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多头绒泡菌核糖体DNA中的体内拓扑异构酶II切割位点。

In vivo topoisomerase II cleavage sites in the ribosomal DNA of Physarum polycephalum.

作者信息

Borde V, Duguet M

机构信息

Laboratoire d'Enzymologie des Acides Nucléiques, Institut de Génétique et Microbiologie, URA 1354 CNRS, Université Paris Sud, Orsay, France.

出版信息

Biochemistry. 1996 May 7;35(18):5787-95. doi: 10.1021/bi952676q.

Abstract

We have analyzed the topoisomerase II cleavage sites in the extrachromosomal ribosomal DNA of the lower eukaryote Physarum polycephalum using the topoisomerase II-specific inhibitor, 6,8-difluoro-7-(4-hydroxyphenyl)-1-cyclopropyl-4-quinolone-3-carboxylic acid. Most of the in vivo topoisomerase II cleavage sites were found either in the transcribed region of ribosomal DNA or in the palindromic region surrounded by the replication origins. Two classes of sites were identified: those which correlate with DNase I hypersensitive sites and corresponding to an open chromatin configuration (transcribed region) and internucleosomal cleavage sites (in the region of replication origins). Topoisomerase II drug-induced cleavage in the ribosomal DNA was considerably reduced upon Physarum differentiation to a dormant stage of life, the spherules. In contrast, the amount of drug-dependent cleavage was found to increase during the metaphase of mitosis, when rDNA transcription is shut off. These findings suggest a role for topoisomerase II in the ribosomal DNA minichromosomes segregation, in addition to its role in transcription. Finally, the similarity between in vivo sites and those observed following drug treatment of isolated nuclei indicates that no profound change occurs in rDNA chromatin conformation during nuclei isolation. By contrast, in vitro cleavage sites with purified topoisomerase II weakly correlate to in vivo, indicating a prominent role for chromatin structure in determining the interaction sites of topoisomerase II with DNA in vivo.

摘要

我们使用拓扑异构酶II特异性抑制剂6,8-二氟-7-(4-羟基苯基)-1-环丙基-4-喹诺酮-3-羧酸,分析了低等真核生物多头绒泡菌染色体外核糖体DNA中的拓扑异构酶II切割位点。大多数体内拓扑异构酶II切割位点位于核糖体DNA的转录区域或被复制起点包围的回文区域。鉴定出两类位点:一类与DNase I超敏位点相关,对应于开放染色质构型(转录区域),另一类是核小体间切割位点(在复制起点区域)。当多头绒泡菌分化到生命的休眠阶段即小球体时,核糖体DNA中拓扑异构酶II药物诱导的切割显著减少。相反,在有丝分裂中期,当核糖体DNA转录关闭时,药物依赖性切割量增加。这些发现表明拓扑异构酶II除了在转录中发挥作用外,在核糖体DNA小染色体分离中也发挥作用。最后,体内位点与分离细胞核药物处理后观察到的位点之间的相似性表明,在细胞核分离过程中,核糖体DNA染色质构象没有发生深刻变化。相比之下,纯化的拓扑异构酶II的体外切割位点与体内位点的相关性较弱,这表明染色质结构在决定拓扑异构酶II与体内DNA相互作用位点方面起着重要作用。

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