated. The EcaGSTs catalyzed different types of reactions, although all enzymes were particularly active in reactions involving electrophile substitution. Gene and protein expression profiling conducted under normal culture conditions as well as in the presence of the herbicide alachlor and the xenobiotic 1-chloro-2,4-dinitrobenzene (CDNB) showed that the isoenzyme EcaGST1, belonging to the omega-like class, was specifically induced at both the protein and mRNA levels. EcaGST1 presumably participates in counteracting the xenobiotic toxicity and/or abiotic stress conditions, and may therefore represent a novel molecular target in the development of new chemical treatments to control soft rot diseases.

摘要

胡萝卜软腐欧文氏菌是一种广泛存在的植物病原体,可在许多植物中引发软腐病,被视为农业中的重大威胁。细菌谷胱甘肽转移酶(GSTs)在多种代谢途径和过程中发挥重要作用,如异生物降解、抗非生物胁迫以及抗抗菌药物。对胡萝卜软腐欧文氏菌亚种黑腐欧文氏菌菌株SCRI1043的典型可溶性酶GST家族(EcaGSTs)进行了研究。基因组分析表明存在6种假定的典型细胞质EcaGSTs,系统发育分析显示它们属于特征明确的GST类别β、ν、φ和ζ。分析还揭示存在两种同工酶,它们在系统发育上与GSTs的ω类别相近,但形成了一个独特的类别。EcaGSTs在大肠杆菌中克隆并表达,阐明了它们对不同亲电底物的催化活性。尽管所有酶在涉及亲电取代的反应中都特别活跃,但EcaGSTs催化不同类型的反应。在正常培养条件下以及存在除草剂甲草胺和异生物1 - 氯 - 2,4 - 二硝基苯(CDNB)的情况下进行的基因和蛋白质表达谱分析表明,属于ω样类别的同工酶EcaGST1在蛋白质和mRNA水平均被特异性诱导。EcaGST1可能参与对抗异生物毒性和/或非生物胁迫条件,因此可能代表开发控制软腐病新化学处理方法的新分子靶点。

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