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人宫颈癌细胞系(HeLa)DNA拓扑异构酶I的分子内和分子间链转移

Intra- and intermolecular strand transfer by HeLa DNA topoisomerase I.

作者信息

Halligan B D, Davis J L, Edwards K A, Liu L F

出版信息

J Biol Chem. 1982 Apr 10;257(7):3995-4000.

PMID:6277956
Abstract

The major type I DNA topoisomerase (topo I) has been purified from HeLa cell nuclei to a homogeneous, monomeric protein (Mr = 100,000). Similar to the nicking-closing enzyme (Mr = 67,000) from rat liver (Been, M. D., and Champoux, J. J. (1981) Proc. Natl. Acad. Sci. U. S. A. 78, 2883-2887), HeLa topo I has the following properties: (a) HeLa topo I breaks down single-stranded DNA to smaller fragments, each with an enzyme-linked 3'-phosphoryl end and a free 5'-OH end. This cleavage is not dependent upon protein denaturant or protease treatment. (b) HeLa topo I produces single-stranded DNA circles from linear single-stranded DNA. Such DNA circles are believed to be produced by the intramolecular cyclization of topo I-linked, single-stranded DNA fragments. (c) HeLa topo I-linked, single-stranded fragments (donors) can join covalently to double-stranded DNA possessing a 5'-OH group (acceptors). The donor is transferred to the 5'-OH end of the acceptor, independent of the position of the end (internal nick or end of linear DNA) or the configuration of the end (flush, 5'-protruding, or 5'-recessed end) of the acceptor. (d) HeLa topo I cleavage of single-stranded DNA is site-specific, but no special sequence at the ends of the acceptor molecule is apparently required for a successful heterologous strand transfer. These results suggest that HeLa topo I may be involved in DNA sequence rearrangements in addition to its possible role as a swivelase for transcription and replication.

摘要

主要的I型DNA拓扑异构酶(拓扑异构酶I)已从HeLa细胞核中纯化出来,成为一种均一的单体蛋白(分子量 = 100,000)。与大鼠肝脏中的切口封闭酶(分子量 = 67,000)(Been, M. D., 和Champoux, J. J. (1981) Proc. Natl. Acad. Sci. U. S. A. 78, 2883 - 2887)相似,HeLa拓扑异构酶I具有以下特性:(a) HeLa拓扑异构酶I将单链DNA切割成较小的片段,每个片段都有一个与酶相连的3'-磷酸末端和一个游离的5'-OH末端。这种切割不依赖于蛋白质变性剂或蛋白酶处理。(b) HeLa拓扑异构酶I从线性单链DNA产生单链DNA环。这种DNA环被认为是由拓扑异构酶I连接的单链DNA片段的分子内环化产生的。(c) HeLa拓扑异构酶I连接的单链片段(供体)可以与具有5'-OH基团的双链DNA(受体)共价连接。供体被转移到受体的5'-OH末端,与受体末端的位置(内部切口或线性DNA的末端)或末端的构型(平齐、5'-突出或5'-凹陷末端)无关。(d) HeLa拓扑异构酶I对单链DNA的切割是位点特异性的,但受体分子末端显然不需要特殊序列就能成功进行异源链转移。这些结果表明,HeLa拓扑异构酶I除了可能作为转录和复制的旋转酶外,还可能参与DNA序列重排。

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