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首页> 外文期刊>Nucleic acids research >Sequence-specific binding of echinomycin to DNA: evidence for conformational changes affecting flanking sequences
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Sequence-specific binding of echinomycin to DNA: evidence for conformational changes affecting flanking sequences

机译:Echinomycin对DNA的序列特异性结合:影响侧翼序列的构象变化的证据

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摘要

The technique of DNAase I footprinting has been used to investigate preferred binding sites for echinomycin on a 160-base-pair DNA fragment from E. coli containing the tyr T promoter sequence. Six binding sites have been precisely located in the sequence; a seventh has been partially identified. The minimum site-size is six base pairs. All the binding sites contain the dinucleotide sequence CpG but no other regularities can be discerned. When the protected regions on each complementary strand are compared it is evident that they are staggered by 2–3 base-pairs towards the 3′ end at each site. Footprinting with DNAase II reports a similar, though less precise, pattern of protection. Cutting by both enzymes is markedly enhanced at AT-rich regions flanking the antibiotic-binding sites. This increased susceptibility to nuclease attack can be attributed to an altered helix conformation in the vicinity of the bis-intercalated echinomycin molecule. It seems that certain sequences, mainly runs of A or runs of T, switch from a nuclease-resistant to a nuclease-sensitive form when echinomycin binds nearby.
机译:DNA酶I脚印的技术已用于研究来自含有TYR T启动子序列的大肠杆菌的160-碱基对DNA片段的Echinomycin的优选结合位点。序列中六个结合位点精确定位;部分识别了第七。最小的站点大小是六个基对。所有结合位点含有二核苷酸序列CpG,但不能识别其他规则。当比较每个互补链上的受保护区域时,显然,它们在每个部位的3'末端被交错2-3个碱基对。与DNAase II的脚印报告类似的,尽管较低,但保护模式。在抗生素结合位点侧翼的富有的富有区域中,两种酶的切割显着增强。这种对核酸酶攻击的易感性增加可以归因于双层闭合的海霉素分子附近的改变的螺旋构象。似乎某些序列,主要是在核霉素附近结合时从核酸酶敏感形式的核酸酶抗性切换到核酸酶敏感形式。

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