Muller M T, Pfund W P, Mehta V B, Trask D K
EMBO J. 1985 May;4(5):1237-43. doi: 10.1002/j.1460-2075.1985.tb03766.x.
The distribution of eukaryotic DNA topoisomerase I in the cell has been analyzed at four levels: (i) at the level of the nuclear matrix; (ii) at the cytological level by immunofluorescence of whole cells; (iii) at the electron microscopic level using the protein A/colloidal gold technique; and (iv) at the level of DNA to identify in situ the sequence upon which topoisomerase I is catalytically active. Although topoisomerase I is clearly distributed non-randomly in the nucleus, the unique distribution of the enzyme is not related to the nuclear matrix. The data support the conclusion that topoisomerase I is heavily concentrated in the nucleolus of the cell; furthermore, particular regions within the nucleolus are depleted of topoisomerase. A technique has been developed which allows isolation and analysis of the cellular DNA sequences covalently attached to topoisomerase. Ribosomal DNA sequences are at least 20-fold enriched in topoisomerase/DNA complexes isolated directly from a chromosomal setting, relative to total DNA. This is the first direct evidence that topoisomerase I is catalytically active on ribosomal DNA in vivo.
真核生物DNA拓扑异构酶I在细胞中的分布已在四个层面进行了分析:(i)核基质层面;(ii)通过全细胞免疫荧光在细胞学层面;(iii)使用蛋白A/胶体金技术在电子显微镜层面;以及(iv)在DNA层面以原位鉴定拓扑异构酶I具有催化活性的序列。尽管拓扑异构酶I在细胞核中的分布显然是非随机的,但该酶独特的分布与核基质无关。数据支持拓扑异构酶I大量集中在细胞的核仁这一结论;此外,核仁内的特定区域拓扑异构酶含量较低。已开发出一种技术,可用于分离和分析与拓扑异构酶共价连接的细胞DNA序列。相对于总DNA,从染色体环境中直接分离的拓扑异构酶/DNA复合物中核糖体DNA序列至少富集20倍。这是拓扑异构酶I在体内对核糖体DNA具有催化活性的首个直接证据。