S-adenosylmethionine and methylthioadenosine are antiapoptotic in cultured rat hepatocytes but proapoptotic in human hepatoma cells
S-аденозилметионин и метилтиоаденозин обладают антиапоптотическим действием в культивируемых гепатоцитах крысы, но проапоптотическим действием — в клетках гепатомы человека
2002-02-01
SCID: 54.1/jauc5h7g
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5'-methylthioadenosine (MTA)S-adenosylmethionine (AdoMet)human hepatoma cellsokadaic acid-induced apoptosisrat hepatocytes
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Abstract (AI)
S-adenosylmethionine (AdoMet) is an essential compound in cellular transmethylation reactions and a precursor of polyamine and glutathione synthesis in the liver. In liver injury, the synthesis of AdoMet is impaired and its availability limited. AdoMet administration attenuates experimental liver damage, improves survival of alcoholic patients with cirrhosis, and prevents experimental hepatocarcinogenesis. Apoptosis contributes to different liver injuries, many of which are protected by AdoMet. The mechanism of AdoMet's hepatoprotective and chemopreventive effects are largely unknown. The effect of AdoMet on okadaic acid (OA)-induced apoptosis was evaluated using primary cultures of rat hepatocytes and human hepatoma cell lines. AdoMet protected rat hepatocytes from OA-induced apoptosis dose dependently. It attenuated mitochondrial cytochrome c release, caspase 3 activation, and poly(ADP-ribose) polymerase cleavage. These effects were independent from AdoMet-dependent glutathione synthesis, and mimicked by 5'-methylthioadenosine (MTA), which is derived from AdoMet. Interestingly, AdoMet and MTA did not protect HuH7 cells from OA-induced apoptosis; conversely both compounds behaved as proapoptotic agents. AdoMet's proapoptotic effect was dose dependent and observed also in HepG2 cells. In conclusion, AdoMet exerts opposing effects on apoptosis in normal versus transformed hepatocytes that could be mediated through its conversion to MTA. These effects may participate in the hepatoprotective and chemopreventive properties of this safe and well-tolerated drug.
Key Findings
1
AdoMet and MTA failed to protect HuH7 human hepatoma cells and instead acted as proapoptotic agents; AdoMet showed dose-dependent proapoptotic effects in HepG2 cells.
2
AdoMet dose-dependently protected primary rat hepatocytes from okadaic acid-induced apoptosis.
3
AdoMet therefore has opposing apoptotic effects in normal versus transformed hepatocytes, potentially contributing to its hepatoprotective and chemopreventive properties.
4
AdoMet-mediated protection was independent of glutathione synthesis and was reproduced by its metabolite 5′-methylthioadenosine (MTA).
5
In rat hepatocytes, AdoMet reduced mitochondrial cytochrome c release, caspase-3 activation, and PARP cleavage.
Research Object
Okadaic acid-induced apoptosis in primary rat hepatocytes and human hepatoma cell lines (HuH7 and HepG2)
Research Subject
The opposing, dose-dependent effects of S-adenosylmethionine and 5′-methylthioadenosine on apoptotic signaling in normal versus transformed hepatocytes, including mitochondrial cytochrome c release, caspase 3 activation, and poly(ADP-ribose) polymerase cleavage
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2002-02-01
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