Raynaud Cécile, Mallory Allison C, Latrasse David, Jégu Teddy, Bruggeman Quentin, Delarue Marianne, Bergounioux Catherine, Benhamed Moussa
Institut de Biologie des Plantes, UMR8618 Université Paris-Sud XI, 91405 Orsay, France.
Institut de Biologie des Plantes, UMR8618 Université Paris-Sud XI, 91405 Orsay, France
J Exp Bot. 2014 Jun;65(10):2677-89. doi: 10.1093/jxb/ert433. Epub 2014 Feb 4.
The cell cycle is one of the most comprehensively studied biological processes, due primarily to its significance in growth and development, and its deregulation in many human disorders. Studies using a diverse set of model organisms, including yeast, worms, flies, frogs, mammals, and plants, have greatly expanded our knowledge of the cell cycle and have contributed to the universally accepted view of how the basic cell cycle machinery is regulated. In addition to the oscillating activity of various cyclin-dependent kinase (CDK)-cyclin complexes, a plethora of proteins affecting various aspects of chromatin dynamics has been shown to be essential for cell proliferation during plant development. Furthermore, it was reported recently that core cell cycle regulators control gene expression by modifying histone patterns. This review focuses on the intimate relationship between the cell cycle and chromatin. It describes the dynamics and functions of chromatin structures throughout cell cycle progression and discusses the role of heterochromatin as a barrier against re-replication and endoreduplication. It also proposes that core plant cell cycle regulators control gene expression in a manner similar to that described in mammals. At present, our challenge in plants is to define the complete set of effectors and actors that coordinate cell cycle progression and chromatin structure and to understand better the functional interplay between these two processes.
细胞周期是研究最为全面的生物学过程之一,这主要归因于其在生长发育中的重要性以及在许多人类疾病中的失调。使用包括酵母、线虫、果蝇、青蛙、哺乳动物和植物在内的多种模式生物进行的研究,极大地扩展了我们对细胞周期的认识,并促成了关于基本细胞周期机制如何调控的普遍接受的观点。除了各种细胞周期蛋白依赖性激酶(CDK)-细胞周期蛋白复合物的振荡活性外,大量影响染色质动力学各个方面的蛋白质已被证明在植物发育过程中对细胞增殖至关重要。此外,最近有报道称,核心细胞周期调节因子通过修饰组蛋白模式来控制基因表达。本综述聚焦于细胞周期与染色质之间的密切关系。它描述了整个细胞周期进程中染色质结构的动态变化和功能,并讨论了异染色质作为防止再复制和核内复制的屏障的作用。它还提出,核心植物细胞周期调节因子以类似于哺乳动物中所描述的方式控制基因表达。目前,我们在植物研究中的挑战是确定协调细胞周期进程和染色质结构的完整效应物和作用因子集,并更好地理解这两个过程之间的功能相互作用。