Authors:
Hall, DA
Kooi, CWV
Stasik, CN
Stevens, SY
Zuiderweg, ERP
Matthews, RG
Citation: Da. Hall et al., Mapping the interactions between flavodoxin and its physiological partnersflavodoxin reductase and cobalamin-dependent methionine synthase, P NAS US, 98(17), 2001, pp. 9521-9526
Citation: L. Paul et al., Activation from a distance: Roles of Lrp and integration host factor in transcriptional activation of gltBDF, J BACT, 183(13), 2001, pp. 3910-3918
Authors:
Zhou, ZHS
Peariso, K
Penner-Hahn, JE
Matthews, RG
Citation: Zhs. Zhou et al., Identification of the zinc ligands in cobalamin-independent methionine synthase (MetE) from Escherichia coli (vol 38, pg 15915, 1999), BIOCHEM, 40(44), 2001, pp. 13406-13406
Authors:
Peariso, K
Zhou, ZHS
Smith, AE
Matthews, RG
Penner-Hahn, JE
Citation: K. Peariso et al., Characterization of the zinc sites in cobalamin-independent and cobalamin-dependent methionine synthase using zinc and selenium X-ray absorption spectroscopy, BIOCHEM, 40(4), 2001, pp. 987-993
Citation: Ee. Trimmer et al., Methylenetetrahydrofolate reductase from Escherichia coli: Elucidation of the kinetic mechanism by steady-state and rapid-reaction studies, BIOCHEM, 40(21), 2001, pp. 6205-6215
Authors:
Trimmer, EE
Ballou, DP
Ludwig, ML
Matthews, RG
Citation: Ee. Trimmer et al., Folate activation and catalysis in methylenetetrahydrofolate reductase from Escherichia coli: Roles for Aspartate 120 and Glutamate 28, BIOCHEM, 40(21), 2001, pp. 6216-6226
Citation: V. Bandarian et Rg. Matthews, Quantitation of rate enhancements attained by the binding of cobalamin to methionine synthase, BIOCHEM, 40(16), 2001, pp. 5056-5064
Citation: Rg. Matthews et Ml. Ludwig, Microbial modeling of human disease: Homocysteine metabolism, HOMOCYSTEINE IN HEALTH AND DISEASE, 2001, pp. 100-112
Citation: Zs. Zhou et al., L-selenohomocysteine: One-step synthesis from L-selenomethionine and kinetic analysis as substrate for methionine synthases, BIOORG MED, 10(21), 2000, pp. 2471-2475
Authors:
Matthews, RG
Cui, YH
Friedberg, D
Calvo, JM
Citation: Rg. Matthews et al., Wild-type and hexahistidine-tagged derivatives of leucine-responsive regulatory protein from Escherichia coli, METH ENZYM, 324, 2000, pp. 322-329
Authors:
Matthews, RG
Ajji, A
Dumoulin, MM
Prud'homme, RE
Citation: Rg. Matthews et al., The effects of stress relaxation on the structure and orientation of tensile drawn poly(ethylene terephthalate), POLYMER, 41(19), 2000, pp. 7139-7145
Citation: Ae. Smith et Rg. Matthews, Protonation state of methyltetrahydrofolate in a binary complex with cobalamin-dependent methionine synthase, BIOCHEM, 39(45), 2000, pp. 13880-13890
Authors:
Guenther, BD
Sheppard, CA
Tran, P
Rozen, R
Matthews, RG
Ludwig, ML
Citation: Bd. Guenther et al., The structure and properties of methylenetetrahydrofolate reductase from Escherichia coli suggest how folate ameliorates human hyperhomocysteinemia, NAT ST BIOL, 6(4), 1999, pp. 359-365
Citation: Rg. Matthews et al., Structural heterogeneity and dynamic mechanical relaxations of ethylene alpha-olefin copolymers, J POL SC PP, 37(1), 1999, pp. 51-60
Authors:
Matthews, RG
Ajji, A
Dumoulin, MM
Prud'homme, RE
Citation: Rg. Matthews et al., The effects of roll drawing on the structure and properties of oriented poly(ethylene terephthalate), POLYM ENG S, 39(12), 1999, pp. 2377-2388
Citation: Rg. Matthews et al., The relationship between the dynamic mechanical relaxations and the tensile deformation behaviour of polyethylene, J MATER SCI, 34(12), 1999, pp. 2781-2787
Authors:
Matthews, RG
Unwin, AP
Ward, IM
Capaccio, G
Citation: Rg. Matthews et al., A comparison of the dynamic mechanical relaxation behavior of linear low- and high-density polyethylenes, J MACR S PH, B38(1-2), 1999, pp. 123-143
Citation: Ca. Sheppard et al., Purification and properties of NADH-dependent 5,10-methylenetetrahydrofolate reductase (MetF) from Escherichia coli, J BACT, 181(3), 1999, pp. 718-725
Authors:
Zhou, ZHS
Peariso, K
Penner-Hahn, JE
Matthews, RG
Citation: Zhs. Zhou et al., Identification of the zinc ligands in cobalamin-independent methionine synthase (MetE) from Escherichia coli, BIOCHEM, 38(48), 1999, pp. 15915-15926