Bacolla A, Wu F Y
Department of Pharmacological Sciences, State University of New York, Stony Brook 11794.
Nucleic Acids Res. 1991 Apr 11;19(7):1639-47. doi: 10.1093/nar/19.7.1639.
Mung bean nuclease, an enzyme specific for single-stranded DNA, was used to probe a non-B DNA structure present in the mouse metallothionein-I gene. The region sensitive to the enzyme was constituted by a 128 base-pair long polypurine.polypyrimidine sequence located at 1.2-kb from the start of transcription. A detailed analysis of the mung bean nuclease cleavage pattern revealed that: (i) under conditions of supercoiling and low pH a triplex structure was formed, (ii) the triplex was flanked by a sequence with the potential of forming a Z-DNA structure, (iii) most of the enzymatic activity was localized at some of the junctions between double-stranded and triple-stranded DNA and at mismatches in the triplex, (iv) no unpaired bases were observed in the loop or outside the triplex, and (v) the triplex was present in more than one configuration.
绿豆核酸酶是一种对单链DNA具有特异性的酶,被用于探测小鼠金属硫蛋白-I基因中存在的一种非B型DNA结构。对该酶敏感的区域由一个位于转录起始点1.2 kb处、长度为128个碱基对的聚嘌呤-聚嘧啶序列构成。对绿豆核酸酶切割模式的详细分析表明:(i)在超螺旋和低pH条件下形成了一种三链结构;(ii)该三链结构两侧是具有形成Z-DNA结构潜力的序列;(iii)大部分酶活性定位于双链和三链DNA之间的一些连接处以及三链中的错配处;(iv)在环或三链结构之外未观察到未配对碱基;(v)该三链结构以不止一种构象存在。