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A coordinated interplay: proteins with multiple functions in DNA replication, DNA repair, cell cycle/checkpoint control, and transcription.

机译:相互协调的相互作用:蛋白质在DNA复制,DNA修复,细胞周期/检查点控制和转录中具有多种功能。

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摘要

In eukaryotic cells, DNA transactions such as replication, repair, and transcription require a large set of proteins. In all of these events, complexes of more than 30 polypetides appear to function in highly organized and structurally well-defined machines. We have learned in the past few years that the three essential macromolecular events, replication, repair, and transcription, have common functional entities and are coordinated by complex regulatory mechanisms. This can be documented for replication and repair, for replication and checkpoint control, and for replication and cell cycle control, as well as for replication and transcription. In this review we cover the three different protein classes: DNA polymerases, DNA polymerase accessory proteins, and selected transcription factors. The "common enzyme-different pathway strategy" is fascinating from several points of view: first, it might guarantee that these events are coordinated; second, it can be viewed from an evolutionary angle; and third, this strategy might provide cells with backup mechanisms for essential physiological tasks.
机译:在真核细胞中,DNA交易(例如复制,修复和转录)需要大量蛋白质。在所有这些事件中,超过30种多肽的复合物似乎在高度组织化和结构明确的机器中起作用。在过去的几年中,我们了解到,三个基本的大分子事件(复制,修复和转录)具有共同的功能实体,并通过复杂的调节机制进行协调。可以为复制和修复,复制和检查点控制,复制和细胞周期控制以及复制和转录进行记录。在本文中,我们涵盖了三种不同的蛋白质类别:DNA聚合酶,DNA聚合酶辅助蛋白和选定的转录因子。从几种观点来看,“共同的酶-不同途径策略”令人着迷:首先,它可以确保这些事件得到协调。其次,可以从进化的角度看待它。第三,这种策略可能为细胞提供基本生理任务的备用机制。

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