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Updated: Jul 7, 2025

A Mouse Model of Hemorrhagic Transformation Induced by Acute Hyperglycemia Combined with Transient Focal Ischemia
Published on: November 15, 2024
JunB condensation attenuates vascular endothelial damage under hyperglycemic condition
Xuxia Ren1, Zexu Cui1, Qiaoqiao Zhang2
1Laboratory for Aging and Cancer Research, Frontiers Science Center Disease-related Molecular Network, State Key Laboratory of Respiratory Health and Multimorbidity and National Clinical Research Center for Geriatrics, West China Hospital, Sichuan University, Chengdu 610041, China.
Abstract:
Endothelial damage is the initial and crucial factor in the occurrence and development of vascular complications in diabetic patients, contributing to morbidity and mortality. Although hyperglycemia has been identified as a damaging effector, the detailed mechanisms remain elusive. In this study, identified by ATAC-seq and RNA-seq, JunB reverses the inhibition of proliferation and the promotion of apoptosis in human umbilical vein endothelial cells treated with high glucose, mainly through the cell cycle and p53 signaling pathways. Furthermore, JunB undergoes phase separation in the nucleus and in vitro, mediated by its intrinsic disordered region and DNA-binding domain. Nuclear localization and condensation behaviors are required for JunB-mediated proliferation and apoptosis. Thus, our study uncovers the roles of JunB and its coacervation in repairing vascular endothelial damage caused by high glucose, elucidating the involvement of phase separation in diabetes and diabetic endothelial dysfunction.
Insights
JunB protein repairs high glucose-induced endothelial damage by regulating cell cycle and apoptosis. This protein
Area of Science:
- Molecular Biology
- Cell Biology
- Endocrinology
Background:
- Diabetic vascular complications stem from endothelial damage.
- Hyperglycemia is a key driver, but mechanisms are unclear.
Purpose of the Study:
- Investigate JunB's role in high glucose-induced endothelial dysfunction.
- Elucidate JunB's molecular mechanisms and phase separation behavior.
Main Methods:
- ATAC-seq and RNA-seq identified JunB.
- Assessed JunB's effects on human umbilical vein endothelial cells (HUVECs) under high glucose.
- Studied JunB's nuclear phase separation in vitro and in cells.
Main Results:
- JunB reversed high glucose-induced inhibition of proliferation and apoptosis in HUVECs.
- JunB acts via cell cycle and p53 signaling pathways.
- JunB undergoes DNA- and disordered region-mediated nuclear phase separation, crucial for its function.
Conclusions:
- JunB repairs high glucose-induced vascular endothelial damage.
- JunB's phase separation is vital for its protective role in diabetic endothelial dysfunction.
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