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Prior-Knowledge Description Expectation Prediction Conclusion Leaf Statistics
Component_54208 methyl coenzyme M reductase system, component A2 None - {{∅}} None - {{∅}} Unexplained
Component_54207 methyl-coenzyme M reductase I operon protein C None - {{∅}} None - {{∅}} Unexplained
Evidence_75151 TIGR03269 HMM None - {{∅}} None - {{∅}} Unexplained
Component_54201 methyl-coenzyme M reductase operon protein D None - {{∅}} None - {{∅}} Unexplained
Component_54197 methyl-coenzyme M reductase, alpha subunit None - {{∅}} None - {{∅}} Unexplained
Component_54198 methyl-coenzyme M reductase, beta subunit None - {{∅}} None - {{∅}} Unexplained
Evidence_75138 TIGR03256 HMM None - {{∅}} None - {{∅}} Unexplained
Evidence_75140 TIGR03259 HMM None - {{∅}} None - {{∅}} Unexplained
Evidence_75149 TIGR03264 HMM None - {{∅}} None - {{∅}} Unexplained
Component_54199 methyl-coenzyme M reductase, gamma subunit None - {{∅}} None - {{∅}} Unexplained
Evidence_75139 TIGR03257 HMM None - {{∅}} None - {{∅}} Unexplained
Evidence_75142 TIGR03260 HMM None - {{∅}} None - {{∅}} Unexplained
GenProp0719 methyl-coenzyme M reductase~Methyl-coenzyme M reductase is a nickel-containing, alpha2/beta2/gamma2 hexameric enzyme that catalyzes the final step in methanogenesis. This enzyme has several novel post-translational modifications; it is found in methanogenic archaea, many of which are hyperthermophiles. Many archaea have two versions of this enzyme. It appears that some Archaea are methanotrophic; homologous proteins act in the anaerobic oxidation of methane rather than in methanogenesis. None - {{∅}} None - {{∅}} Unexplained