A GAPDH-Mediated Trans-Nitrosylation Pathway Is Required for Feedback Inhibition of Bile Salt Synthesis in Rat Liver

Jul 29, 2014Gastroenterology

A GAPDH-driven protein modification pathway needed to regulate bile salt production in rat liver

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Abstract

In cholate-rich diets, rats showed increased bile salt levels and reduced expression of CYP7A1 despite elevated SHP levels.

  • Nitric oxide signaling is involved in the regulatory mechanism of CYP7A1 expression in the liver.
  • Inhibition of nitric oxide synthesis increased intrahepatic and biliary bile salt levels while impairing CYP7A1 repression.
  • Cholate promotes the modification of GAPDH, facilitating its movement to the nucleus and affecting other proteins involved in bile salt synthesis regulation.
  • Blocking GAPDH's nuclear transport reduced the activation of histone deacetylases that contribute to CYP7A1 repression.
  • Increased levels of nitrosylated GAPDH and HDAC2 were observed in cholestatic livers, indicating a link between bile salt accumulation and nitric oxide signaling.

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Full Text

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