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噬菌体T4 Dam DNA-[N6-腺嘌呤]甲基转移酶与含有天然或修饰(缺陷)识别位点的寡核苷酸的相互作用。

Interaction of the phage T4 Dam DNA-[N6-adenine] methyltransferase with oligonucleotides containing native or modified (defective) recognition sites.

作者信息

Malygin E G, Petrov N A, Gorbunov Y A, Kossykh V G, Hattman S

机构信息

Institute of Molecular Biology, State Research Center of Virology, and Biotechnology 'Vector', Koltsovo, Novosibirsk Region 633159, Russia and Department of Biology, University of Rochester, Rochester, NY 14627-0211, USA.

出版信息

Nucleic Acids Res. 1997 Nov 1;25(21):4393-9. doi: 10.1093/nar/25.21.4393.

Abstract

The DNA-[N 6-adenine]-methyltransferase (Dam MTase) of phage T4 catalyzes methyl group transfer from S-adenosyl-l-methionine (AdoMet) to the N6-position of adenine in the palindromic sequence, GATC. We have used a gel shift assay to monitor complex formation between T4 Dam and various synthetic duplex oligonucleotides, either native or modified/defective. The results are summarized as follows. (i) T4 Dam bound with approximately 100-fold higher affinity to a 20mer specific (GATC-containing) duplex containing the canonical palindromic methylation sequence, GATC, than to a non-specific duplex containing another palindrome, GTAC. (ii) Compared with the unmethylated duplex, the hemimethylated 20mer specific duplex had a slightly increased ( approximately 2-fold) ability to form complexes with T4 Dam. (iii) No stable complex was formed with a synthetic 12mer specific (GATC-containing) duplex, although T4 Dam can methylate it. This indicates that there is no relation between formation of a catalytically competent 12mer-Dam complex and one stable to gel electrophoresis. (iv) Formation of a stable complex did not require that both strands be contiguous or completely complementary. Absence of a single internucleotide phosphate strongly reduced complex formation only when missing between the T and C residues. This suggests that if T4 Dam makes critical contact(s) with a backbone phosphate(s), then the one between T and C is the only likely candidate. Having only one half of the recognition site intact on one strand was sufficient for stable complex formation provided that the 5'G.C base-pairs be present at both ends of the palindromic, GATC. Since absence of either a G or C abolished T4 Dam binding, we conclude that both strands are recognized by T4 Dam.

摘要

噬菌体T4的DNA-[N6-腺嘌呤]-甲基转移酶(Dam甲基转移酶)催化甲基从S-腺苷-L-甲硫氨酸(AdoMet)转移至回文序列GATC中腺嘌呤的N6位。我们使用凝胶迁移试验来监测T4 Dam与各种天然或修饰/缺陷的合成双链寡核苷酸之间的复合物形成。结果总结如下:(i)与含有另一个回文序列GTAC的非特异性双链相比,T4 Dam与含有典型回文甲基化序列GATC的20聚体特异性(含GATC)双链的结合亲和力高约100倍。(ii)与未甲基化的双链相比,半甲基化的20聚体特异性双链与T4 Dam形成复合物的能力略有增加(约2倍)。(iii)尽管T4 Dam可以甲基化合成的12聚体特异性(含GATC)双链,但未形成稳定的复合物。这表明催化活性的12聚体-Dam复合物的形成与对凝胶电泳稳定的复合物形成之间没有关系。(iv)稳定复合物的形成并不要求两条链是连续的或完全互补的。仅当T和C残基之间缺少单个核苷酸间磷酸时,才会强烈降低复合物的形成。这表明,如果T4 Dam与主链磷酸发生关键接触,那么T和C之间的磷酸是唯一可能的候选者。只要在回文序列GATC的两端存在5'G.C碱基对,一条链上只有一半识别位点完整就足以形成稳定的复合物。由于缺少G或C都会消除T4 Dam的结合,我们得出结论,两条链都被T4 Dam识别。

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