水稻谷胱甘肽s -转移酶(OsGSTF5)的分子克隆、表达及生化特性研究

Hyun-Young Cho, Hae Joo Lee, Kwang-Hoon Kong
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引用次数: 21

摘要

从水稻中克隆出一种谷胱甘肽s -转移酶(GST),该酶与仅存在于植物中的phi (F)类酶有关。基于OsGSTF5 (GenBank登录号:GenBank Accession No. 5),利用寡核苷酸引物PCR克隆GST cDNA。AF309382)序列。cDNA由669 bp的开放阅读框组成,编码223个氨基酸。该基因的肽段与其他已知的phi类GST序列总体同源性为75%。另一方面,OsGSTF5序列与我们先前研究克隆的OsGSTF3序列的同源性仅为34% (Cho et al., 2005)。利用pET载体体系在大肠杆菌中表达该基因,并通过GSH-Sepharose亲和柱层析纯化该基因。表达的OsGSTF5形成由28 kDa亚基组成的同型二聚体,其pI值约为7.8。表达的OsGSTF5对1-氯-2,4-二硝基苯和1,2-环氧-3-(对硝基苯氧基)丙烷具有谷胱甘肽偶联活性,对异丙苯过氧化氢具有谷胱甘肽过氧化物酶活性。OsGSTF5对除草剂甲草胺、莠去津和异草胺也有较高的活性。OsGSTF5对ShexylGSH、benastatin A和血红素的抑制高度敏感。我们从这些结果中提出,表达的OsGSTF5是一个phi类GST,似乎在除草剂和GPOX活性的偶联中起作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A phi class glutathione S-transferase from Oryza sativa (OsGSTF5): molecular cloning, expression and biochemical characteristics.

A glutathione S-transferase (GST) related to the phi (F) class of enzymes only found in plants has been cloned from the Oryza sativa. The GST cDNA was cloned by PCR using oligonucleotide primers based on the OsGSTF5 (GenBank Accession No. AF309382) sequences. The cDNA was composed of a 669-bp open reading frame encoding for 223 amino acids. The deduced peptide of this gene shared on overall identity of 75% with other known phi class GST sequences. On the other hands, the OsGSTF5 sequence showed only 34% identity with the sequence of the OsGSTF3 cloned by our previous study (Cho et al., 2005). This gene was expressed in Escherichia coli with the pET vector system and the gene product was purified to homogeneity by GSH-Sepharose affinity column chromatography. The expressed OsGSTF5 formed a homo-dimer composed of 28 kDa subunit and its pI value was approximately 7.8. The expressed OsGSTF5 displayed glutathione conjugation activity toward 1-chloro-2,4-dinitrobenzene and 1,2-epoxy-3-(p-nitrophenoxy)propane and glutathione peroxidase activity toward cumene hydroperoxide. The OsGSTF5 also had high activities towards the herbicides alachlor, atrazine and metolachlor. The OsGSTF5 was highly sensitive to inhibition by ShexylGSH, benastatin A and hematin. We propose from these results that the expressed OsGSTF5 is a phi class GST and appears to play a role in the conjugation of herbicide and GPOX activity.

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