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Methylthioadenosine toxicity and metabolism to methionine in mammalian cells
1Laboratoire de Biochimie, INSERM U75, CHU Necker-Enfants Malades, Paris, France.
Abstract:
5'-Deoxy-5'-methylthioadenosine, a by-product of polyamine synthesis, can support the growth of Raji cells in a methionine-free medium, but not the growth of CCL39 cells, although these cells are also able to incorporate radiolabelled 5'-deoxy-5'-methylthioadenosine (MeSAdo) into methionine, S-adenosyl-L-methionine (AdoMet) and proteins [Christa, Kersual, Augé & Pérignon (1986) Biochem. Biophys. Res. Commun. 135, 131-138]. We first tested the hypothesis of a toxic effect of MeSAdo in the conditions of growth experiments: we could not demonstrate any toxic effect of MeSAdo on the synthesis of macromolecules, nor any toxicity mediated by polyamines or pyrimidine starvation, and we found that the growth of CCL39 cells was strictly dependent on the supply of exogenous methionine. We then tried to determine whether the ability of CCL39 cells to metabolize MeSAdo to methionine and AdoMet was modulated by the proliferation state of CCL39 cells, which is dependent on the supply of exogenous methionine. Studies of the incorporation of radiolabelled MeSAdo show that: (i) the total synthesis of methionine from MeSAdo is twice as high in subconfluent cells (grown in 100 microM-methionine) as in resting cells (cultured in 0 microM-methionine); (ii) the incorporation into proteins does not parallel the total protein synthesis, and the methionine derived from MeSAdo mostly flows out of the cell; (iii) addition of methionine to resting cells immediately leads to a transient and marked increase in metabolism of MeSAdo to AdoMet, presumably reflecting the rapid replenishment of the AdoMet pool of the cells. Taken together, these results suggest that the methionine derived from MeSAdo is preferentially used to synthesize AdoMet rather than proteins, and that this synthesis of AdoMet depends on the ability of the CCL39 cells to grow, and hence on the supply of exogenous methionine. It is proposed that, in CCL39 cells, the metabolic pathway leading from MeSAdo (a by-product of polyamine synthesis) to methionine and to AdoMet (a precursor of polyamine synthesis) is part of a metabolic cycle the activity of which depends, like polyamine synthesis itself, on cell proliferation.
Insights
5'-Deoxy-5'-methylthioadenosine (MeSAdo) supports Raji cell growth but not CCL39 cells. CCL39 cells require exogenous methionine for growth and preferentially convert MeSAdo to S-adenosyl-L-methionine (AdoMet) for proliferation.
Area of Science:
- Cell Biology
- Biochemistry
- Metabolic Pathways
Background:
- 5 -Deoxy-5 -methylthioadenosine (MeSAdo) is a polyamine synthesis by-product.
- Raji cells utilize MeSAdo for growth in methionine-free media, unlike CCL39 cells.
- CCL39 cells can metabolize MeSAdo but do not grow without exogenous methionine.
Purpose of the Study:
- Investigate why CCL39 cells cannot grow on MeSAdo alone.
- Determine if MeSAdo has toxic effects on CCL39 cells.
- Examine the influence of cell proliferation state on MeSAdo metabolism in CCL39 cells.
Main Methods:
- Cell culture experiments in methionine-deprived media.
- Radiolabeled MeSAdo incorporation studies.
- Analysis of macromolecule synthesis and metabolite pools.
Main Results:
- No MeSAdo toxicity or toxicity mediated by polyamines/pyrimidine starvation was observed.
- CCL39 cell growth is strictly dependent on exogenous methionine supply.
- MeSAdo metabolism to methionine and S-adenosyl-L-methionine (AdoMet) is higher in proliferating cells and preferentially channels into AdoMet synthesis, supporting cell growth.
Conclusions:
- CCL39 cells prioritize MeSAdo-derived methionine for AdoMet synthesis over protein synthesis.
- The metabolic cycle converting MeSAdo to AdoMet is crucial for cell proliferation and requires exogenous methionine.
- MeSAdo metabolism is linked to cell proliferation, similar to polyamine synthesis.