Ciuffi Angela, Bushman Frederic D
University of Pennsylvania School of Medicine, Department of Microbiology, 3610 Hamilton Walk, Philadelphia, PA 19104-6076, USA.
Trends Genet. 2006 Jul;22(7):388-95. doi: 10.1016/j.tig.2006.05.006. Epub 2006 May 26.
To replicate, a retrovirus must integrate a DNA copy of its RNA genome into a chromosome of the host cell. Integration is not random in the host genome but favors particular regions, and preferences differ among retroviruses. Several mechanisms might play a part in this favored integration targeting: (i) open chromatin might be preferentially accessible for viral DNA integration; (ii) DNA replication during cell division might facilitate access of integration complexes to favored sites; and (iii) cellular proteins bound to the host chromosome might tether integration complexes to favored regions. This review summarizes recent advances in understanding the mechanisms of retroviral integration, focusing on LEDGF/p75--the first cellular protein shown to have a role in directing HIV DNA integration. Studies on LEDGF/p75 indicate that it directs HIV integration site selection by a tethering interaction, whereas the chromatin accessibility or cell cycle models are less well supported. Understanding viral integration will help improve the safety of retrovirus-based vectors used in gene therapy.
逆转录病毒要进行复制,必须将其RNA基因组的DNA拷贝整合到宿主细胞的染色体中。整合在宿主基因组中并非随机发生,而是倾向于特定区域,并且不同逆转录病毒的偏好有所不同。几种机制可能参与了这种偏向性整合靶向:(i)开放染色质可能优先便于病毒DNA整合;(ii)细胞分裂期间的DNA复制可能促进整合复合物进入偏好位点;(iii)与宿主染色体结合的细胞蛋白可能将整合复合物拴系到偏好区域。本综述总结了在理解逆转录病毒整合机制方面的最新进展,重点关注LEDGF/p75——首个被证明在指导HIV DNA整合中起作用的细胞蛋白。对LEDGF/p75的研究表明,它通过拴系相互作用指导HIV整合位点的选择,而染色质可及性或细胞周期模型的支持力度较小。了解病毒整合将有助于提高基因治疗中使用的基于逆转录病毒的载体的安全性。