4.8 Article

Reconstitution defines the roles of p62, NBR1 and TAX1BP1 in ubiquitin condensate formation and autophagy initiation

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NATURE COMMUNICATIONS
卷 12, 期 1, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/s41467-021-25572-w

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资金

  1. ERC [646653]
  2. Austrian Science Fund [FWF P30401-B21, F79]
  3. Uni:docs fellowship of the University of Vienna
  4. European Union's Framework Programme for Research and Innovation Horizon 2020 (2014-2020) under the Marie Curie Skodowska Grant [847548]
  5. European Research Council (ERC) [646653] Funding Source: European Research Council (ERC)
  6. Austrian Science Fund (FWF) [F79] Funding Source: Austrian Science Fund (FWF)

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Misfolded proteins are ubiquitinated and condensed by cargo receptors for selective autophagy. The study elucidates the roles of p62/SQSTM1, NBR1, and TAX1BP1 in the formation and degradation of ubiquitin condensates through autophagy.
The autophagic degradation of misfolded and ubiquitinated proteins is important for cellular homeostasis. In this process, which is governed by cargo receptors, ubiquitinated proteins are condensed into larger structures and subsequently become targets for the autophagy machinery. Here we employ in vitro reconstitution and cell biology to define the roles of the human cargo receptors p62/SQSTM1, NBR1 and TAX1BP1 in the selective autophagy of ubiquitinated substrates. We show that p62 is the major driver of ubiquitin condensate formation. NBR1 promotes condensate formation by equipping the p62-NBR1 heterooligomeric complex with a high-affinity UBA domain. Additionally, NBR1 recruits TAX1BP1 to the ubiquitin condensates formed by p62. While all three receptors interact with FIP200, TAX1BP1 is the main driver of FIP200 recruitment and thus the autophagic degradation of p62-ubiquitin condensates. In summary, our study defines the roles of all three receptors in the selective autophagy of ubiquitin condensates. Misfolded proteins are ubquitinated and subsequently condensed by cargo receptors for selective autophagy. Here, the authors use in vitro reconstitution to elegantly dissect how the receptors p62/SQSTM1, NBR1 and TAX1BP1 contribute to p62-ubiquitin condensate formation and degradation by autophagy.

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