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Authors:
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Citation: C. Contreras-martel et al., Crystallization and 2.2 angstrom E resolution structure of R-phycoerythrinfrom Gracilaria chilensis: a case of perfect hemihedral twinning, ACT CRYST D, 57, 2001, pp. 52-60
Authors:
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Citation: Y. Nicolet et al., Crystallographic and FTIR spectroscopic evidence of changes in Fe coordination upon reduction of the active site of the Fe-only hydrogenase from Desulfovibrio desulfuricans, J AM CHEM S, 123(8), 2001, pp. 1596-1601
Authors:
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Citation: D. Housset et al., Towards the charge-density study of proteins: a room-temperature scorpion-toxin structure at 0.96 angstrom resolution as a first test case, ACT CRYST D, 56, 2000, pp. 151-160
Authors:
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Citation: C. Gaboriaud et al., Crystal structure of the catalytic domain of human complement C1s: a serine protease with a handle, EMBO J, 19(8), 2000, pp. 1755-1765
Authors:
Gruez, A
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Citation: A. Gruez et al., Four crystal structures of the 60 kDa flavoprotein monomer of the sulfite reductase indicate a disordered flavodoxin-like module, J MOL BIOL, 299(1), 2000, pp. 199-212
Authors:
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Citation: D. Pignol et al., Critical role of micelles in pancreatic lipase activation revealed by small angle neutron scattering, J BIOL CHEM, 275(6), 2000, pp. 4220-4224
Authors:
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Citation: X. Morelli et al., Structural model of the Fe-hydrogenase/cytochrome c(553) complex combiningtransverse relaxation-optimized spectroscopy experiments and soft docking calculations, J BIOL CHEM, 275(30), 2000, pp. 23204-23210
Authors:
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Citation: V. Gerbaud et al., Mechanism of calcite crystal growth inhibition by the N-terminal undecapeptide of lithostathine, J BIOL CHEM, 275(2), 2000, pp. 1057-1064
Authors:
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Citation: M. Sohi et al., Crystal structure of Escherichia coli UvrB C-terminal domain, and a model for UvrB-UvrC interaction, FEBS LETTER, 465(2-3), 2000, pp. 161-164
Authors:
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Citation: E. Chabriere et al., Crystal structures of the key anaerobic enzyme pyruvate : ferredoxin oxidoreductase, free and in complex with pyruvate, NAT ST BIOL, 6(2), 1999, pp. 182-190
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Citation: E. Garcin et al., The crystal structure of a reduced [NiFeSe] hydrogenase provides an image of the activated catalytic center, STRUCT F D, 7(5), 1999, pp. 557-566
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Citation: Y. Nicolet et al., Desulfovibrio desulfuricans iron hydrogenase: the structure shows unusual coordination to an active site Fe binuclear center, STRUCT F D, 7(1), 1999, pp. 13-23
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Citation: E. Chabriere et al., Combination of methods used in the structure solution of pyruvate : ferredoxin oxidoreductase from two crystal forms, ACT CRYST D, 55, 1999, pp. 1546-1554
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Citation: L. Pieulle et al., Crystallization and preliminary crystallographic analysis of the pyruvate-ferredoxin oxidoreductase from Desulfovibrio africanus, ACT CRYST D, 55, 1999, pp. 329-331
Authors:
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Housset, D
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Malissen, B
Citation: G. Mazza et al., Structural features of the interaction between an anti-clonotypic antibodyand its cognate T-cell antigen receptor, J MOL BIOL, 287(4), 1999, pp. 773-780
Authors:
Hatchikian, EC
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Nicolet, Y
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Citation: Ec. Hatchikian et al., Carboxy-terminal processing of the large subunit of [Fe] hydrogenase from Desulfovibrio desulfuricans ATCC 7757, J BACT, 181(9), 1999, pp. 2947-2952
Citation: X. Vernede et Jc. Fontecilla-camps, A method to stabilize reduced and or gas-treated protein crystals by flash-cooling under a controlled atmosphere, J APPL CRYS, 32, 1999, pp. 505-509
Authors:
Amara, P
Volbeda, A
Fontecilla-Camps, JC
Field, MJ
Citation: P. Amara et al., A hybrid density functional theory molecular mechanics study of nickel-iron hydrogenase: Investigation of the active site redox states, J AM CHEM S, 121(18), 1999, pp. 4468-4477