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由大鼠肝脏胞液和 Mu 类谷胱甘肽转移酶 HTP II 催化的苯并[a]芘、屈、苯并[c]菲和二苯并[a,h]蒽的抗二氢二醇环氧化物与谷胱甘肽的结合反应。

Conjugation of anti-dihydrodiol epoxides of benzo[a]pyrene, chrysene, benzo[c]phenanthrene and dibenz[a,h]anthracene with glutathione catalyzed by cytosol and by the Mu-class glutathione transferase HTP II from rat liver.

作者信息

Funk M, Gath I, Seidel A, Oesch F, Platt K L

机构信息

Institute of Toxicology, University of Mainz, Germany.

出版信息

Chem Biol Interact. 1995 Mar 30;95(1-2):189-201. doi: 10.1016/0009-2797(94)03357-9.

Abstract

The (+/-)-anti-dihydrodiol epoxides (DE) of benzo[a]pyrene (BP), chrysene (Chr), benzo[c]phenanthrene (BcPh) and dibenz[a,h]anthracene (DBA) were incubated in the presence of glutathione (GSH) with hepatic cytosol from untreated and Aroclor 1254 pretreated rats and with the Mu-class glutathione transferase (GST) HTP II from rat liver. The diastereoisomeric GSH conjugates formed were separated, identified and quantified by HPLC employing synthetic reference compounds. All (+/-)-anti-dihydrodiol epoxides investigated in this study were proven to be substrates of the cytosolic GSTs. The highly mutagenic and carcinogenic (+)-anti-DE with R,S,S,R absolute configuration was preferentially conjugated in the case of BP and Chr. Aroclor 1254 pretreatment increased the turnover 2-3-fold and changed the enantioselectivity. The previously purified GST HTP II exhibited a high degree of enantioselectivity (> or = 95%) towards the R,S,S,R-configurated enantiomer in the case of the bay-region (+/-)-anti-BPDE, (+/-)-anti-ChrDE and (+/-)-anti-DBADE, whereas in the case of fjord-region (+/-)-anti-BcPhDE both enantiomers were good substrates. The contribution of HTP II to the enzymatic activity of the cytosolic GST pool was estimated to be in the range of 11-32%. In agreement with previous results, the observed enantioselectivity of the purified enzyme seems to be of minor significance considering the total GST pool in the liver.

摘要

将苯并[a]芘(BP)、屈(Chr)、苯并[c]菲(BcPh)和二苯并[a,h]蒽(DBA)的(±)-反式二氢二醇环氧化物(DE),在谷胱甘肽(GSH)存在的情况下,与未处理的和经艾氏剂1254预处理的大鼠的肝细胞溶胶,以及大鼠肝脏中的Mu类谷胱甘肽转移酶(GST)HTP II一起温育。通过使用合成参考化合物的高效液相色谱法,对形成的非对映异构GSH缀合物进行分离、鉴定和定量。本研究中所研究的所有(±)-反式二氢二醇环氧化物均被证明是胞质GST的底物。BP和Chr的情况下,具有R,S,S,R绝对构型的高致突变性和致癌性(+)-反式DE优先被缀合。艾氏剂1254预处理使周转率提高了2至3倍,并改变了对映体选择性。对于海湾区域的(±)-反式BPDE、(±)-反式ChrDE和(±)-反式DBADE,先前纯化的GST HTP II对R,S,S,R构型的对映体表现出高度的对映体选择性(≥95%),而对于峡湾区域的(±)-反式BcPhDE,两种对映体都是良好的底物。HTP II对胞质GST池酶活性的贡献估计在11%至32%的范围内。与先前的结果一致,考虑到肝脏中的总GST池,纯化酶观察到的对映体选择性似乎意义不大。

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