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由NaeI-43K进行的逐步DNA松弛和解连环作用。

Step-wise DNA relaxation and decatenation by NaeI-43K.

作者信息

Jo K, Topal M D

机构信息

Lineberger Comprehensive Cancer Center and Department of Pathology, University of North Carolina Medical School, Chapel Hill, NC 27599-7295, USA.

出版信息

Nucleic Acids Res. 1998 May 15;26(10):2380-4. doi: 10.1093/nar/26.10.2380.

Abstract

Nae I protein was originally isolated for its restriction endonuclease properties. Nae I was later discovered to either relax or cleave supercoiled DNA, depending upon whether Nae I position 43 contains a lysine (43K) or leucine (43L) respectively. Nae I-43K DNA relaxation activity appears to be the product of coupling separate endonuclease and ligase domains within the same polypeptide. Whereas Nae I relaxes supercoiled DNA like a topoisomerase, even forming a transient covalent intermediate with the substrate DNA, Nae I shows no obvious sequence similarity to the topoisomerases. To further characterize the topoisomerase activity of Nae I, we report here that Nae I-43K changes the linking number of a single negatively supercoiled topoisomer of pBR322 by units of one and therefore is a type I topoisomerase. Positively supercoiled pBR322 was resistant to Nae I-43K. At low salt concentration Nae I-43K was processive; non-saturating amounts of enzyme relaxed a fraction of the DNA. At high salt concentration the same non-saturating amounts of Nae I-43K partially relaxed all the DNA in a step-wise fashion to give a Gaussian distribution of topoisomers, demonstrating a switch from a processive to a distributive mode of action. Nae I-43K decatenated kinetoplast DNA containing nicked circles, implying that Nae I-43K can cleave opposite a nick. The products of the reaction are decatenated nicked circles under both processive and distributive conditions. The behavior of Nae I-43K is consistent with that of a prokaryotic type I topoisomerase.

摘要

Nae I蛋白最初因其限制性内切核酸酶特性而被分离出来。后来发现,根据Nae I的第43位分别是赖氨酸(43K)还是亮氨酸(43L),Nae I可以使超螺旋DNA松弛或切割超螺旋DNA。Nae I - 43K的DNA松弛活性似乎是同一多肽内单独的内切核酸酶和连接酶结构域偶联的产物。虽然Nae I像拓扑异构酶一样使超螺旋DNA松弛,甚至与底物DNA形成瞬时共价中间体,但Nae I与拓扑异构酶没有明显的序列相似性。为了进一步表征Nae I的拓扑异构酶活性,我们在此报告,Nae I - 43K将pBR322的单个负超螺旋拓扑异构体的连环数改变一个单位,因此是一种I型拓扑异构酶。正超螺旋的pBR322对Nae I - 43K具有抗性。在低盐浓度下,Nae I - 43K具有连续性;非饱和量的酶使一部分DNA松弛。在高盐浓度下,相同的非饱和量的Nae I - 43K以逐步方式部分松弛所有DNA,产生拓扑异构体的高斯分布,表明从连续作用模式转变为分布作用模式。Nae I - 43K解开了含有带切口环的动质体DNA,这意味着Nae I - 43K可以在切口对面切割。在连续和分布条件下,反应产物都是解开的带切口环。Nae I - 43K的行为与原核I型拓扑异构酶的行为一致。

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本文引用的文献

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