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FEBS Letters|November 18, 1996
Redox FTIR difference spectroscopy using caged electrons reveals contributions of carboxyl groups to the catalytic mechanism of haem-copper oxidasesM Lübben, K GerwertJournal of Bacteriology|November 1, 1989
Chemiosmotic energy conversion of the archaebacterial thermoacidophile Sulfolobus acidocaldarius: oxidative phosphorylation and the presence of an F0-related N,N'-dicyclohexylcarbodiimide-binding proteolipidM Lübben, G SchäferThe Journal of Biological Chemistry|August 26, 1994
Novel prenylated hemes as cofactors of cytochrome oxidases. Archaea have modified hemes A and OM Lübben, K MorandEuropean Journal of Biochemistry|May 4, 1987
A plasma-membrane associated ATPase from the thermoacidophilic archaebacterium Sulfolobus acidocaldariusM Lübben, G SchäferJournal of Molecular Biology|July 7, 1995
New archaebacterial genes coding for redox proteins: implications for the evolution of aerobic metabolismJ Castresana, M Lübben, M SarasteMolecular Microbiology|October 1, 1993
Bacillus subtilis CtaA and CtaB function in haem A biosynthesisB Svensson, M Lübben, L HederstedtThe EMBO Journal|March 1, 1992
An archaebacterial terminal oxidase combines core structures of two mitochondrial respiratory complexesM Lübben, B Kolmerer, M SarasteBiological Chemistry Hoppe-Seyler|November 1, 1988
Archaebacterial ATPase: studies on subunit composition and quaternary structure of the F1-analogous ATPase from Sulfolobus acidocaldariusM Lübben, H Lünsdorf, G SchäferEuropean Journal of Biochemistry|September 1, 1987
The plasma membrane ATPase of the thermoacidophilic archaebacterium Sulfolobus acidocaldarius. Purification and immunological relationships to F1-ATPasesM Lübben, H Lünsdorf, G SchäferEuropean Journal of Biochemistry|September 17, 1984
Azidonaphthoyl-ADP: a specific photolabel for the high-affinity nucleotide-binding sites of F1-ATPaseM Lübben, U Lücken, J Weber, et al.Pageof 3