Authors
Fatima Shaalan, Fatima Kdouh, Zahraa Salhab, Rawan Issa, Fatima Soufan, Zeinab Al Dirani, Jana Kourani, Ghinwa Itani, Jana Mahmoud-Haidar, Sara Badawi, Hussein Fayyad-Kazan
Published in
Cellular and molecular bioengineering. Volume 19. Issue 3. Pages 257-267. Epub Jun 04, 2026.
Abstract
The nucleolus, traditionally viewed as the site of ribosome biogenesis, is now recognized as a multifunctional organelle involved in stress sensing, genome regulation, and cellular homeostasis. In parallel, mechanical cues arising from neighboring cells, extracellular matrix, and fluid flow have emerged as key regulators of development, tissue remodeling, and disease initiation and progression.These biophysical cues are transmitted to the nucleus through integrin, LINC complex-dependent pathways that modulate nuclear architecture, lamin organization, and chromatin structure. Because the nucleolus is embedded in a mechanically responsive environment and interacts directly or indirectly with the surrounding components, it is increasingly considered a potential target for mechanical cues. However, direct experimental evidence linking defined mechanical cues to nucleolar structure, phase behavior, and function remains limited. This review summarizes current knowledge on the emerging interface between nucleolus and mechanobiology, highlighting potential molecular pathways that connect force transmission to the nuclear response, and outlines unanswered questions relevant to development and disease.
PMID:
42454283
Bibliographic data and abstract were imported from PubMed on 15 Jul 2026.
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