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Le site peptidasique de la butyrylcholinestérase est distinct du site estérasique = Peptidase site of butyrylcholinesterase is separate from that of esteraseCHATONNET, A; MASSON, P.Comptes rendus des séances de l'Académie des sciences. Série 3, Sciences de la vie. 1984, Vol 299, Num 13, pp 529-534, issn 0249-6313Article

Phospholipid synthesizing enzymes of the mitochondrial outer membrane: In search of their catalytic sitesBALIJA, Vivekanand S; CHAKRABORTY, Tandra R; HALDAR, Dipak et al.Recent research developments in lipids. Vol. 4 (2000) ; Part I. Recent research developments in lipids. 2000, pp 1-11, isbn 81-86846-62-XBook Chapter

Properties of ATP tightly bound to catalytic sites of chloroplast ATP synthaseTOMBRAS SMITH, L; ROSEN, G; BOYER, P. D et al.The Journal of biological chemistry (Print). 1983, Vol 258, Num 18, pp 10887-10894, issn 0021-9258Article

Iron-sulfur cluster biosynthesis: Characterization of iron nucleation sites for assembly of the [2Fe-2S]2+ cluster core in IscU proteinsNUTH, Manunya; YOON, Taejin; COWAN, J. A et al.Journal of the American Chemical Society. 2002, Vol 124, Num 30, pp 8774-8775, issn 0002-7863Article

Energy transduction at the catalytic site of enzymes: hydrolysis of phosphoester bonds and synthesis of pyrophosphate by alkaline phosphataseNAYADU, R. V; DE MEIS, L.FEBS letters. 1989, Vol 255, Num 1, pp 163-166, issn 0014-5793, 4 p.Article

SUICIDE INACTIVATION OF MONOAMINE OXIDASE BY TRANS-PHENYLCYCLOPROPYLAMINEPAECH C; SALACH JI; SINGER TP et al.1980; J. BIOL. CHEM.; USA; DA. 1980; VOL. 255; NO 7; PP. 2700-2704; BIBL. 18 REF.Article

Enhanced Conversion of Cellobiose to Sugar Alcohols by Controlled Dispersion of Ruthenium Nanoparticles Inside Carbon Nanotube ChannelsMAOFEI RAN; YAN LIU; WEI CHU et al.Catalysis letters. 2013, Vol 143, Num 11, pp 1139-1144, issn 1011-372X, 6 p.Article

Catalytic specificity of protein tyrosine kinases is critical for selective signallingZHOU SONGYANG; CARRAWAY, K. L; LORENZO, M. J et al.Nature (London). 1995, Vol 373, Num 6514, pp 536-539, issn 0028-0836Article

Artificial redox enzymes. I: Synthetic strategiesDING RONG; HONGPING YE; BOEHLOW, T. R et al.Journal of organic chemistry. 1992, Vol 57, Num 1, pp 163-167, issn 0022-3263Article

Multiprocessed simulation of competing folding pathways in RNA : the shaping of the catalytic site for splicingFERNANDEZ, A.(An) International journal of physical chemistry. 1991, Vol 95, Num 12, pp 1674-1680Article

The role of the phosphate group for the structure of phosphopeptide products of adenosine 3',5'-cyclic monophosphate-dependent protein kinaseHIDER, R. C; RAGNARSSON, U; ZETTERQVIST, O et al.Biochemical journal (London. 1906). 1985, Vol 229, Num 2, pp 485-489, issn 0006-2936Article

Monoclonal antibodies directed against mammalian RNA polymerase: identification of the catalytic centerROSE, K. M; MAGUIRE, K. A; WURPEL, J. N. D et al.The Journal of biological chemistry (Print). 1983, Vol 258, Num 21, pp 12976-12981, issn 0021-9258Article

Proceedings of the Catalysis Research Center International Symposium on photochemistry@interfaces, held at Hokkaido University, Sapporo, Japan, 9-11 August 2002OHTANI, Bunsho.Journal of photochemistry and photobiology. A, Chemistry. 2003, Vol 160, Num 1-2, issn 1010-6030, 136 p.Conference Proceedings

Here's the latest score on single-site catalystsSCHUT, J. H.Plastics world. 1996, Vol 54, Num 4, pp 41-46, issn 0032-1273Article

The nature of active centres in catalysis by metalsBURCH, R; HOLLINS, P.Catalysis today. 1992, Vol 12, Num 2-3, pp 107-111, issn 0920-5861Article

Reaction at traps involving two diffusing species: application to atomic-molecular hydrogen conversion at defectsRICHARDS, P. M; MYERS, S. M.The Journal of chemical physics. 1990, Vol 92, Num 3, pp 1972-1979, issn 0021-9606, 8 p.Article

Concerning the catalytic site of porphobilinogen deaminaseSCOTT, A. I; STOLOWICH, N. J; WILLIAMS, H. J et al.Journal of the American Chemical Society. 1988, Vol 110, Num 17, pp 5898-5900, issn 0002-7863Article

Studies on the catalytic residues at the active site of human liver α-L-fucosidaseWHITE, W. J. JR; SCHRAY, K. J; ALHADEFF, J. A et al.Biochimica et biophysica acta. 1985, Vol 829, Num 3, pp 303-310, issn 0006-3002Article

Fischer-Tropsch synthesis: Are common sites responsible for FTS and water-gas shift (WGS)?MINGSHENG LUO; DEVILLIERS, David; O'BRIEN, Robert J et al.Preprints - American Chemical Society. Division of Petroleum Chemistry. 2004, Vol 49, Num 2, pp 172-174, issn 0569-3799, 3 p.Conference Paper

Splicing-related catalysis by protein-free snRNAsVALADKHAN, Saba; MANLEY, James L.Nature (London). 2001, Vol 413, Num 6857, pp 701-707, issn 0028-0836Article

Structural characterization of selenosubtilisin by 77Se NMR spectroscopyHOUSE, K. L; BRUCE DUNLAP, R; ODOM, J. D et al.Journal of the American Chemical Society. 1992, Vol 114, Num 22, pp 8573-8579, issn 0002-7863Article

Stabilization energy of the catalytic core of the Tetrahymena ribozymeSUGIMOTO, N; SASAKI, M.Chemistry Letters. 1991, Num 3, pp 345-348, issn 0366-7022Article

The elementary catalytic system model as a building unit of large enzymatic systems: general modelBOROWIAK, M. A.Biophysical chemistry. 1988, Vol 32, Num 1, pp 21-36, issn 0301-4622Article

Analysis of pH-dependent kinetics in up to four reactive hydronic statesBROCKLEHURST, S. M; BROCKLEHURST, K.Biochemical journal (London. 1906). 1988, Vol 256, Num 2, pp 556-558, issn 0006-2936Article

Mitochondrial F1-ATPase will bind and cleave ATP but only slowly release ADP after N,N'-dicyclohexylcarbodiimide or 7-chloro-4-nitrobenzo-2-oxa-1,3-diazole derivatizationKANDPAL, R. P; MELESE, T; STROOP, S. D et al.The Journal of biological chemistry (Print). 1985, Vol 260, Num 9, pp 5542-5547, issn 0021-9258Article

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