首页> 外文OA文献 >Extracellular nucleases of Pseudomonas BAL 31. I. Characterization of single strand-specific deoxyriboendonuclease and double-strand deoxyriboexonuclease activities.
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Extracellular nucleases of Pseudomonas BAL 31. I. Characterization of single strand-specific deoxyriboendonuclease and double-strand deoxyriboexonuclease activities.

机译:假单胞菌BAL 31的细胞外核酸酶。I.单链特异性脱氧核糖核酸内切酶和双链脱氧核糖核酸外切酶活性的表征。

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摘要

The culture medium of Pseudomonas BAL 31 contains endonuclease activities which are highly specific for single-stranged DNA and for the single-stranded or weakly hydrogen-bonded regions in supercoiled closed circular DNA. Exposure of nicked DNA to the culture medium results in cleavage of the strang opposite the sites of preexisting single-strand scissions. At least some of the linear duplex molecules derived by cleavage of supercoiled closed circular molecules contain short single-stranded ends. Single-strand scissions are not introduced into intact, linear duplex DNA or unsupercoiled covalently closed circular DNA. Under these same reaction conditions, 0X174 phage DNA is extensively degraded and PM2 form I DNA is quantitatively converted to PM2 form III linear duplexes. Prolonged exposure of this linear duplex DNA to the concentrated culture medium reveals the presence of a double-strand exonuclease activity that progressively reduces the average length of the linear duplex. These nuclease activities persist at ionic strengths up to 4 M and are not eliminated in the presence of 5% sodium dodecyl sulfate. Calcium and magnesium ion are both required for optimal activity. Although the absence of magnesium ion reduces the activities, the absence of calcium ion irreversibly eliminates all the activities.
机译:假单胞菌BAL 31的培养基含有核酸内切酶活性,该酶对单螺旋DNA和超螺旋封闭环状DNA中的单链或弱氢键区域具有高度特异性。有切口的DNA暴露于培养基中会导致原先存在的单链剪接位点相对的链断裂。通过切割超螺旋闭合的环状分子衍生的至少一些线性双链体分子包含短的单链末端。未将单链剪接引入完整的线性双链DNA或未超螺旋共价闭合的环状DNA中。在这些相同的反应条件下,0X174噬菌体DNA大量降解,PM2 I型DNA被定量转化为PM2 III型线性双链体。该线性双链体DNA长时间暴露于浓缩培养基中,表明存在双链核酸外切酶活性,该活性逐渐降低了线性双链体的平均长度。这些核酸酶活性在离子强度高达4 M时仍然存在,并且在5%十二烷基硫酸钠的存在下并没有消除。钙和镁离子都是最佳活性所必需的。尽管缺少镁离子会降低活性,但是缺少钙离子会不可逆地消除所有活性。

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