首页> 美国卫生研究院文献>Nucleic Acids Research >Extracellular nucleases of Alteromonas espejiana BAL 31.IV. The single strand-specific deoxyriboendonuclease activity as a probe for regions of altered secondary structure in negatively and positively supercoiled closed circular DNA.
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Extracellular nucleases of Alteromonas espejiana BAL 31.IV. The single strand-specific deoxyriboendonuclease activity as a probe for regions of altered secondary structure in negatively and positively supercoiled closed circular DNA.

机译:埃塞单胞菌BAL 31.IV的细胞外核酸酶。单链特异性脱氧核糖核酸酶活性作为探针用于检测负向和正向超螺旋闭合环状DNA中二级结构改变的区域。

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摘要

The dependence of the initial rate of introduction of the first single-chain scission (initial nicking rate) into covalently closed circular phage PM2 DNA by the single strand-specific nuclease from Alteromonas espejiana BAL 31 upon the superhelix density (sigma) of the DNA has been examined. The initial nicking rate decreases with decreasing numbers of negative superhelical turns (decreasing values of -sigma), which behavior is characteristic of other single strand-specific nucleases as reported earlier. In contrast to earlier work, the initial nicking rates of closed circular DNAs by the action of the Alteromonas nuclease have been shown to be readily measurable at values of -sigma as low as 0.02. However, even at the elevated concentrations of enzyme and extended digestion periods required to cause nicking at an appreciable rate at near-zero values of sigma, closed circular DNA containing very few superhelical turns (form IO DNA) is not cleaved at a detectable rate. When this DNA is rendered positively supercoiled by ethidium bromide (EtdBr), it is not affected by the nuclease until very high positive values of sigma are attained, at which low rates of cleavage can be detected at elevated enzyme concentrations. The effects of EtdBr on the enzyme activity have been tested and are entirely insufficient to allow the interpretation of zero nicking rates as the result of inhibition of the nuclease activity by the dye. Positively supercoiled DNA is concluded not to contain regions having significant single-stranded character until values of sigma are reached which are very much higher than the values of -sigma for which negatively supercoiled DNAs behave as if they contain unpaired or weakly paired bases.
机译:来自单链特异核酸酶的单链特异性核酸酶将第一单链分裂的初始引入速率(初始切口率)与共价闭合环状噬菌体PM2 DNA的DNA超螺旋密度(sigma)的关系经过检查。初始切刻率随着负超螺旋匝数的减少(-sigma值的减少)而降低,这是先前报道的其他单链特异性核酸酶的特征。与早期的工作相反,已经证明在-sigma值低至0.02的情况下,通过Alteromonas核酸酶的作用,封闭的环状DNA的初始切刻率很容易测量。但是,即使在较高的酶浓度下以及以接近零的sigma值导致形成切痕所需的延长的消化时间,也不会以可检测的速率裂解几乎没有超螺旋转角的闭合环状DNA(IO型)。当此DNA被溴化乙锭(EtdBr)阳性超螺旋时,它不会受到核酸酶的影响,直到获得非常高的sigma阳性值为止,在这种情况下,在升高的酶浓度下可以检测到较低的裂解率。已经测试了EtdBr对酶活性的影响,并且完全不足以解释由于染料抑制核酸酶活性而导致的零切刻率。得出结论,在达到sigma值之前,正超螺旋DNA不包含具有显着单链特征的区域,该值远高于负超螺旋DNA表现为好像包含未配对或弱配对碱基的σ值。

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