Falbo Karina B, Shen Xuetong
Department of Carcinogenesis, Science Park Research Division, University of Texas MD Anderson Cancer Center, Smithville, Texas 78957, USA.
J Cell Biochem. 2006 Mar 1;97(4):684-9. doi: 10.1002/jcb.20752.
Chromatin remodeling complexes have evolved to solve a very basic problem for eukaryotic cells accommodation of the genome to fit the dimensions of the nucleus without loss of access to the DNA molecule. In the nucleus, DNA is wrapped around histones to form nucleosomes and other higher order compact chromatin structures. Chromatin remodeling complexes enable highly regulated access to DNA sequences in the context of chromatin, and it is well known that these complexes are involved in regulation of transcription. However, gene expression is not the only process that occurs in the nucleus. DNA has to be replicated, recombined, and repaired. In this regard, it is notable that the recent discoveries have linked ATP-dependent remodeling complexes to DNA damage repair. These results have raised challenging questions about the possible versatility of chromatin remodeling complexes in other nuclear activities, particularly in DNA replication, since a number of recent studies have suggested a connection between this essential cellular process and chromatin remodeling. However, the chromatin remodeling events regulating DNA replication have not been extensively investigated. The aim of this prospect is to summarize recent studies that implicate chromatin remodeling in DNA replication and to address potential roles of chromatin remodeling at various stages of eukaryotic DNA replication.
染色质重塑复合物的进化是为了解决真核细胞面临的一个非常基本的问题,即如何在不影响DNA分子可及性的情况下,使基因组适应细胞核的大小。在细胞核中,DNA缠绕在组蛋白周围形成核小体和其他更高层次的紧密染色质结构。染色质重塑复合物能够在染色质的背景下高度调控对DNA序列的访问,并且众所周知,这些复合物参与转录调控。然而,基因表达并不是细胞核中唯一发生的过程。DNA还必须进行复制、重组和修复。在这方面,值得注意的是,最近的发现已将ATP依赖的重塑复合物与DNA损伤修复联系起来。这些结果引发了关于染色质重塑复合物在其他核活动中可能具有的多功能性的挑战性问题,特别是在DNA复制方面,因为最近的一些研究表明这一基本细胞过程与染色质重塑之间存在联系。然而,调节DNA复制的染色质重塑事件尚未得到广泛研究。本综述的目的是总结最近暗示染色质重塑参与DNA复制的研究,并探讨染色质重塑在真核生物DNA复制各个阶段的潜在作用。