Derivatives of Methanopterin, a Coenzyme Involved in Methanogenesis
Overview
Authors
Affiliations
Degradational studies of methanopterin, a coenzyme involved in methanogenesis, are reported. The results of these studies are in full accordance with the proposed structure of methanopterin as N-[1'-(2''-amino-4''-hydroxy-7'' -methyl-6''-pteridinyl)ethyl]-4-[2', 3', 4', 5'-tetrahydroxypent-1'-yl(5'-1'' )O-alpha-ribofuranosyl-5''-phosphoric acid] aniline in which the phosphate group is esterified with alpha-hydroxyglutaric acid. Acid hydrolysis of methanopterin cleaved the 5'----1'' glycosidic bond and yielded a 'hydrolytic product' which was identified as N-[1'-(2''-amino-4''-hydroxy-7'' -methyl-6''-pteridinyl)ethyl]-4-[2', 3', 4', 5'-tetrahydroxypent-1'-yl]aniline. Alkaline permanganate oxidation of methanopterin yielded 7-methylpterin-6-carboxylic acid. Catalytic (or enzymatic) hydrogenation of methanopterin gave a mixture of 6-ethyl-7-methyl-7,8-dihydropterin, 6-ethyl-7-methylpterin and a third compound, named methaniline which was identified as 4-[2', 3', 4', 5'-tetrahydroxypent-1'-yl(5'----1'')O-alpha -ribofuranosyl-5''-phosphoric acid]aniline, in which the phosphate group is esterified with alpha-hydroxyglutaric acid. Methanosarcina barkeri contains a closely related coenzyme called sarcinapterin, which was identified as a L-glutamyl derivative of methanopterin, where the glutamate moiety is attached to the alpha-carboxylic acid group of the alpha-hydroxyglutaric acid moiety of methanopterin via an amide linkage.
Model Organisms To Study Methanogenesis, a Uniquely Archaeal Metabolism.
Costa K, Whitman W J Bacteriol. 2023; 205(8):e0011523.
PMID: 37458589 PMC: 10448791. DOI: 10.1128/jb.00115-23.
Schone C, Poehlein A, Rother M Appl Environ Microbiol. 2023; 89(7):e0216122.
PMID: 37347168 PMC: 10370330. DOI: 10.1128/aem.02161-22.
Biohythane: a Potential Biofuel of the Future.
Ghosh S, Kar D Appl Biochem Biotechnol. 2022; 196(5):2957-2975.
PMID: 36576653 DOI: 10.1007/s12010-022-04291-y.
Rosenbaum F, Muller V Extremophiles. 2021; 25(5-6):413-424.
PMID: 34480656 PMC: 8578096. DOI: 10.1007/s00792-021-01241-0.
Hemmann J, Bruhwiler M, Bortfeld-Miller M, Vorholt J J Biol Chem. 2021; 296:100682.
PMID: 33894199 PMC: 8141765. DOI: 10.1016/j.jbc.2021.100682.