Li Hao, Liu Feng, Ren Chao, Bo Xiaochen, Shu Wenjie
Department of Biotechnology, Beijing Institute of Radiation Medicine, Beijing, 100850, China.
BMC Genomics. 2016 Sep 15;17(1):733. doi: 10.1186/s12864-016-3077-4.
HOT (high-occupancy target) regions, which are bound by a surprisingly large number of transcription factors, are considered to be among the most intriguing findings of recent years. An improved understanding of the roles that HOT regions play in biology would be afforded by knowing the constellation of factors that constitute these domains and by identifying HOT regions across the spectrum of human cell types.
We characterised and validated HOT regions in embryonic stem cells (ESCs) and produced a catalogue of HOT regions in a broad range of human cell types. We found that HOT regions are associated with genes that control and define the developmental processes of the respective cell and tissue types. We also showed evidence of the developmental persistence of HOT regions at primitive enhancers and demonstrate unique signatures of HOT regions that distinguish them from typical enhancers and super-enhancers. Finally, we performed a dynamic analysis to reveal the dynamical regulation of HOT regions upon H1 differentiation.
Taken together, our results provide a resource for the functional exploration of HOT regions and extend our understanding of the key roles of HOT regions in development and differentiation.
高占据靶点(HOT)区域被大量转录因子所结合,被认为是近年来最引人关注的发现之一。通过了解构成这些区域的因子组合以及在人类各种细胞类型中识别HOT区域,将有助于更好地理解HOT区域在生物学中的作用。
我们对胚胎干细胞(ESC)中的HOT区域进行了表征和验证,并编制了一份广泛人类细胞类型中的HOT区域目录。我们发现HOT区域与控制和定义各自细胞及组织类型发育过程的基因相关。我们还展示了HOT区域在原始增强子处发育持久性的证据,并证明了HOT区域与典型增强子和超级增强子不同的独特特征。最后,我们进行了动态分析,以揭示H1分化过程中HOT区域的动态调控。
综上所述,我们的结果为HOT区域的功能探索提供了资源,并扩展了我们对HOT区域在发育和分化中的关键作用的理解。