In diabetes, pancreatic β cells degenerate from their mature differentiated state to a dedifferentiated state. BRD4 plays a pivotal role during embryogenesis and cancer development, but its function in modulating β-cell differentiation remains unknown. In this study, multiple models including calorie restriction db/db mouse, long-term and acute conditional knockout mouse, and human islet organoids are adopted to assess BRD4 function in β cells. Two hundred twenty-two young patients with diabetes are also recruited for whole exome sequencing (WES) to screen for BRD4 mutations. This study shows that BRD4 expression is significantly reduced in human diabetic β cells while significantly increased after calorie restriction in the diabetic mouse. β cell differentiation is impaired after long-term and acute Brd4 knockout. BRD4 knockdown in human islet organoids results in the loss of differentiation and reduction of insulin synthesis. It is found that p.R749C can significantly affect BRD4 signaling and might play roles in diabetes development in patients. This study also shows that ATF5 is a direct target of the BRD4 pathway in β cells. Targeting BRD4-mediated regulatory networks may hold promise for developing novel therapeutic strategies to maintain the differentiated state of β cells.
BRD4 Signaling Maintains the Differentiated State of β Cells.
BRD4 信号维持 β 细胞的分化状态
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作者:Liu Fuqiang, Liu Guang, Song Jia, Sun Yujing, Yang Mengmeng, Liu Hualin, Zhao Hongkai, Chen Jiamu, Qiao Qincheng, Li Siyue, Yu Chenglong, Qu Jingru, Zou Ying, Wang Tixiao, Liu Jidong, Zhao Lei, Tian Huihui, Huang Tao, Zhang Manna, Chen Li, Zhao Ruxing, Du Yuanyuan, Hou Xinguo
| 期刊: | Advanced Science | 影响因子: | 14.100 |
| 时间: | 2025 | 起止号: | 2025 Sep;12(33):e05659 |
| doi: | 10.1002/advs.202505659 | 研究方向: | 信号转导、细胞生物学 |
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