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PMID: 10833353 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

A substrate switch: a new mode of regulation in the methionine metabolic pathway.

Journal of theoretical biology ·Vol. 204 ·No. 4 ·2000-06-21 ·Pages 521-32

Martinov MV, Vitvitsky VM, Mosharov EV, Banerjee R, Ataullakhanov FI

Abstract

We propose a simple mathematical model of liver S -adenosylmethionine (AdoMet) metabolism. Analysis of the model has shown that AdoMet metabolism can operate under two different modes. The first, with low metabolic rate and low AdoMet concentration, serves predominantly to supply the cell with AdoMet, the substrate for various cellular methylation reactions. The second, with high metabolic rate and high AdoMet concentration, provides an avenue for cleavage of excess methionine and can serve as a source of cysteine when its increased synthesis is necessary. The switch that triggers interconversion between the "low" and "high" modes is methionine concentration. Under a certain set of parameters both modes may coexist. This behavior results from the kinetic properties of (i) the two isoenzymes of AdoMet synthetase, MATI and MATIII, that catalyse AdoMet production; one is inhibited by AdoMet, whereas the other is activated by it, and (ii) glycine- N -methyltransferase that displays highly cooperative kinetics that is different from that of other AdoMet-dependent methyltransferases. Thus, the model provides an explanation for how different cellular needs are met by regulation of this pathway. The model also correctly identifies a critical role for glycine N -methyltransferase in depleting excess methionine in the high mode, thus avoiding the toxicity associated with elevated levels of this essential amino acid.

MeSH Terms
Animals Cysteine/biosynthesis Glycine N-Methyltransferase Isoenzymes/metabolism Liver/metabolism Methionine/metabolism Methionine Adenosyltransferase/metabolism Methyltransferases/metabolism Models, Biological S-Adenosylmethionine/biosynthesis,metabolism
Chemicals
Isoenzymes S-Adenosylmethionine Methionine Methyltransferases Glycine N-Methyltransferase Methionine Adenosyltransferase Cysteine
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Martinov M V
National Research Center for Hematology, Moscow, 125167, Russia.
Vitvitsky V M
Mosharov E V
Banerjee R
Ataullakhanov F I
Article Info
Journal
Journal of theoretical biology
Abbr.
J Theor Biol
ISSN
0022-5193
Published
2000-06-21
Pages
521-32
Language
English
Region
England
NLM ID
0376342
Subset
IM
Grants
NHLBI NIH HHS · HL58984 · United States
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