Mukhopadhyay, BiswarupPurwantini, EndangDaniels, Lacy2023-01-192023-01-191993http://hdl.handle.net/10919/113257We measured F420-dependent N5,N10-methylenetetrahydro-methanopterin dehydrogenase, N5, N10-methenyltetrahydro-methanopterin cyclohydrolase, and F420-reducing hydrogenase levels in Methanosarcina barkeri grown on various substrates. Variation in dehydrogenase levels during growth on a specific substrate was usually <3-fold, and much less for cyclohydrolase. H2−CO2-, methanol-, and H2−CO2+ methanol-grown cells had roughly equivalent levels of dehydrogenase and cyclohydrolase. In acetate-grown cells cyclohydrolase level was lowered 2 to 3-fold and dehydrogenase 10 to 80-fold; this was not due to repression by acetate, since, if cultures growing on acetate were supplemented with methanol or H2−CO2, dehydrogenase levels increased 14 to 19-fold, and cyclohydrolase levels by 3 to 4-fold. Compared to H2−CO2- or methanol-grown cells, acetate-or H2−CO2 + methanol-grown cells had lower levels of and less growth phase-dependent variation in hydrogenase activity. Our data are consistent with the following hypotheses: 1. M. barkeri oxidizes methanol via a portion of the CO2-reduction pathway operated in the reverse direction. 2. When steps from CO2 to CH3-S-CoM in the CO2-reduction pathway (in either direction) are not used for methanogenesis, hydrogenase activity is lowered.Pages 141-146application/pdfenIn CopyrightBiotechnology, Biomaterials, and EnergyEffect of methanogenic substrates on coenzyme F<sub>420</sub>-dependent N<sup>5</sup>,N<sup>10</sup>-methylene-H<sub>4</sub>MPT dehydrogenase, N<sup>5</sup>,N<sup>10</sup>-methenyl-H<sub>4</sub>MPT cyclohydrolase and F<sub>420</sub>-reducing hydrogenase activities in <i>Methanosarcina barkeri</i>Article - Refereed2023-01-18Archives of Microbiology159Mukhopadhyay, Biswarup [0000-0003-0736-0298]Purwantini, Endang [0000-0002-4113-9995]