Siegfried E, Thomas G H, Bond U M, Elgin S C
Nucleic Acids Res. 1986 Dec 9;14(23):9425-44. doi: 10.1093/nar/14.23.9425.
We have analyzed the prominent supercoil-dependent S1 nuclease cleavage site 5' to hsp 26 in the plasmid 88B13, which contains 11.7 kilobases from the Drosophila locus 67B1. The double stranded cleavage product is generated by initial nicking on the purine strand, six preferred sites occurring between positions -96 and -90 (relative to the start of transcription) with weaker ones extending to position -84, followed by cleavage on the pyrimidine strand at positions -86 and -84. A derivative of 88B13, 88B13-X, was generated by insertion of an Xho I linker at position -84; this does not affect the positions or strand specificity of the S1 cleavage in that region. A small deletion, delta 41.1, removes the homopurine/homopyrimidine stretch from positions -86 to -132 and is no longer sensitive to cleavage by S1 nuclease 5' to hsp 26. Mung bean and P1 nucleases recognize the same site 5' to hsp 26 and give the same general pattern of cleavage. All three nucleases show an initial cleavage of 88B13 DNA at this site at pH 5.5 but not at pH 6.5, indicating that the DNA structure there may be pH dependent in vitro.
我们分析了质粒88B13中hsp 26基因5'端显著的超螺旋依赖性S1核酸酶切割位点,该质粒包含来自果蝇67B1位点的11.7千碱基。双链切割产物是由嘌呤链上的初始切口产生的,在-96至-90位(相对于转录起始位点)有六个优先切割位点,较弱的位点延伸至-84位,随后在嘧啶链的-86和-84位进行切割。88B13的衍生物88B13-X是通过在-84位插入Xho I连接子产生的;这并不影响该区域S1切割的位置或链特异性。一个小的缺失片段delta 41.1去除了从-86至-132位的同嘌呤/同嘧啶延伸序列,并且对hsp 26基因5'端的S1核酸酶切割不再敏感。绿豆核酸酶和P1核酸酶识别hsp 26基因5'端的相同位点,并给出相同的一般切割模式。所有这三种核酸酶在pH 5.5时均显示在该位点对88B13 DNA进行初始切割,但在pH 6.5时则不切割,这表明该位点的DNA结构在体外可能依赖于pH值。