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放线菌素D对I型拓扑异构酶-DNA共价复合物的稳定作用。

Stabilization of type I topoisomerase-DNA covalent complexes by actinomycin D.

作者信息

Trask D K, Muller M T

机构信息

Department of Molecular Genetics, Ohio State University, Columbus 43210.

出版信息

Proc Natl Acad Sci U S A. 1988 Mar;85(5):1417-21. doi: 10.1073/pnas.85.5.1417.

Abstract

The activity of the endogenous DNA topoisomerase type I (EC 5.99.1.2) can be quantified in situ by determining how efficiently the enzyme is trapped in a covalent complex with DNA upon lysis of nuclei with detergents. In this way, we can measure relative levels of topoisomerase binding to DNA at native sites in chromatin. Since the majority of topoisomerase I is localized in the nucleolus at rRNA genes, we have evaluated how low levels of actinomycin D, which terminate transcription of rRNA genes, affect the activity of topoisomerase I. In vivo, as well as in vitro with purified topoisomerase I, we have found that drug treatment extends the half-life of the covalent topoisomerase-DNA complex. Actinomycin D stabilizes the nicked intermediate in the cleavage and resealing reaction but otherwise does not significantly alter the strand-passing ability of topoisomerase I. Sequence-specific cleavages by topoisomerase I were stimulated by actinomycin D at identical sequences recognized by the enzyme in the absence of drug. The localization of topoisomerase I in the nucleolus, coupled with the observation that transcription in this organelle is highly sensitive to actinomycin D and camptothecin treatment, leads us to propose that topoisomerase I contributes to actinomycin D inhibition of transcription.

摘要

内源性DNA拓扑异构酶I(EC 5.99.1.2)的活性可通过在使用去污剂裂解细胞核时,测定该酶与DNA形成共价复合物的效率来进行原位定量。通过这种方式,我们可以测量拓扑异构酶在染色质天然位点与DNA结合的相对水平。由于大多数拓扑异构酶I定位于核仁中的rRNA基因处,我们评估了低水平的放线菌素D(它可终止rRNA基因的转录)如何影响拓扑异构酶I的活性。在体内以及使用纯化的拓扑异构酶I进行体外实验时,我们发现药物处理延长了共价拓扑异构酶-DNA复合物的半衰期。放线菌素D稳定了切割和重新封闭反应中的切口中间体,但在其他方面并未显著改变拓扑异构酶I的链转移能力。在不存在药物时,拓扑异构酶I在相同序列处进行的序列特异性切割受到放线菌素D的刺激。拓扑异构酶I在核仁中的定位,以及该细胞器中的转录对放线菌素D和喜树碱处理高度敏感这一观察结果,使我们提出拓扑异构酶I有助于放线菌素D对转录的抑制作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d3b/279782/45c808ef11fd/pnas00257-0099-a.jpg

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