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RUNX1 is a transcription factor that plays key roles in hematopoietic development and in hematopoiesis and lymphopoiesis. In this article, we report that RUNX1 regulates a gene expression program in naive mouse B cells that affects the dynamics of cell cycle entry in response to stimulation of the BCR. Conditional knockout of in mouse resting B cells resulted in accelerated entry into S-phase after BCR engagement. Our results indicate that Runx1 regulates the cyclin D2 () gene, the immediate early genes , , and , and the Notch pathway gene in mouse B cells, reducing the rate at which transcription of these genes increases after BCR stimulation. RUNX1 interacts with the chromatin remodeler SNF-2-related CREB-binding protein activator protein (SRCAP), recruiting it to promoter and enhancer regions of the gene. BCR-mediated activation triggers switching between binding of RUNX1 and its paralog RUNX3 and between SRCAP and the switch/SNF remodeling complex member BRG1. Binding of BRG1 is increased at the and promoters in the knockout cells after BCR stimulation. We also find that RUNX1 exerts positive or negative effects on a number of genes that affect the activation response of mouse resting B cells. These include and , which act as negative regulators of the BCR, and the IFN receptor subunit gene The hyperresponsiveness of the knockout B cells to BCR stimulation and its role in regulating genes that are associated with immune regulation suggest that RUNX1 could be involved in regulating B cell tolerance.
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http://dx.doi.org/10.4049/jimmunol.2001367 | DOI Listing |
Gen Physiol Biophys
September 2025
Department of Respiratory and Critical Care Medicine, Lishui Second People's Hospital, Lishui, China.
Circular RNA (circRNA) has been confirmed to be a regulator for septic acute kidney injury (AKI). It is reported that circ_0049271 has abnormal expression in AKI patients, but its role and mechanism in septic AKI remain unclear. Lipopolysaccharide (LPS)-stimulated HK-2 cells were served as the cellular model of sepsis-associated AKI (SAKI).
View Article and Find Full Text PDFOpen Life Sci
August 2025
Department of Radiology, Xianning Central Hospital, The First Affiliated Hospital of Hubei University of Science and Technology, No. 228, Jingui Road, Xian'an District, Xianning, Hubei, 437000, China.
Peripheral nerve injury-induced muscle atrophy is characterized by chronic inflammation and dysregulated macrophage polarization. RUNX1, a transcription factor upregulated in denervated muscle, has been implicated in linking muscle degeneration to inflammatory processes, but its downstream targets and mechanisms remain unclear. The aim of this study is to delineate the RUNX1-JUNB-NF-κB axis in driving inflammation-mediated muscle atrophy.
View Article and Find Full Text PDFEstablishing immune tolerance to gut microbiota and food antigens upon first exposures during early life is essential to prevent inflammatory bowel diseases and food allergy and depends on induction of peripherally induced Rorgt expressing regulatory T (Rorgt+ pTreg) cells. Recent studies have identified a critical role for Rorgt expressing antigen-presenting cells (APC), Thetis cells (TCs), in peripheral regulatory T (pTreg) cell differentiation and tolerance to food and commensal microbes. TCs encompass four distinct subsets, and a subset of TCs, TC IV induces pTreg differentiation, but the transcription factors that control their differentiation are not fully known.
View Article and Find Full Text PDFInvest Ophthalmol Vis Sci
August 2025
Ophthalmic Center, The Second Affiliated Hospital, Jiangxi Medical College, Nanchang University, Nanchang, Jiangxi, China.
Purpose: This study aimed to elucidate the regulatory role of Runt-related transcription factor 1 (RUNX1) in corneal neovascularization (CoNV) and its possible mechanisms.
Methods: In VEGF-induced human umbilical vein endothelial cells (HUVECs), lentiviral vectors were used to knock down or overexpress RUNX1, and plasmid transfection was employed to knock down P300. EdU assay, Transwell assay, and tube formation assay were conducted to assess cell proliferation, migration, and tube formation ability, respectively.
Endocrinology
August 2025
Department of Molecular and Integrative Physiology, University of Illinois, Urbana-Champaign, Urbana, IL.
During early pregnancy, human endometrial stromal cells differentiate into secretory decidual cells via a process regulated by ovarian steroid hormones. Decidual cells play a crucial role by secreting various factors that support essential events in forming a functional placenta, including uterine angiogenesis and the differentiation and development of trophoblasts. We previously reported that the conditional ablation of the transcription factor RUNX1 in the mouse uterus leads to subfertility due to insufficient maternal angiogenesis and impaired trophoblast differentiation.
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