Latos Paulina A, Sienerth Arnold R, Murray Alexander, Senner Claire E, Muto Masanaga, Ikawa Masahito, Oxley David, Burge Sarah, Cox Brian J, Hemberger Myriam
Epigenetics Programme, The Babraham Institute, Cambridge CB22 3AT, United Kingdom; Centre for Trophoblast Research, University of Cambridge, Cambridge CB2 3EG, United Kingdom;
Graduate School of Pharmaceutical Sciences, Animal Resource Center for Infectious Diseases, Research Institute for Microbial Diseases, Osaka University, Suita, Osaka 565-0871, Japan;
Genes Dev. 2015 Dec 1;29(23):2435-48. doi: 10.1101/gad.268821.115. Epub 2015 Nov 19.
Elf5 is a transcription factor with pivotal roles in the trophoblast compartment, where it reinforces a trophoblast stem cell (TSC)-specific transcriptional circuit. However, Elf5 is also present in differentiating trophoblast cells that have ceased to express other TSC genes such as Cdx2 and Eomes. In the present study, we aimed to elucidate the context-dependent role of Elf5 at the interface between TSC self-renewal and the onset of differentiation. We demonstrate that precise levels of Elf5 are critical for normal expansion of the TSC compartment and embryonic survival, as Elf5 overexpression triggers precocious trophoblast differentiation. Through integration of protein interactome, transcriptome, and genome-wide chromatin immunoprecipitation data, we reveal that this abundance-dependent function is mediated through a shift in preferred Elf5-binding partners; in TSCs, Elf5 interaction with Eomes recruits Tfap2c to triply occupied sites at TSC-specific genes, driving their expression. In contrast, the Elf5 and Tfap2c interaction becomes predominant as their protein levels increase. This triggers binding to double- and single-occupancy sites that harbor the cognate Tfap2c motif, causing activation of the associated differentiation-promoting genes. These data place Elf5 at the center of a stoichiometry-sensitive transcriptional network, where it acts as a molecular switch governing the balance between TSC proliferation and differentiation.
Elf5是一种转录因子,在滋养层细胞中发挥关键作用,它强化了滋养层干细胞(TSC)特异性转录回路。然而,Elf5也存在于已停止表达其他TSC基因(如Cdx2和Eomes)的分化滋养层细胞中。在本研究中,我们旨在阐明Elf5在TSC自我更新与分化起始界面上的上下文依赖作用。我们证明,Elf5的精确水平对于TSC区室的正常扩增和胚胎存活至关重要,因为Elf5过表达会触发滋养层细胞早熟分化。通过整合蛋白质相互作用组、转录组和全基因组染色质免疫沉淀数据,我们揭示这种丰度依赖性功能是通过Elf5结合伙伴偏好的转变介导的;在TSC中,Elf5与Eomes的相互作用将Tfap2c招募到TSC特异性基因的三重占据位点,驱动它们的表达。相反,随着Elf5和Tfap2c蛋白质水平的增加,它们之间的相互作用变得占主导地位。这触发了与含有同源Tfap2c基序的双占据和单占据位点的结合,导致相关促分化基因的激活。这些数据表明Elf5处于一个对化学计量敏感的转录网络的中心,在其中它作为一个分子开关控制着TSC增殖和分化之间的平衡。