Srivenugopal K S, Morris D R
Biochemistry. 1985 Aug 27;24(18):4766-71. doi: 10.1021/bi00339a009.
In the absence of DNA aggregation, spermidine inhibited the relaxation of negatively supercoiled DNA by Escherichia coli topoisomerase I at concentrations of the polyamine normally found intracellularly. Spermidine also curtailed the cleavage of negatively supercoiled ColE1 DNA by the enzyme in the absence of Mg2+. On the contrary, knotting of M13 single-stranded DNA circles catalyzed by topoisomerase I was stimulated by the polyamine. Relaxation of supercoiled DNA by eukaryotic type 1 topoisomerases, such as calf thymus topoisomerase I and wheat germ topoisomerase, was significantly stimulated by spermidine in the same range of concentrations that inhibited the prokaryotic enzyme. In reactions catalyzed by S1 nuclease, the polyamine enhanced the digestion of single-stranded DNA and inhibited the nicking of negatively supercoiled DNA. These results suggest that spermidine modifies the supercoiled duplex substrate in these reactions by modulating the degree of single strandedness.
在不存在DNA聚集的情况下,亚精胺在细胞内通常发现的多胺浓度下,抑制了大肠杆菌拓扑异构酶I对负超螺旋DNA的松弛作用。在不存在Mg2+的情况下,亚精胺还减少了该酶对负超螺旋ColE1 DNA的切割。相反,多胺刺激了拓扑异构酶I催化的M13单链DNA环的打结。在抑制原核酶的相同浓度范围内,亚精胺显著刺激了真核1型拓扑异构酶(如小牛胸腺拓扑异构酶I和小麦胚芽拓扑异构酶)对超螺旋DNA的松弛作用。在S1核酸酶催化的反应中,多胺增强了单链DNA的消化,并抑制了负超螺旋DNA的切口。这些结果表明,亚精胺在这些反应中通过调节单链程度来修饰超螺旋双链底物。