首页> 外文OA文献 >Molecular cloning and heterologous expression of a cDNA encoding a mouse glutathione S-transferase Yc subunit possessing high catalytic activity for aflatoxin B1-8,9-epoxide.
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Molecular cloning and heterologous expression of a cDNA encoding a mouse glutathione S-transferase Yc subunit possessing high catalytic activity for aflatoxin B1-8,9-epoxide.

机译:编码具有高催化活性黄曲霉毒素B1-8,9-环氧的小鼠谷胱甘肽S-转移酶Yc亚基的cDNA的分子克隆和异源表达。

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摘要

Resistance to the carcinogenic effects of aflatoxin B1 (AFB1) in the mouse is due to the constitutive expression of an Alpha-class glutathione S-transferase (GST), YcYc, with high detoxification activity towards AFB1-8,9-epoxide. A cDNA clone (pmusGST Yc) for a murine GST Yc polypeptide has been isolated. Sequencing has shown the cDNA insert of pmusGST Yc to be 922 bp in length, with an open reading frame of 663 bp that encodes a polypeptide of M(r) 25358. The primary structure of the murine GST Yc subunit predicted by pmusGST Yc is in complete agreement with the partial amino acid sequence of the aflatoxin-metabolizing mouse liver GST described previously [McLellan, Kerr, Cronshaw & Hayes (1991) Biochem. J. 276, 461-469]. A plasmid, termed pKK-musGST Yc, which permits the expression of the murine Yc subunit in Escherichia coli, has been constructed. The murine GST expressed in E. coli was purified and found to be catalytically active towards several GST substrates, including AFB1-8,9-epoxide. This enzyme was also found to possess electrophoretic and immunochemical properties closely similar to those of the GST Yc subunit from mouse liver. However, the GST synthesized in E. coli and the constitutive mouse liver Alpha-class GST exhibited small differences in their chromatographic behaviour during reverse-phase h.p.l.c. Automated Edman degradation revealed alanine to be the N-terminal amino acid in the GST Yc subunit expressed in E. coli, whereas the enzyme in mouse liver possesses a blocked N-terminus. Although sequencing showed that the purified Yc subunit from E. coli lacked the initiator methionine, the amino acid sequence obtained over the first eleven N-terminal residues agreed with that predicted from the cDNA clone, pmusGST Yc. Comparison of the deduced amino acid sequence of the mouse Yc polypeptide with the primary structures of the rat Alpha-class GST enzymes revealed that it is more closely related to the ethoxyquin-induced rat liver Yc2 subunit than to the constitutively expressed rat liver Yc1 subunit. The significance of the fact that both mouse Yc and rat Yc2 exhibit high catalytic activity towards AFB1-8,9-epoxide, whereas rat Yc1 possesses little activity towards this compound, is discussed in terms of structure/function.
机译:对小鼠中黄曲霉毒素B1(AFB1)致癌作用的抗性归因于Alpha类谷胱甘肽S转移酶(GST)YcYc的组成型表达,对AFB1-8,9-环氧具有高解毒活性。已经分离出鼠GST Yc多肽的cDNA克隆(pmusGST Yc)。测序显示,pmusGST Yc的cDNA插入片段长度为922 bp,开放阅读框为663 bp,编码M(r)25358的多肽。pmusGST Yc预测的鼠GST Yc亚基的一级结构位于与先前描述的黄曲霉毒素代谢小鼠肝脏GST的部分氨基酸序列完全一致[McLellan,Kerr,Cronshaw&Hayes(1991)Biochem。 J. 276,461-469]。已经构建了称为pKK-musGST Yc的质粒,该质粒允许鼠Yc亚基在大肠杆菌中表达。纯化了在大肠杆菌中表达的鼠类GST,发现对几种GST底物(包括AFB1-8,9-环氧)具有催化活性。还发现该酶具有与小鼠肝脏的GST Yc亚基相似的电泳和免疫化学特性。但是,在大肠杆菌和本构小鼠肝脏Alpha类GST中合成的GST在反相h.p.l.c期间的色谱行为表现出很小的差异。埃德曼的自动降解揭示了丙氨酸是大肠杆菌中表达的GST Yc亚基的N末端氨基酸,而小鼠肝脏中的酶具有被封闭的N末端。尽管测序表明从大肠杆菌中纯化的Yc亚基缺少引发剂甲硫氨酸,但在前11个N端残基上获得的氨基酸序列与cDNA克隆pmusGST Yc预测的氨基酸序列一致。小鼠Yc多肽的推导氨基酸序列与大鼠Alpha类GST酶的一级结构的比较表明,它与乙氧基喹啉诱导的大鼠肝Yc2亚基关系更密切,而与组成型表达的大鼠肝Yc1亚基关系更密切。从结构/功能上讨论了小鼠Yc和大鼠Yc2对AFB1-8,9-环氧化合物都表现出高催化活性,而大鼠Yc1对这种化合物几乎没有活性的事实的重要性。

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