Regulation of gene expression has recently been complicated by identifying Epromoters, a subset of promoters with enhancer function. Here, we uncovered a dual cis-regulatory element, "ESpromoter," exhibiting both enhancer and silencer function as a regulator of the nearby genes ATP2B4 and LAX1 in single human T cells. Through an integrative approach, we pinpointed functional rs11240391, a severe malaria-risk variant that escapes detection in genome-wide association studies, challenging conventional strategies for identifying causal variants. CRISPR-modified cells demonstrated the regulatory effect of ESpromoter and rs11240391 on LAX1 expression and T cell activation. Furthermore, our findings revealed an epistatic interaction between ESpromoter SNPs and rs11240391, impacting severe malaria susceptibility by further reducing LAX1 expression. This groundbreaking discovery challenges the conventional enhancer-silencer dichotomy. It highlights the sophistication of transcriptional regulation and argues for an integrated approach combining genetics, epigenetics, and genomics to identify new therapeutic targets for complex diseases.
Unraveling an enhancer-silencer regulatory element showing epistatic interaction with a variant that escaped genome-wide association studies.
揭示增强子-沉默子调控元件与一种逃脱全基因组关联研究的变异体存在上位性相互作用
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作者:Adjemout Mathieu, Nisar Samia, Escandell Amélie, Torres Romain, Torres Magali, Nguyen Huu Hong Thu, Thiam Alassane, Manosalva Iris, Mbengue Babacar, Dieye Alioune, Adoue Véronique, Spicuglia Salvatore, Rihet Pascal, Marquet Sandrine
| 期刊: | Cell Genomics | 影响因子: | 9.000 |
| 时间: | 2025 | 起止号: | 2025 Jul 9; 5(7):100889 |
| doi: | 10.1016/j.xgen.2025.100889 | 研究方向: | 其它 |
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