Institute of Biomedicine and Biotechnology of Cantabria (IBBTEC), CSIC/Universidad de Cantabria/SODERCAN, Albert Einstein 22, 39011 Santander, Spain.
Development. 2022 Jun 1;149(11). doi: 10.1242/dev.186536. Epub 2022 Jun 10.
Enhancers control the establishment of spatiotemporal gene expression patterns throughout development. Over the past decade, the development of new technologies has improved our capacity to link enhancers with their target genes based on their colocalization within the same topological domains. However, the mechanisms that regulate how enhancers specifically activate some genes but not others within a given domain remain unclear. In this Review, we discuss recent insights into the factors controlling enhancer specificity, including the genetic composition of enhancers and promoters, the linear and 3D distance between enhancers and their target genes, and cell-type specific chromatin landscapes. We also discuss how elucidating the molecular principles of enhancer specificity might help us to better understand and predict the pathological consequences of human genetic, epigenetic and structural variants.
增强子控制着整个发育过程中时空基因表达模式的建立。在过去的十年中,新技术的发展提高了我们根据增强子在同一拓扑结构域内的共定位将其与靶基因联系起来的能力。然而,调节增强子如何特异性地在给定的结构域内激活某些基因而不是其他基因的机制仍不清楚。在这篇综述中,我们讨论了控制增强子特异性的因素的最新见解,包括增强子和启动子的遗传组成、增强子与其靶基因之间的线性和 3D 距离,以及细胞类型特异性染色质景观。我们还讨论了阐明增强子特异性的分子原理如何帮助我们更好地理解和预测人类遗传、表观遗传和结构变异的病理后果。