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首页> 外文期刊>Chemical research in toxicology >Synthesis and characterization of bay region halohydrins derived from Benzo(a)pyrene diol epoxide and their role as intermediates in halide-catalyzed cis adduct formation.
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Synthesis and characterization of bay region halohydrins derived from Benzo(a)pyrene diol epoxide and their role as intermediates in halide-catalyzed cis adduct formation.

机译:苯并(a)二醇环氧化合物衍生的海湾区域卤代醇的合成与表征及其在卤化物催化的顺式加合物形成中的中间体作用。

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摘要

The bay region epoxide of benzo[a]pyrene (anti-BPDE) alkylates DNA to form adducts with >98% trans stereochemistry. Halide ions catalyze this reaction; however, this pathway is characterized by the formation of adducts with altered cis stereochemistry. Bay region halohydrins are possible intermediates in these reactions, but are too unstable to be isolated from aqueous solutions. However, we successfully synthesized halohydrins in tetrahydrofuran (THF) by treatment of anti-BPDE with the corresponding lithium halide salt in the presence of acetic acid. Absorbance and CD spectroscopy clearly indicated the formation of chloro-, bromo-, and iodohydrins. The structure and stereochemistry of the chlorohydrin was established by NMR. Chloride addition is exclusively at the benzylic position of the epoxide, and the stereochemistry of the C-9 and -10 positions is trans. The long-wavelength absorbance band in the chloro-, bromo-, and iodohydrin is red-shifted 7, 13, and 22 nm, respectively, relative to the hydrolysis product of anti-BPDE. The ellipticity of the same absorbance band in CD spectra of enantiomerically pure halohydrins is opposite in sign compared to that of the corresponding anti-BPDE enantiomer. The relative stability of these derivatives is chlorohydrin > bromohydrin > iodohydrin. The chloro- and bromohydrins were isolated, but the iodohydrin decomposed during this manipulation. The addition of 500 mM chloride decreased the hydrolysis rate of the chlorohydrin 4-fold in 50% THF/buffer. Direct evidence for the transient formation of the iodohydrin in aqueous buffer/acetone mixtures was obtained by absorbance spectroscopy. At 1 M chloride, bromide, and iodide, alkylation of deoxyadenosine by anti-BPDE in aqueous buffer yields 85, 91, and 92% cis adducts, respectively. In the absence of halide, alkylation of deoxyadenosine in buffer by anti-BPDE, the chlorohydrin, and the bromohydrin yields 32, 65, and 83% cis adducts, respectively.
机译:苯并[a] py(抗BPDE)的海湾区域环氧化物使DNA烷基化,形成具有> 98%反式立体化学的加合物。卤离子催化该反应。然而,该途径的特征是形成具有改变的顺式立体化学的加合物。湾区卤代醇可能是这些反应的中间体,但太不稳定而无法从水溶液中分离出来。但是,我们通过在乙酸存在下用相应的卤化锂盐处理抗BPDE,成功地在四氢呋喃(THF)中合成了卤代醇。吸光度和CD光谱清楚地表明了氯,溴和碘醇的形成。通过NMR确定氯醇的结构和立体化学。氯化物的添加仅在环氧化物的苄基位置,并且C-9和-10位的立体化学是反式的。相对于抗BPDE的水解产物,氯代,溴代和碘代醇中的长波吸收带分别红移了7、13和22 nm。对映体纯的卤代醇的CD光谱中相同吸收带的椭圆率与相应的抗BPDE对映体的椭圆率在符号上相反。这些衍生物的相对稳定性是氯代醇>溴代醇>碘代醇。分离出氯代和溴代醇,但碘醇在该操作过程中分解。在500%THF /缓冲液中,添加500 mM氯化物会使氯醇的水解速率降低4倍。通过吸收光谱法获得了在含水缓冲液/丙酮混合物中碘醇瞬时形成的直接证据。在1 M的氯化物,溴化物和碘化物下,在水性缓冲液中通过抗BPDE将脱氧腺苷烷基化,分别产生85%,91%和92%的顺式加合物。在没有卤化物的情况下,缓冲液中的脱氧腺苷通过抗BPDE,氯代醇和溴代醇的烷基化反应分别生成32%,65%和83%的顺式加合物。

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