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Integrated proteomics identifies p62-dependent selective autophagy of the supramolecular vault complex. | LitMetric

AI Article Synopsis

  • Autophagy plays a key role in regulating the degradation of specific biomolecular structures, such as p62/SQSTM1 bodies, to prevent diseases like cancer.
  • Researchers developed a new method to purify and analyze the components of p62 bodies in human cells, revealing that a complex called vault is involved in this process.
  • The study identifies a mechanism called vault-phagy, where major vault protein interacts with NBR1 to facilitate the degradation of vaults, and suggests that disruptions in this process may link to certain liver cancers.

Article Abstract

In addition to membranous organelles, autophagy selectively degrades biomolecular condensates, in particular p62/SQSTM1 bodies, to prevent diseases including cancer. Evidence is growing regarding the mechanisms by which autophagy degrades p62 bodies, but little is known about their constituents. Here, we established a fluorescence-activated-particle-sorting-based purification method for p62 bodies using human cell lines and determined their constituents by mass spectrometry. Combined with mass spectrometry of selective-autophagy-defective mouse tissues, we identified vault, a large supramolecular complex, as a cargo within p62 bodies. Mechanistically, major vault protein directly interacts with NBR1, a p62-interacting protein, to recruit vault into p62 bodies for efficient degradation. This process, named vault-phagy, regulates homeostatic vault levels in vivo, and its impairment may be associated with non-alcoholic-steatohepatitis-derived hepatocellular carcinoma. Our study provides an approach to identifying phase-separation-mediated selective autophagy cargoes, expanding our understanding of the role of phase separation in proteostasis.

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Source
http://dx.doi.org/10.1016/j.devcel.2023.04.015DOI Listing

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