PubMed Health⌕ Search

Biomedical subjects

E Catto

Publications and source records attributed to E Catto.

10 recordsLinked to original sources

Transmethylation, transsulfuration, and aminopropylation reactions of S-adenosyl-L-methionine in vivo.

S-Adenosylmethionine (AdoMet) is metabolized through three main pathways, i.e. (a) transfer of its methyl group to a variety of methyl acceptors, (b) decarboxylation followed by aminopropylation leading to polyamine synthesis, and (c) cleavage of the bond between the sulfur atom and carbon 4 of the amino acid chain, resulting in formation of methylthioadenosine and homoserine thiolactone. In this study the metabolism of AdoMet through these pathways was studied after intravenous administration to rats of [1-14C]-, [3,4-14C]-, [methyl-14C]-, and [35S]AdoMet at various doses. The relative utilization of AdoMet and methionine was also investigated. The results show that intravenously administered AdoMet is efficiently metabolized in vivo up to the highest tested dose (250 mumol X kg-1 body weight), about two-thirds of the metabolized compound being utilized via transmethylation and cleavage to methylthioadenosine and one-third via decarboxylation. The efficient incorporation of the methyl group of AdoMet into muscle creatine indicates unambiguously that the compound is taken up and metabolized by the liver. Moreover, intravenously administered AdoMet is shown to be a better precursor than methionine both in creatine formation and in the utilization of the sulfur atom in transsulfuration reactions.

Animals↗

Tissue levels of S-adenosylmethionine in aging rats.

The tissue levels of S-Adenosylmethionine (SAMe) in 30-mo.-old rats were measured, and a remarkable decrease was observed compared to adult rats. The synthesis of SAMe by the methionine-activating enzyme and its utilization by COMT were investigated in different tissues. The activity of the synthesizing enzyme was unchanged in the liver and brain of adult and senescent rats, while COMT activity appeared to be higher in the aging rats. Thus, the result indicates that the decrease of same in these organs of senescent rats is due to the increased utilization rather than the decreased synthesis of this methyl donor compound.

Adrenal Glands↗

[Anti-inflammatory and analgesic action of S-adenosyl-L-methionine (SAMe) in experimental tests on laboratory animals].

S-adenosyl-L-methionine (SAMe) always plays an important role in the metabolism of catecholamines. Since the importance of the latter in the inflammatory process has been reported by several Authors, we examined the effect of SAMe in various tests of acute inflammation (carrageenin and white egg oedema) and chronic inflammation (cotton pellet induced granuloma, adjuvant induced arthritis). Considering the positive results we have obtained and being aware that many drugs with antiinflammatory activity also have an antalgic activity, we examined the effects of a treatment with SAMe on animals subjected to analgesic tests: hot plate and streching by acetic acid in mice.

Animals↗