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首页> 外文期刊>Nucleic acids research >Extracellular nucleases of Pseudomonas BAL 31. III. Use of the double-strand deoxyriboexonuclease activity as the basis of a convenient method for the mapping of fragments of DNA produced by cleavage with restriction enzymes
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Extracellular nucleases of Pseudomonas BAL 31. III. Use of the double-strand deoxyriboexonuclease activity as the basis of a convenient method for the mapping of fragments of DNA produced by cleavage with restriction enzymes

机译:假单胞菌BAL 31的细胞外核酸酶。使用双链脱氧核糖核酸外切酶活性作为方便的方法的基础,该方法用于定位限制酶切割产生的DNA片段

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We have previously characterized an extracellular nuclease from Pseudomonas BAL 31 which, in addition to other activities, displays a double-strand exonuclease activity which progressively shortens both strands of linear duplex DNA molecules from both termini. This degradation is accomplished without the introduction of detectable scissions away from the ends of the duplexes. When this nuclease is used to produce a series of progressively shortened samples from a linear duplex DNA, subsequent digestion of these samples with a site-specific restriction endonuclease and analysis of the resulting fragments by gel electrophoresis permits the rapid establishment of the order of the restriction enzyme fragments through the entire genome. This is accomplished by noting from the electropherograms the order in which the various restriction enzyme fragments become noticeably shortened or disappear. Using this method, the five cleavage sites for the endonuclease Hpa I and the single cleavage sites for the nucleases Hpa II and Pst I have been mapped in PM2 bacteriophage DNA. In a more stringent test of the method, 18 of the 24 fragments produced by cleavage of coliphage λb2b5c DNA with the Pst I nuclease have been mapped, and five of the six remaining fragments have been assigned to small regions of the genome.
机译:我们先前已经表征了来自假单胞菌BAL 31的细胞外核酸酶,除其他活性外,它还显示出双链核酸外切酶活性,该活性逐渐缩短了来自两个末端的线性双链DNA分子的两条链。这种降解是在不引入双链体末端附近可检测到的切口的情况下完成的。当此核酸酶用于从线性双链体DNA产生一系列逐渐缩短的样品时,随后用位点特异性限制性内切核酸酶消化这些样品,并通过凝胶电泳分析所得片段,可快速确定限制性内切酶的顺序酶片段贯穿整个基因组。这是通过从电泳图中注意到各种限制酶片段显着缩短或消失的顺序来实现的。使用这种方法,已将内切核酸酶Hpa I的五个切割位点和内切核酸酶Hpa II和Pst I的单个切割位点绘制在PM2噬菌体DNA中。在对该方法的更严格测试中,已绘制了用Pst I核酸酶切割大肠杆菌噬菌体λb 2 b 5 c DNA产生的24个片段中的18个片段,其中5个剩下的六个片段中的一半已经分配到基因组的小区域。

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