Publications of J. Moll

Journal Article (8)

Journal Article
Wang, S.; Huang, H.; Moll, J.; Thauer, R.: NADP(+) Reduction with Reduced Ferredoxin and NADP(+) Reduction with NADH Are Coupled via an Electron- Bifurcating Enzyme Complex in Clostridium kluyveri (vol 192, pg 5115, 2010). Journal of Bacteriology 197 (4), p. 792 - 792 (2015)
Journal Article
Kojima, H.; Moll, J.; Kahnt, J.; Fukui, M.; Shima, S.: A reversed genetic approach reveals the coenzyme specificity and other catalytic properties of three enzymes putatively involved in anaerobic oxidation of methane with sulfate. Environmental Microbiology 16 (11 Sp. Iss. SI), pp. 3431 - 3442 (2014)
Journal Article
Upadhyay, V.; Demmer, U.; Warkentin, E.; Moll, J.; Shima, S.; Ermler, U.: Structure and Catalytic Mechanism of N-5,N-10-Methenyltetrahydromethanopterin Cyclohydrolase. Biochemistry 51 (42), pp. 8435 - 8443 (2012)
Journal Article
Huang, H. Y.; Wang, S. N.; Moll, J.; Thauer, R. K.: Electron Bifurcation Involved in the Energy Metabolism of the Acetogenic Bacterium Moorella thermoacetica Growing on Glucose or H2 plus CO2. Journal of Bacteriology 194 (14), pp. 3689 - 3699 (2012)
Journal Article
Kaster, A. K.; Moll, J.; Parey, K.; Thauer, R. K.: Coupling of ferredoxin and heterodisulfide reduction via electron bifurcation in hydrogenotrophic methanogenic archaea. Proceedings of the National Academy of Sciences of the United States of America 108 (7), pp. 2981 - 2986 (2011)
Journal Article
Wang, S. N.; Huang, H. Y.; Moll, J.; Thauer, R. K.: NADP(+) Reduction with Reduced Ferredoxin and NADP(+) Reduction with NADH Are Coupled via an Electron-Bifurcating Enzyme Complex in Clostridium kluyveri. Journal of Bacteriology 192 (19), pp. 5115 - 5123 (2010)
Journal Article
Ceh, K.; Demmer, U.; Warkentin, E.; Moll, J.; Thauer, R. K.; Shima, S.; Ermler, U.: Structural Basis of the Hydride Transfer Mechanism in F420-Dependent Methylenetetrahydromethanopterin Dehydrogenase. Biochemistry 48, pp. 10098 - 10105 (2009)
Journal Article
Hiromoto, T.; Warkentin, E.; Moll, J.; Ermler, U.; Shima, S.: The Crystal Structure of an [Fe]-Hydrogenase-Substrate Complex Reveals the Framework for H2 Activation. Angewandte Chemie Int. ed. 48, pp. 6457 - 6460 (2009)
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