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聚(ADP-核糖)聚合酶与DNA相互作用及自身聚(ADP-核糖基)化反应的一些电子显微镜观察方面

Some electron microscopic aspects of poly(ADPR) polymerase-DNA interactions and of auto-poly(ADP-ribosyl)ation reaction.

作者信息

Mandel P, Jongstra-Bilen J, Ittel M E, de Murcia G, Delain E, Niedergang C, Vosberg H P

出版信息

Princess Takamatsu Symp. 1983;13:71-81.

PMID:6317642
Abstract

Interaction of calf thymus poly(ADP-ribose(ADPR] polymerase with a copurified DNA fraction (sDNA) was investigated. Electron microscopic studies of sDNA which appeared to be a powerful poly(ADPR) polymerase activator have shown that the purified poly(ADPR) polymerase-DNA complexes possess a "nucleosome like structure", with DNA wrapping around the enzyme molecule. Examination of the DNA linked poly(ADPR) polymerase preparations revealed the presence of Y-structures in sDNA. The enrichment in the sDNA fraction of the Y shape DNA suggests the existence of replication fork structures in the poly(ADPR) polymerase linked DNA and or in the vicinity of the enzyme. With increasing auto-poly(ADP-ribosyl)ation the enzyme molecule becomes much denser, increases in size and detaches from the DNA. When poly(ADPR) formed was purified and examined by electron microscopy, branched polymers of different sizes were observed. The formation of these polymers may explain the size gained by poly ADP-ribosylated enzyme molecules. When the interaction of poly(ADPR) polymerase with the plasmid pBR 322 was tested, a slight contamination of our enzyme preparation with topoisomerase I was detected. The contaminant topoisomerase I activity, however, was completely abolished by ADP-ribosylation. Further experiments with purified calf thymus topoisomerase I confirmed that this enzyme loses its activity following ADP-ribosylation with poly(ADPR) polymerase. These results may suggest that ADP-ribosylation of topoisomerase I can be one of the regulatory mechanisms of its activity. Furthermore, these results confirm that a topoisomerase I contaminant does not interfere with the ADP-ribosylation experiments of purified poly(ADPR) polymerase preparation.

摘要

研究了小牛胸腺多聚(ADP - 核糖)聚合酶与共纯化的DNA组分(sDNA)的相互作用。对似乎是一种强大的多聚(ADPR)聚合酶激活剂的sDNA进行的电子显微镜研究表明,纯化的多聚(ADPR)聚合酶 - DNA复合物具有“核小体样结构”,DNA围绕酶分子缠绕。对与DNA相连的多聚(ADPR)聚合酶制剂的检查揭示了sDNA中存在Y结构。Y形DNA在sDNA组分中的富集表明在多聚(ADPR)聚合酶连接的DNA中以及/或者在酶附近存在复制叉结构。随着自身多聚(ADP - 核糖基)化增加,酶分子变得更加致密,尺寸增大并从DNA上脱离。当纯化形成的多聚(ADPR)并通过电子显微镜检查时,观察到不同大小的分支聚合物。这些聚合物的形成可能解释了多聚ADP - 核糖基化酶分子增加的尺寸。当测试多聚(ADPR)聚合酶与质粒pBR 322的相互作用时,检测到我们的酶制剂被拓扑异构酶I轻微污染。然而,污染物拓扑异构酶I的活性通过ADP - 核糖基化被完全消除。用纯化的小牛胸腺拓扑异构酶I进行的进一步实验证实,该酶在用多聚(ADPR)聚合酶进行ADP - 核糖基化后失去活性。这些结果可能表明拓扑异构酶I的ADP - 核糖基化可能是其活性的调节机制之一。此外,这些结果证实拓扑异构酶I污染物不干扰纯化的多聚(ADPR)聚合酶制剂的ADP - 核糖基化实验。

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