Cells and tissue integrity are constantly challenged by the necessity to adapt and respond to mechanical loads. Among cellular components, the nucleus possesses mechano-sensing and mechanotransduction capabilities, yet the molecular mechanisms involved remain poorly defined. Here we investigate whether the mechanical properties of chromatin and its organization into condensates contribute to nuclear adaptation to external forces, while preserving its integrity. By interrogating the effects of MLL4 loss-of-function in Kabuki Syndrome, we find that the balancing of transcriptional and Polycomb condensates tunes nuclear responsiveness to external mechanical forces. MLL4 assembles into mechanosensitive condensates through its prion-like domain, and this response is regulated by the chromatin context. Furthermore, the mechano-sensing activity of MLL4 condensates is instrumental to withstand the physical challenges nuclei experience during cell confinement and migration by preserving their integrity. In Kabuki Syndrome, persistent nuclear envelope rupture triggers cGAS-STING activation, leading to programmed cell death. Together, these findings identify chromatin condensates as active regulators of nuclear mechanosensing and establish a mechanistic link between defective chromatin organization and cGAS–STING activation in Kabuki syndrome.

Chromatin condensates tune nuclear mechanosensing and preserve nuclear integrity to prevent cGAS activation / D'Annunzio, S., Di Santo, M., Vitali, G., Santomaso, L., Michelatti, D., Morelli, L., Bernardis, C., Ariefai, M., Nasir, S., Lago, S., Lunelli, L., Testi, C., Pontecorvo, E., Poli, A., Pennacchio, F.A., Maiuri, P., Sanchez, E., Genevieve, D., Petrolli, L., Tarenzi, T., et al.. - In: EMBO JOURNAL. - ISSN 1460-2075. - 45:18(2026), pp. 6384-6420. [10.1038/s44318-026-00884-z]

Chromatin condensates tune nuclear mechanosensing and preserve nuclear integrity to prevent cGAS activation

D'Annunzio, Sarah;Di Santo, Martina;Vitali, Giulia;Santomaso, Lucia;Michelatti, Daniela;Morelli, Leonardo;Bernardis, Chiara;Ariefai, Maulana;Nasir, Shiza;Lago, Sara;Lunelli, Lorenzo;Poli, Alessandro;Petrolli, Lorenzo;Tarenzi, Thomas;Menichetti, Roberto;Potestio, Raffaello;Zippo, Alessio
Ultimo
2026-01-01

Abstract

Cells and tissue integrity are constantly challenged by the necessity to adapt and respond to mechanical loads. Among cellular components, the nucleus possesses mechano-sensing and mechanotransduction capabilities, yet the molecular mechanisms involved remain poorly defined. Here we investigate whether the mechanical properties of chromatin and its organization into condensates contribute to nuclear adaptation to external forces, while preserving its integrity. By interrogating the effects of MLL4 loss-of-function in Kabuki Syndrome, we find that the balancing of transcriptional and Polycomb condensates tunes nuclear responsiveness to external mechanical forces. MLL4 assembles into mechanosensitive condensates through its prion-like domain, and this response is regulated by the chromatin context. Furthermore, the mechano-sensing activity of MLL4 condensates is instrumental to withstand the physical challenges nuclei experience during cell confinement and migration by preserving their integrity. In Kabuki Syndrome, persistent nuclear envelope rupture triggers cGAS-STING activation, leading to programmed cell death. Together, these findings identify chromatin condensates as active regulators of nuclear mechanosensing and establish a mechanistic link between defective chromatin organization and cGAS–STING activation in Kabuki syndrome.
2026
18
D'Annunzio, Sarah; Di Santo, Martina; Vitali, Giulia; Santomaso, Lucia; Michelatti, Daniela; Morelli, Leonardo; Bernardis, Chiara; Ariefai, Maulana; N...espandi
Chromatin condensates tune nuclear mechanosensing and preserve nuclear integrity to prevent cGAS activation / D'Annunzio, S., Di Santo, M., Vitali, G., Santomaso, L., Michelatti, D., Morelli, L., Bernardis, C., Ariefai, M., Nasir, S., Lago, S., Lunelli, L., Testi, C., Pontecorvo, E., Poli, A., Pennacchio, F.A., Maiuri, P., Sanchez, E., Genevieve, D., Petrolli, L., Tarenzi, T., et al.. - In: EMBO JOURNAL. - ISSN 1460-2075. - 45:18(2026), pp. 6384-6420. [10.1038/s44318-026-00884-z]
File in questo prodotto:
Non ci sono file associati a questo prodotto.

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11572/505530
 Attenzione

Attenzione! I dati visualizzati non sono stati sottoposti a validazione da parte dell'ateneo

Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus ND
  • ???jsp.display-item.citation.isi??? ND
  • OpenAlex ND
social impact