Laboratory of Molecular Immunology and the Immunology Center, National Heart, Lung, and Blood Institute, National Institutes of Health, Bethesda, MD, 20892-1674, USA.
BMC Genomics. 2023 Oct 28;24(1):650. doi: 10.1186/s12864-023-09693-8.
Gene expression has long been known to be influenced by the relative proximity of DNA regulatory elements. Topologically associating domains (TADs) are self-interacting genomic regions involved in regulating gene expression by controlling the proximity of these elements. Prior studies of TADs and their biological roles have revealed correlations between TAD changes and cellular differentiation. Here, we used Hi-C and RNA-seq data to correlate TCR-induced changes in TAD structure and gene expression in human CD4 T cells.
We developed a pipeline, Differentially Expressed Gene Enrichment Finder (DEGEF), that identifies regions of differentially expressed gene enrichment. Using DEGEF, we found that TCR-regulated genes cluster non-uniformly across the genome and that these clusters preferentially localized in regions of TAD rearrangement. Interestingly, clusters of upregulated genes preferentially formed new Hi-C contacts compared to downregulated clusters, suggesting that TCR-activated CD4 T cells may regulate genes by changing stimulatory contacts rather than inhibitory contacts.
Our observations support a significant relationship between TAD rearrangements and changes in local gene expression. These findings indicate potentially important roles for TAD rearrangements in shaping their local regulatory environments and thus driving differential expression of nearby genes during CD4 T cell activation. Moreover, they provide new insights into global mechanisms that regulate gene expression.
基因表达长期以来一直受到 DNA 调控元件相对位置的影响。拓扑关联域(TAD)是自我相互作用的基因组区域,通过控制这些元件的接近程度来调节基因表达。先前对 TAD 及其生物学功能的研究揭示了 TAD 变化与细胞分化之间的相关性。在这里,我们使用 Hi-C 和 RNA-seq 数据来关联 TCR 诱导的人类 CD4 T 细胞中 TAD 结构和基因表达的变化。
我们开发了一个管道,差异表达基因富集发现器(DEGEF),用于识别差异表达基因富集的区域。使用 DEGEF,我们发现 TCR 调节的基因在基因组中不均匀地聚类,并且这些聚类优先定位于 TAD 重排的区域。有趣的是,上调基因的聚类与下调基因的聚类相比,更倾向于形成新的 Hi-C 接触,这表明 TCR 激活的 CD4 T 细胞可能通过改变刺激接触而不是抑制接触来调节基因。
我们的观察结果支持 TAD 重排与局部基因表达变化之间存在显著关系。这些发现表明 TAD 重排在塑造其局部调控环境以及在 CD4 T 细胞激活过程中驱动附近基因的差异表达方面可能具有重要作用。此外,它们为调节基因表达的全局机制提供了新的见解。