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HhaI DNA胞嘧啶-C-5甲基转移酶结构与功能的协调

Reconciling structure and function in HhaI DNA cytosine-C-5 methyltransferase.

作者信息

Lindstrom W M, Flynn J, Reich N O

机构信息

Department of Chemistry and Biochemistry, University of California, Santa Barbara, California 93106, USA.

出版信息

J Biol Chem. 2000 Feb 18;275(7):4912-9. doi: 10.1074/jbc.275.7.4912.

Abstract

Pre-steady state partitioning analysis of the HhaI DNA methyltransferase directly demonstrates the catalytic competence of the enzyme.DNA complex and the lack of catalytic competence of the enzyme.S-adenosyl-L-methionine (AdoMet) complex. The enzyme.AdoMet complex does form, albeit with a 50-fold decrease in affinity compared with the ternary enzyme.AdoMet.DNA complex. These findings reconcile the distinct binding orientations previously observed within the binary enzyme.AdoMet and ternary enzyme. S-adenosyl-L-homocysteine.DNA crystal structures. The affinity of the enzyme for DNA is increased 900-fold in the presence of its cofactor, and the preference for hemimethylated DNA is increased to 12-fold over unmethylated DNA. We suggest that this preference is partially due to the energetic cost of retaining a cavity in place of the 5-methyl moiety in the ternary complex with the unmethylated DNA, as revealed by the corresponding crystal structures. The hemi- and unmethylated substrates alter the fates and lifetimes of discrete enzyme.substrate intermediates during the catalytic cycle. Hemimethylated substrates partition toward product formation versus dissociation significantly more than unmethylated substrates. The mammalian DNA cytosine-C-5 methyltransferase Dnmt1 shows an even more pronounced partitioning toward product formation.

摘要

对HhaI DNA甲基转移酶的预稳态分配分析直接证明了该酶-DNA复合物的催化活性以及该酶-S-腺苷-L-甲硫氨酸(AdoMet)复合物缺乏催化活性。尽管与三元酶-AdoMet-DNA复合物相比,酶-AdoMet复合物的亲和力降低了50倍,但它确实形成了。这些发现解释了先前在二元酶-AdoMet和三元酶-S-腺苷-L-高半胱氨酸-DNA晶体结构中观察到的不同结合方向。在其辅因子存在下,该酶对DNA的亲和力增加了900倍,对半甲基化DNA的偏好相对于未甲基化DNA增加到12倍。我们认为,这种偏好部分是由于在与未甲基化DNA形成的三元复合物中,保留一个取代5-甲基部分的空腔所产生的能量成本,这在相应的晶体结构中有所体现。在催化循环中,半甲基化和未甲基化的底物改变了离散的酶-底物中间体的命运和寿命。与未甲基化底物相比,半甲基化底物向产物形成而非解离的分配明显更多。哺乳动物DNA胞嘧啶-C-5甲基转移酶Dnmt1向产物形成的分配更为明显。

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