AI Article Synopsis

  • The study investigates how signals that promote and inhibit liver regeneration interact, with a focus on the molecule Tob1.
  • Tob1 decreases after liver injury, and its deletion leads to increased liver cell growth and faster recovery of liver mass post-surgery.
  • Tob1 plays a critical role in controlling liver regeneration by influencing cell cycle protein expression and activity, particularly through its effects on Cdk1 kinase and key regulatory genes.

Article Abstract

How proliferative and inhibitory signals integrate to control liver regeneration remains poorly understood. A screen for antiproliferative factors repressed after liver injury identified transducer of ErbB2.1 (Tob1), a member of the PC3/BTG1 family of mito-inhibitory molecules as a target for further evaluation. Tob1 protein decreases after 2/3 hepatectomy in mice secondary to posttranscriptional mechanisms. Deletion of Tob1 increases hepatocyte proliferation and accelerates restoration of liver mass after hepatectomy. Down-regulation of Tob1 is required for normal liver regeneration, and Tob1 controls hepatocyte proliferation in a dose-dependent fashion. Tob1 associates directly with both Caf1 and cyclin-dependent kinase (Cdk) 1 and modulates Cdk1 kinase activity. In addition, Tob1 has significant effects on the transcription of critical cell cycle components, including E2F target genes and genes involved in p53 signaling. We provide direct evidence that levels of an inhibitory factor control the rate of liver regeneration, and we identify Tob1 as a crucial check point molecule that modulates the expression and activity of cell cycle proteins.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2882843PMC
http://dx.doi.org/10.1084/jem.20092434DOI Listing

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