Wu Zhongyang, Pope Scott D, Ahmed Nasiha S, Leung Diana L, Hajjar Stephanie, Yue Qiuyu, Anand Diya M, Kopp Elizabeth B, Okin Daniel, Ma Weiyi, Kagan Jonathan C, Hargreaves Diana C, Medzhitov Ruslan, Zhou Xu
Division of Gastroenterology, Hepatology and Nutrition, Department of Pediatrics, Boston Children's Hospital and Harvard Medical School, Boston, Massachusetts 02115, USA.
Broad Institute of Massachusetts Institute of Technology and Harvard, Cambridge, Massachusetts 02142, USA.
bioRxiv. 2024 May 14:2024.05.10.592432. doi: 10.1101/2024.05.10.592432.
Inflammation is an essential defense response but operates at the cost of normal functions. Whether and how the negative impact of inflammation is monitored remains largely unknown. Acidification of the tissue microenvironment is associated with inflammation. Here we investigated whether macrophages sense tissue acidification to adjust inflammatory responses. We found that acidic pH restructured the inflammatory response of macrophages in a gene-specific manner. We identified mammalian BRD4 as a novel intracellular pH sensor. Acidic pH disrupts the transcription condensates containing BRD4 and MED1, via histidine-enriched intrinsically disordered regions. Crucially, decrease in macrophage intracellular pH is necessary and sufficient to regulate transcriptional condensates and , acting as negative feedback to regulate the inflammatory response. Collectively, these findings uncovered a pH-dependent switch in transcriptional condensates that enables environmental sensing to directly control inflammation, with a broader implication for calibrating the magnitude and quality of inflammation by the inflammatory cost.
炎症是一种重要的防御反应,但会以正常功能为代价。炎症的负面影响是否以及如何受到监测在很大程度上仍不清楚。组织微环境的酸化与炎症相关。在这里,我们研究了巨噬细胞是否感知组织酸化以调节炎症反应。我们发现酸性pH以基因特异性方式重塑了巨噬细胞的炎症反应。我们鉴定出哺乳动物BRD4作为一种新型的细胞内pH传感器。酸性pH通过富含组氨酸的内在无序区域破坏含有BRD4和MED1的转录凝聚物。至关重要的是,巨噬细胞内pH的降低对于调节转录凝聚物是必要且充分的,并且作为负反馈来调节炎症反应。总的来说,这些发现揭示了转录凝聚物中一种pH依赖性开关,该开关能够实现环境感知以直接控制炎症,这对于通过炎症代价来校准炎症的程度和质量具有更广泛的意义。