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影响真核生物中DNA复制许可控制多样性的因素。

Factors affecting the diversity of DNA replication licensing control in eukaryotes.

作者信息

Drury Lucy S, Diffley John F X

机构信息

Cancer Research UK London Research Institute, Clare Hall Laboratories, South Mimms, Herts EN6 3LD, UK.

出版信息

Curr Biol. 2009 Mar 24;19(6):530-5. doi: 10.1016/j.cub.2009.02.034. Epub 2009 Mar 12.

Abstract

Replication of eukaryotic genomes is limited to once per cell cycle, by a two-step mechanism. DNA replication origins are first "licensed" during G1 phase by loading of an inactive DNA helicase (Mcm2-7) into pre-replicative complexes (pre-RCs). Initiation then occurs during S phase, triggered by cyclin-dependent kinases (CDKs), which promote recruitment of proteins required for helicase activation and replisome assembly. CDKs and the anaphase promoting complex/cyclosome (APC/C) restrict licensing to G1 phase by directly and indirectly regulating pre-RC components, including ORC, Cdc6, Cdt1, and Mcm2-7. Despite the fundamental importance of licensing regulation, the mechanisms by which pre-RC components are regulated differ widely across Eukarya. Here we show that even within the genus Saccharomyces, Cdc6 is regulated differently in different species. We propose that two factors contribute to the rapid evolution of licensing regulation. The first is redundancy: eliminating any single pre-RC-regulatory mechanism has very little affect on viability. The second is interchangeability: we show that regulatory mechanisms can be swapped between pre-RC components without compromising the block to re-replication. These experiments provide a framework for understanding the diversity of licensing regulation in eukaryotes and provide new tools for manipulating the chromosome-replication cycle.

摘要

真核生物基因组的复制在每个细胞周期中通过两步机制被限制为仅一次。DNA复制起点首先在G1期通过将无活性的DNA解旋酶(Mcm2-7)加载到复制前复合体(pre-RC)中而被“许可”。然后在S期发生起始,由细胞周期蛋白依赖性激酶(CDK)触发,CDK促进解旋酶激活和复制体组装所需蛋白质的募集。CDK和后期促进复合体/细胞周期体(APC/C)通过直接和间接调节包括ORC、Cdc6、Cdt1和Mcm2-7在内的pre-RC组分,将许可限制在G1期。尽管许可调节至关重要,但pre-RC组分的调节机制在真核生物中差异很大。在这里我们表明,即使在酿酒酵母属内,Cdc6在不同物种中的调节方式也不同。我们提出有两个因素促成了许可调节的快速进化。第一个是冗余性:消除任何单一的pre-RC调节机制对生存能力的影响都很小。第二个是互换性:我们表明调节机制可以在pre-RC组分之间交换而不会损害对再复制的阻断。这些实验为理解真核生物中许可调节的多样性提供了一个框架,并为操纵染色体复制周期提供了新工具。

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