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RECOGNITION OF PHYLOGENETIC RELATIONSHIPS FROM POLYPEPTIDE CHAIN FOLD SIMILARITIES.SCHULZ GE.1977; J. MOLEC. EVOL.; GERM.; DA. 1977; VOL. 9; NO 4; PP. 339-342; BIBL. 10 REF.Article

GENE DUPLICATION IN GLUTATHIONE REDUCTASESCHULZ GE.1980; J. MOLEC. BIOL.; GBR; DA. 1980; VOL. 138; NO 2; PP. 335-347; BIBL. 29 REF.Article

DAGENERACY OF THE INFORMATION CONTAINED IN AMINO ACID SEQUENCES: EVIDENCE FROM OVERLAID GENESSANDER C; SCHULZ GE.1979; J. MOLEC. EVOL.; DEU; DA. 1979; VOL. 13; NO 3; PP. 245-252; BIBL. 6 REF.Article

THE CATALYTIC MECHANISM OF GLUTATHIONE REDUCTASE AS DERIVED FROM X-RAY DIFFRACTION ANALYSES OF REACTION INTERMEDIATESPAI EF; SCHULZ GE.1983; JOURNAL OF BIOLOGICAL CHEMISTRY; ISSN 0021-9258; USA; DA. 1983; VOL. 258; NO 3; PP. 1752-1757; BIBL. 47 REF.Article

TWO CONFORMATIONS OF CRYSTALLINE ADENYLATE KINASE.SACHSENHEIMER W; SCHULZ GE.1977; J. MOLEC. BIOL.; G.B.; DA. 1977; VOL. 114; NO 1; PP. 23-36; BIBL. 1 P.Article

THE C-TERMINAL FRAGMENT OF HUMAN GLUTATHIONE REDUCTASE CONTAINS THE POSTULATED CATALYTIC HISTIDINEUNTUCHT GRAU R; SCHULZ GE; SCHIRMER RH et al.1979; F.E.B.S. LETTERS; NLD; DA. 1979; VOL. 105; NO 2; PP. 244-248; BIBL. 28 REF.Article

COMPARISON OF PROTEIN CRYSTAL DIFFRACTION PATTERNS AND ABSOLUTE INTENSITIES FROM SYNCHROTRON AND CONVENTIONAL X-RAY SOURCES.HARMSEN A; LEBERMAN R; SCHULZ GE et al.1976; J. MOLEC. BIOL.; G.B.; DA. 1976; VOL. 104; NO 1; PP. 311-314; BIBL. 14 REF.Article

AMINO ACID SEQUENCE HOMOLOGY BETWEEN PIG HEART LIPOAMIDE DEHYDROGENASE AND HUMAN ERYTHROCYTEGLUTATHIONE REDUCTASEWILLIAMS CH JR; ARSCOTT LD; SCHULZ GE et al.1982; PROC. NATL. ACAD. SCI. U.S.A., BIOL. SCI.; ISSN 0273-1134; USA; DA. 1982; VOL. 79; NO 7; PP. 2199-2201; BIBL. 31 REF.Article

LOW RESOLUTION STRUCTURE OF HUMAN ERYTHROCYTE GLUTATHIONE REDUCTASE.ZAPPE HA; KROHNE EHRICH G; SCHULZ GE et al.1977; J. MOLEC. BIOL.; G.B.; DA. 1977; VOL. 113; NO 1; PP. 141-152; BIBL. 1 P. 1/2Article

CRYSTALLINE ADENYLATE KINASE FROM CARP MUSCLENODA L; SCHULZ GE; ZABERN V et al.1975; EUROP. J. BIOCHEM.; GERM.; DA. 1975; VOL. 51; NO 1; PP. 229-235; BIBL. 27REF.Article

POLYMORPHISM IN CRYSTALLINE ELONGATION FACTOR TU.GDP FROM ESCHERICHIA COLI.LEBERMAN R; WITTINGHOFER A; SCHULZ GE et al.1976; J. MOLEC. BIOL.; G.B.; DA. 1976; VOL. 106; NO 4; PP. 951-961; BIBL. 18 REF.Article

CRYSTALLIZATION AND PRELIMINARY X-RAY DIFFRACTION DATA OF THE EF-TU.EF-TS (EF-T) COMPLEX ESCHERICHIA COLILEBERMAN R; SCHULZ GE; SUCK D et al.1981; FEBS LETT.; ISSN 0014-5793; NLD; DA. 1981; VOL. 124; NO 2; PP. 279-281; BIBL. 16 REF.Article

FAD-BINDING SITE OF GLUTATHIONE REDUCTASESCHULZ GE; SCHIRMER RH; PAI EF et al.1982; J. MOL. BIOL.; ISSN 0022-2836; GBR; DA. 1982; VOL. 160; NO 2; PP. 287-308; BIBL. 2 P.Article

PRELIMINARY X-RAY STUDIES ON THE GTP: AMP PHOSPHOTRANSFERASE FROM BEEF HEART MITOCHONDRIAPAI EF; SCHULZ GE; TOMASSELLI AG et al.1983; JOURNAL OF MOLECULAR BIOLOGY; ISSN 0022-2836; GBR; DA. 1983; VOL. 164; NO 2; PP. 347-350; BIBL. 23 REF.Article

THE STRUCTURE OF THE FLAVOENZYME GLUTATHIONE REDUCTASE.SCHULZ GE; SCHIRMER RH; SACHSENHEIMER W et al.1978; NATURE; G.B.; DA. 1978; VOL. 273; NO 5658; PP. 120-124; BIBL. 34 REF.Article

SUBSTRATE POSITIONS AND INDUCED-FIT IN CRYSTALLINE ADENYLATE KINASE.SACHSENHEIMER W; PAI EF; SCHIRMER RH et al.1977; J. MOLEC. BIOL.; G.B.; DA. 1977; VOL. 114; NO 1; PP. 37-45; BIBL. 1 P.Article

CRYSTALS OF HUMAN ERYTHROCYTE GLUTATHIONE REDUCTASESCHULZ GE; ZAPPE H; WORTHINGTON DJ et al.1975; F.E.B.S. LETTERS; NETHERL.; DA. 1975; VOL. 54; NO 1; PP. 86-88; BIBL. 19REFArticle

THREE-DIMENSIONAL STRUCTURE OF GLUTATHIONE REDUCTASE AT 2 A RESOLUTIONTHIEME R; PAI EF; SCHIRMER RH et al.1981; J. MOL. BIOL.; ISSN 0022-2836; GBR; DA. 1981; VOL. 152; NO 4; PP. 763-782; BIBL. 1 P.Article

LOW RESOLUTION STRUCTURE OF PARTIALLY TRYPSIN-DEGRADED POLYPEPTIDE ELONGATION FACTOR, EF-TU, FROM ESCHERICHIA COLI.KABSCH W; GAST WH; SCHULZ GE et al.1977; J. MOLEC. BIOL.; G.B.; DA. 1977; VOL. 117; NO 4; PP. 999-1012; BIBL. 38 REF.Article

CRYSTALS OF PARTIALLY TRYPSIN-DIGESTED ELONGATION FACTOR TU.GAST WH; LEBERMAN R; SCHULZ GE et al.1976; J. MOLEC. BIOL.; G.B.; DA. 1976; VOL. 106; NO 4; PP. 943-950; BIBL. 11 REF.Article

THREE-DIMENSIONAL STRUCTURE OF ADENYL KINASE = STRUCTURE TRI-DIMENSIONNELLE DE L'ADENYL KINASESCHULZ GE; ELZINGA M; MARX F et al.1974; NATURE; G.B.; DA. 1974; VOL. 250; NO 5462; PP. 120-123; BIBL. 30REF.Article

HALOTHANE BINDS IN THE ADENINE-SPECIFIC NICHE OF CRYSTALLINE ADENYLATE KINASE.SACHSENHEIMER W; PAI EF; SCHULZ GE et al.1977; F.E.B.S. LETTERS; NETHERL.; DA. 1977; VOL. 79; NO 2; PP. 310-312; BIBL. 25 REF.Article

COMPARISON OF PREDICTED AND EXPERIMENTALLY DETERMINED SECONDARY STRUCTURE OF ADENYL KINASE = COMPARAISON DES STRUCTURES SECONDAIRES PREDITES OU DETERMINEES EXPERIMENTALEMENT POUR L'ADENYL KINASESCHULZ GE; BARRY CD; FRIEDMAN J et al.1974; NATURE; G.B.; DA. 1974; VOL. 250; NO 5462; PP. 140-142; BIBL. 32REF.Article

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