AI Article Synopsis

  • β2-spectrin is a vital protein in liver development, and its deficiency can lead to chronic liver disease and potentially liver cancer.
  • The study reveals that β2-spectrin gets cleaved by caspase-3/7 when the liver is injured, particularly by acetaminophen, affecting its functions related to cell cycle, apoptosis, and transcription.
  • Cleaved fragments of β2-spectrin remain active and play distinct roles in regulating liver cell behavior; downregulating it seems to protect against acetaminophen toxicity and enhance liver regeneration.

Article Abstract

Unlabelled: The ubiquitously expressed β2-spectrin (β2SP, SPTBN1) is the most common non-erythrocytic member of the β-spectrin gene family. Loss of β2-spectrin leads to defects in liver development, and its haploinsufficiency spontaneously leads to chronic liver disease and the eventual development of hepatocellular cancer. However, the specific role of β2-spectrin in liver homeostasis remains to be elucidated. Here, we reported that β2-spectrin was cleaved by caspase-3/7 upon treatment with acetaminophen which is the main cause of acute liver injury. Blockage of β2-spectrin cleavage robustly attenuated β2-spectrin-specific functions, including regulation of the cell cycle, apoptosis, and transcription. Cleaved fragments of β2-spectrin were physiologically active, and the N- and C-terminal fragments retained discrete interaction partners and activity in transcriptional regulation and apoptosis, respectively. Cleavage of β2-spectrin facilitated the redistribution of the resulting fragments under conditions of liver damage induced by acetaminophen. In contrast, downregulation of β2-spectrin led to resistance to acetaminophen-induced cytotoxicity, and its insufficiency in the liver promoted suppression of acetaminophen-induced liver damage and enhancement of liver regeneration.

Conclusions: β2-Spectrin, a TGF-β mediator and signaling molecule, is cleaved and activated by caspase-3/7, consequently enhancing apoptosis and transcriptional control to determine cell fate upon liver damage. These findings have extended our knowledge on the spectrum of β2-spectrin functions from a scaffolding protein to a target and transmitter of TGF-β in liver damage.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4737674PMC
http://dx.doi.org/10.7150/ijbs.13420DOI Listing

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