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Updated: Jun 5, 2026

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Published on: November 23, 2021
Transient perinuclear actin rings prevent cell aging and apoptosis via nuclear mechanical protection
Haoxiang Yang1, Houbo Sun1, Junhui Zhang2
1Department of Hematology, The First Affiliated Hospital of USTC, Division of Life Sciences and Medicine, University of Science and Technology of China, Hefei 230001, Anhui, China; CAS Key Laboratory of Mechanical Behavior and Design of Materials, Department of Modern Mechanics, University of Science and Technology of China, Hefei 230026, Anhui, China.
Abstract:
Epithelial tissues in vivo are often subjected to the challenge of mechanical forces and osmotic shock. However, how epithelial cells prevent DNA damage and reduce aging and apoptosis in the presence of these intense external stimuli remains unclear. Here, we found a reversible perinuclear actin ring can be assembled after rapid and significant hypotonic shock or mechanical forces. Combining experiments and simulations, we demonstrate it is merely a transient response of actin network that is regulated by Ca2+-mediated actin disassembly and Arp2/3-dependent actin polymerization. The mechanical confinement from this structure can result in transient nuclear stiffening and Lamin A/C enrichment at nuclear envelope, reduce the excessive increase of nuclear envelope tension, avoid DNA damage, and ultimately prevent aging and apoptosis. Thus, our findings revealed a new mechanobiological mechanism that the perinuclear actin ring can protect cells against abrupt external stimuli, and it could be a potential target for aging therapy.
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