The glyoxalase pathway: the first hundred years… and beyond

Author:

Sousa Silva Marta1,Gomes Ricardo A.1,Ferreira Antonio E. N.1,Ponces Freire Ana1,Cordeiro Carlos1

Affiliation:

1. Centro de Química e Bioquímica, Departamento de Química e Bioquímica, Faculdade de Ciências da Universidade de Lisboa, Portugal

Abstract

The discovery of the enzymatic formation of lactic acid from methylglyoxal dates back to 1913 and was believed to be associated with one enzyme termed ketonaldehydemutase or glyoxalase, the latter designation prevailed. However, in 1951 it was shown that two enzymes were needed and that glutathione was the required catalytic co-factor. The concept of a metabolic pathway defined by two enzymes emerged at this time. Its association to detoxification and anti-glycation defence are its presently accepted roles, since methylglyoxal exerts irreversible effects on protein structure and function, associated with misfolding. This functional defence role has been the rationale behind the possible use of the glyoxalase pathway as a therapeutic target, since its inhibition might lead to an increased methylglyoxal concentration and cellular damage. However, metabolic pathway analysis showed that glyoxalase effects on methylglyoxal concentration are likely to be negligible and several organisms, from mammals to yeast and protozoan parasites, show no phenotype in the absence of one or both glyoxalase enzymes. The aim of the present review is to show the evolution of thought regarding the glyoxalase pathway since its discovery 100 years ago, the current knowledge on the glyoxalase enzymes and their recognized role in the control of glycation processes.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

Reference225 articles.

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2. Uber die zerstorung von milch saurealdehyd und methylglyoxal durch tierische organe;Neuberg;Biochem. Z.,1913

3. On the question of evidence of methyl-glyoxal as an intermediate product of glycolysis;Neuberg;Biochem. Z.,1928

4. Beitrag zur enzymatischen Umwandlung von synthetischem Methylglyoxal in Milchsaure;Lohmann;Biochem. Z.,1932

5. The glyoxalase activity of the red blood cell: the function of glutathione;Jowett;Biochem. J.,1933

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