Bryant D W, Haynes R H
Can J Biochem. 1978 Mar;56(3):181-9. doi: 10.1139/o78-031.
We have isolated and partially purified a DNA endonuclease from nuclei of the yeast Saccharomyces cerevisiae. Although purified on the basis of its ability to degrade denatured DNA, the enzyme can also attack native DNA. Denatured oligonucleotide products of the enzyme are sensitive to venom phosphodiesterase (EC3.1.4.1.) but not to bovine spleen phosphodiesterase (EC3.1.4.18). The enzyme has an estimated molecular weight of 6.6--7.5 X 10(4), more than twice as large as the endonucleases involved in DNA repair in Escherichia coli. When analyzed on glycerol gradients, the endonuclease sedimented as a single activity against both denatured DNA and closed circular DNA duplexes. The enzyme showed a 10-fold preference for denatured over native T7 DNA substrate, and appears to produce random nicks in a supercoiled replicative form of phiX174 DNA (RFI) with no discernable preference for the unpaired bases in the supercoiled duplex. The endonuclease appears to be distinct from the yeast endonucleases previously described.
我们从酿酒酵母的细胞核中分离并部分纯化了一种DNA内切酶。尽管该酶是根据其降解变性DNA的能力进行纯化的,但它也能作用于天然DNA。该酶产生的变性寡核苷酸产物对蛇毒磷酸二酯酶(EC3.1.4.1.)敏感,但对牛脾磷酸二酯酶(EC3.1.4.18)不敏感。该酶的估计分子量为6.6--7.5×10⁴,是大肠杆菌中参与DNA修复的内切酶的两倍多。在甘油梯度上进行分析时,该内切酶以单一活性沉降,对变性DNA和闭环双链DNA均有活性。该酶对变性T7 DNA底物的偏好比对天然T7 DNA底物高10倍,并且似乎在φX174 DNA(RFI)的超螺旋复制形式中产生随机切口,对超螺旋双链中的未配对碱基没有明显偏好。该内切酶似乎与先前描述的酵母内切酶不同。