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Stress- and ubiquitylation-dependent phase separation of the proteasome 期刊论文
NATURE, 2020, 578 (7794) : 296-+
作者:  Jewell, Jessica;  Emmerling, Johannes;  Vinichenko, Vadim;  Bertram, Christoph;  Berger, Loic;  Daly, Hannah E.;  Keppo, Ilkka;  Krey, Volker;  Gernaat, David E. H. J.;  Fragkiadakis, Kostas;  McCollum, David;  Paroussas, Leonidas;  Riahi, Keywan;  Tavoni, Massimo;  van Vuuren, Detlef
收藏  |  浏览/下载:22/0  |  提交时间:2020/07/03

The proteasome is a major proteolytic machine that regulates cellular proteostasis through selective degradation of ubiquitylated proteins(1,2). A number of ubiquitin-related molecules have recently been found to be involved in the regulation of biomolecular condensates or membraneless organelles, which arise by liquid-liquid phase separation of specific biomolecules, including stress granules, nuclear speckles and autophagosomes(3-8), but it remains unclear whether the proteasome also participates in such regulation. Here we reveal that proteasome-containing nuclear foci form under acute hyperosmotic stress. These foci are transient structures that contain ubiquitylated proteins, p97 (also known as valosin-containing protein (VCP)) and multiple proteasome-interacting proteins, which collectively constitute a proteolytic centre. The major substrates for degradation by these foci were ribosomal proteins that failed to properly assemble. Notably, the proteasome foci exhibited properties of liquid droplets. RAD23B, a substrate-shuttling factor for the proteasome, and ubiquitylated proteins were necessary for formation of proteasome foci. In mechanistic terms, a liquid-liquid phase separation was triggered by multivalent interactions of two ubiquitin-associated domains of RAD23B and ubiquitin chains consisting of four or more ubiquitin molecules. Collectively, our results suggest that ubiquitin-chain-dependent phase separation induces the formation of a nuclear proteolytic compartment that promotes proteasomal degradation.


Hyperosmotic stress leads to a phase separation of the proteasome, triggered by interactions between RAD23B and ubiquitylated proteins, which bring together p97 and proteasome-associated proteins into nuclear proteolytic foci.


  
Pivotal roles of environmental sensing and signaling mechanisms in plant responses to climate change 期刊论文
GLOBAL CHANGE BIOLOGY, 2018, 24 (12) : 5573-5589
作者:  Bigot, Servane;  Buges, Julie;  Gilly, Lauriane;  Jacques, Cecile;  Le Boulch, Pauline;  Berger, Marie;  Delcros, Pauline;  Domergue, Jean-Baptiste;  Koehl, Astrid;  Ley-Ngardigal, Bera;  Loup Tran Van Canh;  Couee, Ivan
收藏  |  浏览/下载:11/0  |  提交时间:2019/04/09
abiotic stress  global change  multiple stress  oxidative stress  plant acclimation  signal transduction  stress resilience  stress sensors  
Community- and ecosystem-level effects of multiple environmental change drivers: Beyond null model testing 期刊论文
GLOBAL CHANGE BIOLOGY, 2018, 24 (11) : 5021-5030
作者:  De Laender, Frederik
收藏  |  浏览/下载:7/0  |  提交时间:2019/04/09
community ecology  ecosystems  environmental stress  eutrophication  multiple stressors  resource-ratio theory  theoretical ecology  traits  
Advancing understanding and prediction in multiple stressor research through a mechanistic basis for null models 期刊论文
GLOBAL CHANGE BIOLOGY, 2018, 24 (5) : 1817-1826
作者:  Schaefer, Ralf B.;  Piggott, Jeremy J.
收藏  |  浏览/下载:5/0  |  提交时间:2019/04/09
antagonism  mechanism  mixtures  multiple stress  null models  stressors  synergism