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DNA甲基转移酶与氨基芴及N - 乙酰氨基芴修饰的聚(dC - dG)的相互作用

Interaction of DNA methyltransferase with aminofluorene and N-acetylaminofluorene modified poly(dC-dG).

作者信息

Ruchirawat M, Becker F F, Lapeyre J N

出版信息

Nucleic Acids Res. 1984 Apr 11;12(7):3357-72. doi: 10.1093/nar/12.7.3357.

Abstract

Poly(dC-dG) was reacted in vitro to yield templates containing similar amounts of aminofluorene (AF) or acetylaminofluorene (AAF) adducts. These modified poly(dC-dG) templates were tested in an in vitro DNA methylation system utilizing 1500-fold purified rat liver methyltransferase (DMase) to compare and quantitate the effects of these adducts on the kinetics of methylation and the interaction of DMase with such templates. Enzymatic methylation is severely impaired by arylamine adducts, with bound AF inhibiting more than AAF (relative Vmax 0.24 for AAF-poly(dC-dG) and 0.066 for AF-poly(dC-dG). The apparent km for the reaction is not appreciably altered by AAF modification: 10 microM for dCdG dinucleotide units, but it is threefold lower (3 microM) for AF-poly(dC-dG). In competition experiments it was demonstrated that a translocational block is imposed by the adducts. From differential salt inhibition assays and preincubation assays, no change in the ionic binding to the altered templates could be detected, which suggests that the enzyme interacts very strongly through hydrophobic interactions with the fluorene ring. Evidence that the fluorene ring is exposed is supported by circular dichroism spectra of the templates under the conditions of the assay, which indicated that the AF adducts do not appreciably change the normal B conformation of the template, while the template with 9.5% modification by AAF adducts adopted a Z form. These results suggest that the inhibitory effects of AAF and, in particular, AF upon DMase-catalyzed methylation reactions are not dependent upon helix conformation. Instead, they appear to depend upon DMase recognition of an altered dG base configuration, which is responsible for altered binding and methylation kinetics.

摘要

聚(dC-dG)在体外反应,生成含有相似量氨基芴(AF)或乙酰氨基芴(AAF)加合物的模板。这些修饰的聚(dC-dG)模板在体外DNA甲基化系统中进行测试,该系统使用1500倍纯化的大鼠肝脏甲基转移酶(DMase),以比较和定量这些加合物对甲基化动力学以及DMase与此类模板相互作用的影响。芳胺加合物严重损害酶促甲基化作用,结合的AF比AAF抑制作用更强(AAF-聚(dC-dG)的相对Vmax为0.24;AF-聚(dC-dG)的相对Vmax为_0.066)。反应的表观km不受AAF修饰的明显影响:dCdG二核苷酸单位为10 microM,但AF-聚(dC-dG)降低了三倍_(3 microM)。在竞争实验中表明加合物会造成移位阻断。从不同的盐抑制试验和预孵育试验中,未检测到与改变后的模板的离子结合有变化,这表明该酶通过与芴环的疏水相互作用非常强烈地相互作用。在测定条件下模板的圆二色光谱支持芴环暴露的证据,这表明AF加合物不会明显改变模板正常的B构象,而被AAF加合物修饰9.5%的模板则采用Z型。这些结果表明AAF,尤其是AF对DMase催化甲基化反应的抑制作用不依赖于螺旋构象。相反,它们似乎取决于DMase对改变后的dG碱基构型的识别,这导致了结合和甲基化动力学改变。

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