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Protection of a Ceramide Synthase 2 Null Mouse from Drug-induced Liver Injury ROLE OF GAP JUNCTION DYSFUNCTION AND CONNEXIN 32 MISLOCALIZATION

Authors
Park, Woo-JaePark, Joo-WonErez-Roman, RacheliKogot-Levin, AviramBame, Jessica R.Tirosh, BoazSaada, AnnMerrill, Alfred H., Jr.Pewzner-Jung, YaelFuterman, Anthony H.
Issue Date
25-Oct-2013
Publisher
AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
Citation
JOURNAL OF BIOLOGICAL CHEMISTRY, v.288, no.43, pp.30904 - 30916
Journal Title
JOURNAL OF BIOLOGICAL CHEMISTRY
Volume
288
Number
43
Start Page
30904
End Page
30916
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/14209
DOI
10.1074/jbc.M112.448852
ISSN
1083-351X
Abstract
Very long chain (C22-C24) ceramides are synthesized by ceramide synthase 2 (CerS2). A CerS2 null mouse displays hepatopathy because of depletion of C22-C24 ceramides, elevation of C16-ceramide, and/or elevation of sphinganine. Unexpectedly, CerS2 null mice were resistant to acetaminophen-induced hepatotoxicity. Although there were a number of biochemical changes in the liver, such as increased levels of glutathione and multiple drug-resistant protein 4, these effects are unlikely to account for the lack of acetaminophen toxicity. A number of other hepatotoxic agents, such as D-galactosamine, CCl4, and thioacetamide, were also ineffective in inducing liver damage. All of these drugs and chemicals require connexin (Cx) 32, a key gap junction protein, to induce hepatotoxicity. Cx32 was mislocalized to an intracellular location in hepatocytes from CerS2 null mice, which resulted in accelerated rates of its lysosomal degradation. This mislocalization resulted from the altered membrane properties of the CerS2 null mice, which was exemplified by the disruption of detergent-resistant membranes. The lack of acetaminophen toxicity and Cx32 mislocalization were reversed upon infection with recombinant adeno-associated virus expressing CerS2. We establish that Gap junction function is compromised upon altering the sphingolipid acyl chain length composition, which is of relevance for understanding the regulation of drug-induced liver injury.
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