Wang Bao, Bian Qian
Shanghai Institute of Precision Medicine, Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine, China.
Shanghai Key Laboratory of Reproductive Medicine, Shanghai Jiao Tong University School of Medicine, China.
FEBS J. 2025 Apr;292(8):1833-1852. doi: 10.1111/febs.17211. Epub 2024 Jun 29.
Within the three-dimensional (3D) nuclear space, the genome organizes into a series of orderly structures that impose important influences on gene regulation. T lymphocytes, crucial players in adaptive immune responses, undergo intricate transcriptional remodeling upon activation, leading to differentiation into specific effector and memory T cell subsets. Recent evidence suggests that T cell activation is accompanied by dynamic changes in genome architecture at multiple levels, providing a unique biological context to explore the functional relevance and molecular mechanisms of 3D genome organization. Here, we summarize recent advances that link the reorganization of genome architecture to the remodeling of transcriptional programs and conversion of cell fates during T cell activation and differentiation. We further discuss how various chromatin architecture regulators, including CCCTC-binding factor and several transcription factors, collectively modulate the genome architecture during this process.
在三维(3D)核空间中,基因组组织成一系列有序结构,对基因调控产生重要影响。T淋巴细胞是适应性免疫反应的关键参与者,激活后会经历复杂的转录重塑,导致分化为特定的效应T细胞和记忆T细胞亚群。最近的证据表明,T细胞激活伴随着基因组结构在多个层面的动态变化,为探索3D基因组组织的功能相关性和分子机制提供了独特的生物学背景。在这里,我们总结了将基因组结构重组与T细胞激活和分化过程中转录程序重塑及细胞命运转变联系起来的最新进展。我们还将进一步讨论包括CCCTC结合因子和几种转录因子在内的各种染色质结构调节因子如何在此过程中共同调节基因组结构。