Trantírek L, Hynková K, Nagata Y, Murzin A, Ansorgová A, Sklenár V, Damborský J
Laboratory of Biomolecular Structure and Dynamics, Masaryk University, Kotlarska 2, 611 37 Brno, Czech Republic.
J Biol Chem. 2001 Mar 16;276(11):7734-40. doi: 10.1074/jbc.M007452200. Epub 2000 Nov 30.
gamma-Hexachlorocyclohexane dehydrochlorinase (LinA) catalyzes the initial steps in the biotransformation of the important insecticide gamma-hexachlorocyclohexane (gamma-HCH) by the soil bacterium Sphingomonas paucimobilis UT26. Stereochemical analysis of the reaction products formed during conversion of gamma-HCH by LinA was investigated by GC-MS, NMR, CD, and molecular modeling. The NMR spectra of 1,3,4,5,6-pentachlorocyclohexene (PCCH) produced from gamma-HCH using either enzymatic dehydrochlorination or alkaline dehydrochlorination were compared and found to be identical. Both enantiomers present in the racemate of synthetic gamma-PCCH were converted by LinA, each at a different rate. 1,2,4-trichlorobenzene (1,2,4-TCB) was detected as the only product of the biotransformation of biosynthetic gamma-PCCH. 1,2,4-TCB and 1,2,3-TCB were identified as the dehydrochlorination products of racemic gamma-PCCH. delta-PCCH was detected as the only product of dehydrochlorination of delta-HCH. LinA requires the presence of a 1,2-biaxial HCl pair on a substrate molecule. LinA enantiotopologically differentiates two 1,2-biaxial HCl pairs present on gamma-HCH and gives rise to a single PCCH enantiomer 1,3(R),4(S),5(S),6(R)-PCCH. Furthermore, LinA enantiomerically differentiates 1,3(S),4(R),5(R),6(S)-PCCH and 1,3(R),4(S),5(S),6(R)-PCCH. The proposed mechanism of enzymatic biotransformation of gamma-HCH to 1,2,4-TCB by LinA consists of two 1,2-anti conformationally dependent dehydrochlorinations followed by 1,4-anti dehydrochlorination.
γ-六氯环己烷脱氯化氢酶(LinA)催化土壤细菌少动鞘氨醇单胞菌UT26对重要杀虫剂γ-六氯环己烷(γ-HCH)进行生物转化的初始步骤。通过气相色谱-质谱联用(GC-MS)、核磁共振(NMR)、圆二色光谱(CD)和分子模拟研究了LinA转化γ-HCH过程中形成的反应产物的立体化学分析。比较了使用酶促脱氯化氢或碱性脱氯化氢从γ-HCH产生的1,3,4,5,6-五氯环己烯(PCCH)的核磁共振谱,发现它们是相同的。合成γ-PCCH外消旋体中存在 的两种对映体均被LinA转化,且转化速率不同。检测到1,2,4-三氯苯(1,2,4-TCB)是生物合成γ-PCCH生物转化的唯一产物。1,2,4-TCB和1,2,3-TCB被鉴定为外消旋γ-PCCH的脱氯化氢产物。检测到δ-PCCH是δ-HCH脱氯化氢的唯一产物。LinA需要底物分子上存在1,2-双轴HCl对。LinA对γ-HCH上存在的两个1,2-双轴HCl对进行对映体拓扑区分,并产生单一的PCCH对映体1,3(R),4(S),5(S),6(R)-PCCH。此外,LinA对映体区分1,3(S),4(R),5(R),6(S)-PCCH和1,3(R),4(S),5(S),6(R)-PCCH。LinA将γ-HCH酶促生物转化为1,2,4-TCB的拟议机制包括两个1,2-反式构象依赖性脱氯化氢反应,随后是1,4-反式脱氯化氢反应。