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苯并[a]芘代谢物修饰DNA的变性与复性研究。

Denaturation and renaturation studies of benzo[a]pyrene metabolite modified DNAs.

作者信息

Chen F M

机构信息

Department of Chemistry, Tennessee State University, Nashville 37203.

出版信息

Biochemistry. 1987 Jul 14;26(14):4323-31. doi: 10.1021/bi00388a021.

Abstract

Evidence from absorbance, fluorescence, and circular dichroism (CD) measurements strongly suggests that adduct conformations at the binding sites are grossly different before and after thermal denaturation of (+)-trans-7,8-dihydroxy-anti-9,10-epoxy-7,8,9,10-tetrahydrobenzo[a]py ren e [(+)-anti-BPDE] modified DNAs. This conclusion is reached through the following observations: (1) upon melting and cooling, the (+)-anti-BPDE-modified DNA exhibits pronounced hypochromic effects with concomitant spectral red shifts for the pyrenyl absorbance; (2) the pyrenyl CD spectrum reverses sign upon thermal denaturation-renaturation; (3) the fluorescence emission spectra resulting from excitations at 353 nm (10 nm to the red of hydrolyzed and unbound anti-BPDE) exhibit enhanced intensities and spectral red shifts for the thermally denatured and cooled adducts; and (4) in contrast to the absence of a shoulder prior to melting, the postmelt adducts exhibit a prominent 355-nm maximum (evidence of stacking interactions) in the excitation spectrum when 384-387-nm emission is monitored. Studies with synthetic polynucleotides further reveal that (+)-anti-BPDE-modified poly(dG).poly(dC) exhibits the greatest nonreversible renaturation at the binding sites, possibly as a consequence of pyrenyl self-stacking. This, coupled with the previous findings that this polymer suffers the most extensive (+)-anti-BPDE modification, appears to suggest that (dG)n . (dC)n regions may be responsible for such observed effects in native DNA.

摘要

来自吸光度、荧光和圆二色性(CD)测量的证据有力地表明,在(+)-反式-7,8-二羟基-反式-9,10-环氧-7,8,9,10-四氢苯并[a]芘[(+)-反式-BPDE]修饰的DNA热变性前后,结合位点处的加合物构象存在显著差异。这一结论是通过以下观察得出的:(1)在熔化和冷却时,(+)-反式-BPDE修饰的DNA表现出明显的减色效应,同时芘基吸光度伴随光谱红移;(2)芘基CD光谱在热变性-复性时发生符号反转;(3)在353nm(比水解和未结合的反式-BPDE的波长红移10nm)激发下产生的荧光发射光谱显示,热变性和冷却后的加合物强度增强且光谱红移;(4)与熔化前没有肩峰相反,当监测384-387nm发射时,熔化后的加合物在激发光谱中显示出突出的355nm最大值(堆积相互作用的证据)。对合成多核苷酸的研究进一步表明,(+)-反式-BPDE修饰的聚(dG)·聚(dC)在结合位点表现出最大的不可逆复性,这可能是芘基自堆积的结果。这一点,再加上先前的发现,即这种聚合物受到(+)-反式-BPDE修饰的程度最大,似乎表明(dG)n·(dC)n区域可能是天然DNA中观察到此类效应的原因。

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