Institute for Molecular Bioscience, The University of Queensland, St. Lucia, Brisbane, QLD 4072, Australia.
Institute for Molecular Bioscience, The University of Queensland, St. Lucia, Brisbane, QLD 4072, Australia; WHO Collaborating Centre for Reference and Research on Influenza, The Peter Doherty Institute for Infection and Immunity, Melbourne, VIC 3000, Australia.
Cell Metab. 2024 Aug 6;36(8):1858-1881.e23. doi: 10.1016/j.cmet.2024.06.006. Epub 2024 Jul 2.
A mechanistic connection between aging and development is largely unexplored. Through profiling age-related chromatin and transcriptional changes across 22 murine cell types, analyzed alongside previous mouse and human organismal maturation datasets, we uncovered a transcription factor binding site (TFBS) signature common to both processes. Early-life candidate cis-regulatory elements (cCREs), progressively losing accessibility during maturation and aging, are enriched for cell-type identity TFBSs. Conversely, cCREs gaining accessibility throughout life have a lower abundance of cell identity TFBSs but elevated activator protein 1 (AP-1) levels. We implicate TF redistribution toward these AP-1 TFBS-rich cCREs, in synergy with mild downregulation of cell identity TFs, as driving early-life cCRE accessibility loss and altering developmental and metabolic gene expression. Such remodeling can be triggered by elevating AP-1 or depleting repressive H3K27me3. We propose that AP-1-linked chromatin opening drives organismal maturation by disrupting cell identity TFBS-rich cCREs, thereby reprogramming transcriptome and cell function, a mechanism hijacked in aging through ongoing chromatin opening.
衰老和发育之间的机制联系在很大程度上尚未被探索。通过对 22 种小鼠细胞类型的与年龄相关的染色质和转录变化进行分析,并与之前的小鼠和人类机体成熟数据集进行分析,我们发现了一个在这两个过程中都常见的转录因子结合位点(TFBS)特征。在成熟和衰老过程中,逐渐失去可及性的早期生命候选顺式调控元件(cCRE)富含细胞类型特异性 TFBS。相反,在整个生命周期中获得可及性的 cCRE 具有较低的细胞身份 TFBS 丰度,但激活蛋白 1(AP-1)水平升高。我们认为,TF 向这些富含 AP-1 TFBS 的 cCRE 的重新分布,与细胞身份 TF 的轻度下调协同作用,是导致早期生命 cCRE 可及性丧失和改变发育和代谢基因表达的原因。这种重塑可以通过提高 AP-1 或耗尽抑制性 H3K27me3 来触发。我们提出,AP-1 相关的染色质开放通过破坏富含细胞身份 TFBS 的 cCRE,从而重编程转录组和细胞功能,通过持续的染色质开放在衰老过程中劫持了这一机制,驱动机体成熟。