p62/SQSTM1 in liver diseases: the usual suspect with multifarious identities

Chong Teik Tan1, Natalie Jun Hui Soh1, Hao-Chun Chang1

  • 1Department of Pharmacy, National University of Singapore, Singapore.

The FEBS Journal
|December 9, 2021
PubMed

Insights

p62 protein aggregates are key in liver diseases like NASH and HCC. Understanding p62

Area of Science:

  • Cell Biology
  • Hepatology
  • Molecular Pathology

Background:

  • p62/Sequestosome-1 (SQSTM1) is an autophagy receptor and signaling scaffold involved in cellular processes like stress response and metabolism.
  • Dysregulation of p62 is linked to liver diseases, with p62 aggregates forming Mallory-Denk bodies (MDBs) and intracellular hyaline bodies (IHBs) in conditions such as alcoholic steatohepatitis (ASH), non-alcoholic steatohepatitis (NASH), and hepatocellular carcinoma (HCC).
  • The presence of p62 inclusion bodies is recognized as a biomarker for NASH and HCC, potentially predicting disease progression and prognosis.

Purpose of the Study:

  • To review the function, regulation, and pathophysiological roles of p62 in liver diseases.
  • To critically examine findings from preclinical models relevant to human liver disease pathogenesis.
  • To explore p62 as a predictive biomarker and therapeutic target for NASH and HCC.

Main Methods:

  • Literature review focusing on p62's role in liver disease.
  • Analysis of preclinical models mimicking human liver pathologies.
  • Examination of p62's function in autophagy, signaling, and aggregate formation.

Main Results:

  • p62 aggregates (MDBs/IHBs) are prevalent in ASH, NASH, and HCC.
  • p62 inclusion body abundance correlates with disease progression and prognosis.
  • p62 plays a multifaceted role in regulating cellular processes relevant to liver disease.

Conclusions:

  • p62 is a critical factor in liver disease pathogenesis and a potential biomarker.
  • Targeting the p62 signaling axis presents a therapeutic opportunity for NASH and HCC.
  • Further research into p62 mechanisms is needed to fully understand its role in liver diseases.

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