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Notch ankyrin domain: evolutionary rise of a thermodynamic sensor.

Authors :
Vujovic F
Hunter N
Farahani RM
Source :
Cell communication and signaling : CCS [Cell Commun Signal] 2022 May 18; Vol. 20 (1), pp. 66. Date of Electronic Publication: 2022 May 18.
Publication Year :
2022

Abstract

Notch signalling pathway plays a key role in metazoan biology by contributing to resolution of binary decisions in the life cycle of cells during development. Outcomes such as proliferation/differentiation dichotomy are resolved by transcriptional remodelling that follows a switch from Notch <superscript>on</superscript> to Notch <superscript>off</superscript> state, characterised by dissociation of Notch intracellular domain (NICD) from DNA-bound RBPJ. Here we provide evidence that transitioning to the Notch <superscript>off</superscript> state is regulated by heat flux, a phenomenon that aligns resolution of fate dichotomies to mitochondrial activity. A combination of phylogenetic analysis and computational biochemistry was utilised to disclose structural adaptations of Notch1 ankyrin domain that enabled function as a sensor of heat flux. We then employed DNA-based micro-thermography to measure heat flux during brain development, followed by analysis in vitro of the temperature-dependent behaviour of Notch1 in mouse neural progenitor cells. The structural capacity of NICD to operate as a thermodynamic sensor in metazoans stems from characteristic enrichment of charged acidic amino acids in β-hairpins of the ankyrin domain that amplify destabilising inter-residue electrostatic interactions and render the domain thermolabile. The instability emerges upon mitochondrial activity which raises the perinuclear and nuclear temperatures to 50 °C and 39 °C, respectively, leading to destabilization of Notch1 transcriptional complex and transitioning to the Notch <superscript>off</superscript> state. Notch1 functions a metazoan thermodynamic sensor that is switched on by intercellular contacts, inputs heat flux as a proxy for mitochondrial activity in the Notch <superscript>on</superscript> state via the ankyrin domain and is eventually switched off in a temperature-dependent manner. Video abstract.<br /> (© 2022. The Author(s).)

Details

Language :
English
ISSN :
1478-811X
Volume :
20
Issue :
1
Database :
MEDLINE
Journal :
Cell communication and signaling : CCS
Publication Type :
Academic Journal
Accession number :
35585601
Full Text :
https://doi.org/10.1186/s12964-022-00886-4