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◆ Cell reports2026-09-22

A USP28-BRD4 axis contributes to the acceleration of breast cancer growth by hyperglycemia.

Neng Li, Zhi Zhu, Zhenyong Li, Zhonglu Hu, Xiaoshuang Li, Qian Ke, Yumo Chen, Yixiang Huang, Lidong Sun, Tanjing Song

原始摘要(英文原文)· Original abstract
Diabetes exacerbates breast cancer progression through incompletely understood mechanisms. BRD4, a bromodomain transcriptional coactivator recognizing histone lysine acetylation, is overexpressed in cancer and upregulates tumor-promoting genes. But its role in diabetes-promoted breast cancer growth remains unknown. Here, we report that hyperglycemia stabilizes BRD4 protein to accelerate breast cancer growth. Proximity labeling proteomics identifies the deubiquitinase USP28 as a direct interactor and stabilizer of BRD4. The USP28-BRD4 interaction and USP28-catalyzed BRD4 deubiquitination require USP28 acetylation at lysine 702 (K702). This acetylation, catalyzed by acetyltransferase KAT8 and antagonized by NAD+-dependent deacetylase SIRT1, creates a binding site recognized by the BRD4 bromodomain 1. Under diabetes, hyperglycemia reduces intracellular NAD+, impairing SIRT1 activity, enhancing USP28-K702 acetylation, strengthening USP28-BRD4 interaction, and increasing BRD4 stability. Functional studies demonstrate that the USP28-BRD4 axis is required for hyperglycemia-driven breast cancer growth. Collectively, our findings unveil the USP28-BRD4 axis as a mechanistic link between hyperglycemia and cancer progression.
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A USP28-BRD4 axis contributes to the acceleration of breast cancer growth by hyperglycemia. — 科研速览 Science Skim