Department of Molecular, Cellular, and Developmental Biology, BioFrontiers Institute, University of Colorado, Boulder, Colorado, USA.
Immunol Rev. 2022 Jan;305(1):165-178. doi: 10.1111/imr.13042. Epub 2021 Nov 23.
In recent years, there has been significant progress toward understanding the transcriptional networks underlying mammalian immune responses, fueled by advances in regulatory genomic technologies. Epigenomic studies profiling immune cells have generated detailed genome-wide maps of regulatory elements that will be key to deciphering the regulatory networks underlying cellular immune responses and autoimmune disorders. Unbiased analyses of these genomic maps have uncovered endogenous retroviruses as an unexpected ally in the regulation of human immune systems. Despite their parasitic origins, studies are finding an increasing number of examples of retroviral sequences having been co-opted for beneficial immune function and regulation by the host cell. Here, we review how endogenous retroviruses have given rise to numerous regulatory elements that shape the epigenetic landscape of host immune responses. We will discuss the implications of these elements on the function, dysfunction, and evolution of innate immunity.
近年来,随着调控基因组技术的进步,人们对哺乳动物免疫反应的转录网络有了更深入的了解。对免疫细胞进行的表观基因组研究生成了调控元件的详细全基因组图谱,这些图谱对于解析细胞免疫反应和自身免疫性疾病的调控网络至关重要。对这些基因组图谱的无偏分析揭示了内源性逆转录病毒是调控人类免疫系统的一个意外盟友。尽管它们起源于寄生,但研究发现越来越多的逆转录病毒序列被宿主细胞用于有益的免疫功能和调控。在这里,我们回顾了内源性逆转录病毒如何产生众多调控元件,从而塑造宿主免疫反应的表观遗传景观。我们将讨论这些元件对先天免疫的功能、功能障碍和进化的影响。