Lilley Caroline E, Chaurushiya Mira S, Weitzman Matthew D
Laboratory of Genetics, The Salk Institute for Biological Studies, La Jolla, CA 92037, USA.
Biochim Biophys Acta. 2010 Mar-Apr;1799(3-4):319-27. doi: 10.1016/j.bbagrm.2009.06.007. Epub 2009 Jul 17.
During infection, viruses cause global disruption to nuclear architecture in their attempt to take over the cell. In turn, the host responds with various defenses, which include chromatin-mediated silencing of the viral genome and activation of DNA damage signaling pathways. Dynamic exchanges at chromatin, and specific post-translational modifications on histones have recently emerged as master controllers of DNA damage signaling and repair. Studying viral control of chromatin modifications is identifying histones as important players in the battle between host and virus for control of cell cycle and gene expression. These studies are revealing new complexities of the virus-host interaction, uncovering the potential of chromatin as an anti-viral defense mechanism, and also providing unique insights into the role of chromatin in DNA repair.
在感染过程中,病毒试图接管细胞,从而对核结构造成全面破坏。反过来,宿主会做出各种防御反应,包括通过染色质介导使病毒基因组沉默以及激活DNA损伤信号通路。染色质的动态交换以及组蛋白上特定的翻译后修饰最近已成为DNA损伤信号传导和修复的主要调控因素。研究病毒对染色质修饰的控制正在确定组蛋白是宿主与病毒争夺细胞周期和基因表达控制权这场战斗中的重要参与者。这些研究揭示了病毒与宿主相互作用的新复杂性,发现了染色质作为一种抗病毒防御机制的潜力,同时也为染色质在DNA修复中的作用提供了独特的见解。