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October 3, 2025Nature Cell Biology22 citationsOpen Access

Microtubule architecture connects AMOT stability to YAP/TAZ mechanotransduction and Hippo signalling

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GVGiada VanniACAnna CitronASAmbela Suli

Key Points

  • Microtubule reorganization activates YAP/TAZ by transporting AMOT to proteasomes, regulating cell response to mechanics.
  • Loss of AMOT proteins reduces cell sensitivity to mechanical changes, emphasizing its importance in mechanotransduction.
  • The Hippo pathway supports stability of AMOT by phosphorylation, indirectly controlling YAP/TAZ degradation during mechanics.
  • Ras/RTK oncogenes disrupt the AMOT-centered checkpoint, promoting tumorigenesis linked to YAP/TAZ activation.

Abstract

Cellular mechanotransduction is a key informational system, yet its mechanisms remain elusive. Here we unveil the role of microtubules in mechanosignalling, operating downstream of subnuclear F-actin and nuclear envelope mechanics. Upon mechanical activation, microtubules reorganize from a perinuclear cage into a radial array nucleated by centrosomes. This structural rearrangement triggers degradation of AMOT proteins, which we identify as key mechanical rheostats that sequester YAP/TAZ in the cytoplasm. AMOT is stable in mechano-OFF but degraded in mechano-ON cell states, where microtubules allow AMOT rapid transport to the pericentrosomal proteasome in complex with dynein/dynactin. This process ensures swift control of YAP/TAZ function in response to changes in cell mechanics, with experimental loss of AMOT proteins rendering cells insensitive to mechanical modulations. Ras/RTK oncogenes promote YAP/TAZ-dependent tumorigenesis by corrupting this AMOT-centred mechanical checkpoint. Notably, the Hippo pathway fine-tunes mechanotransduction: LATS kinases phosphorylate AMOT, shielding it from degradation, thereby indirectly restraining YAP/TAZ. Thus, AMOT protein stability serves as a hub linking cytoskeletal reorganization and Hippo signalling to YAP/TAZ mechanosignalling. Vanni et al. show a role for microtubules in YAP/TAZ mechanosignalling. Mechanoresponsive microtubule reorganization into centrosomal arrays allows for AMOT delivery to pericentrosomal proteasomes and degradation, leading to YAP/TAZ activation.

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Cite This Study

Vanni et al. (2025) studied this question.

synapsesocial.com/papers/68dfe944daa1363beb04a26fhttps://doi.org/10.1038/s41556-025-01773-z
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Microtubule architecture connects AMOT stability to YAP/TAZ mechanotransduction and Hippo signaling2025
  2. 2Hippo signaling in mechanobiology: Mechanical control of YAP/TAZ and their roles in disease2026 · 3 citations
  3. 3Mechanobiology of the Hippo–YAP Signaling Network2026 · 2 citations
  4. 4Timing Mechanotransduction: Mechanically Dynamic Biomaterials Reveal the Temporal Hierarchy of YAP/TAZ Control Nodes2026 · 3 citations
  5. 5Posttranslational modifications of YAP/TAZ: molecular mechanisms and therapeutic opportunities2025