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Updated: Jan 12, 2026

Visualization of G3BP Stress Granules Dynamics in Live Primary Cells
Published on: May 21, 2014
TRIM28-mediated SUMOylation of G3BP1/2 regulates stress granule dynamics
Yi Yuan1, Zhimin Xu1, Chenfang Si1
1Interdisciplinary Research Center on Biology and Chemistry, Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, 100 Haike Rd., Shanghai 201210, China; University of Chinese Academy of Sciences, Beijing 100049, China.
Abstract:
Stress granules (SGs) are stress-induced membraneless organelles whose dynamics are tightly regulated by protein interactions and modifications. However, whether SUMOylation directly targets SG core proteins G3BP1/2 and which ligase is involved remains unclear, partly due to their transient and membraneless nature. To investigate this SUMOylation and its ligase, we applied our low-concentration formaldehyde crosslinking (lcFAX) method to stabilize SGs and enhance analysis. Using lcFAX-MS, we identified TRIM28 as a previously undefined SG-associated protein and showed that it SUMOylates G3BP1 at K287 and G3BP2 at K281, establishing a critical mechanism regulating SG dynamics that ultimately impacts cellular ROS and apoptosis. In addition, lcFAX-seq provides insights into SG RNA composition. Altogether, our study uncovers an essential role for TRIM28-mediated SUMOylation in modulating SG dynamics. TRIM28 may act as a versatile regulator, and with the aid of lcFAX, this mechanism could be further explored across diverse membraneless organelles and regulatory pathways.
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