4.6 Article

Cyclin-Dependent Kinases and S Phase Control in Mammalian Cells

Journal

CELL CYCLE
Volume 2, Issue 4, Pages 316-324

Publisher

TAYLOR & FRANCIS INC
DOI: 10.4161/cc.2.4.468

Keywords

cell cycle; checkpoints; cyclin; DNA damage; DNA replication

Categories

Funding

  1. Croucher Foundation
  2. Philip Morris External Research Program
  3. Research Grants Council

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Mammalian DNA replication is an elegantly choreographed process in which multiple components are assembled at the origins to form the prereplication complex. Formation and activation of the prereplication complex requires coordinate actions of G(1) and S phase cyclin-dependent kinases. Cyclin E-CDK2 and cyclin A-CDK2, together with DBF4-CDC7, phosphorylate several components of the prereplication complex and replication machinery. In this review, we summarize the current understanding of the mechanism of initiation of DNA replication in mammalian cells. The roles of cyclin A/E-CDK2 complexes in driving replication, their relationship with other regulators of S phase, and their role in keeping replication to only once per cell cycle will be discussed. In addition, an important issue is the checks and balances that prevent inappropriate DNA replication, and how a breakdown in these checkpoints can lead to genomic instability and cancer. A critical mediator of these checkpoints, ATM, signals through a comprehensive network of proteins leading to CDK2 inhibition thus preventing DNA synthesis. This will be reviewed in addition to other mechanisms involved in the intra-S phase DNA damage checkpoint.

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