Citation: Ga. Petsko, Structural basis of thermostability in hyperthermophilic proteins, or "there's more than one way to skin a cat", METH ENZYM, 334, 2001, pp. 469-478
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Citation: Ew. Trotter et al., Protein misfolding and temperature up-shift cause G(1) arrest via a commonmechanism dependent on heat shock factor in Saccharomyces cerevisiae, P NAS US, 98(13), 2001, pp. 7313-7318
Authors:
Hadfield, A
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Citation: A. Hadfield et al., Active site analysis of the potential antimicrobial target aspartate semialdehyde dehydrogenase, BIOCHEM, 40(48), 2001, pp. 14475-14483
Citation: Ga. Petsko et D. Ringe, Observation of unstable species in enzyme-catalyzed transformations using protein crystallography, CURR OP C B, 4(1), 2000, pp. 89-94
Authors:
Jeffrey, CJ
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Petsko, GA
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Citation: Cj. Jeffrey et al., The role of residues outside the active site: structural basis for function of C191 mutants of Escherichia coli aspartate aminotransferase, PROTEIN ENG, 13(2), 2000, pp. 105-112
Authors:
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Citation: J. Heymont et al., TEP1, the yeast homolog of the human tumor suppressor gene PTEN/MMAC1/TEP1, is linked to the phosphatidylinositol pathway and plays a role in the developmental process of sporulation, P NAS US, 97(23), 2000, pp. 12672-12677
Authors:
McMillan, FM
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Citation: Fm. Mcmillan et al., Crystal structure at 2.4 A resolution of Borrelia burgdorferi inosine 5 '-monophosphate dehydrogenase: Evidence of a substrate-induced hinged-lid motion by loop 6, BIOCHEM, 39(15), 2000, pp. 4533-4542
Citation: Ga. Petsko, Structure and mechanism in protein science: A guide to enzyme catalysis and protein folding, NATURE, 401(6749), 1999, pp. 115-116
Authors:
Hadfield, A
Kryger, G
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Petsko, GA
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Citation: A. Hadfield et al., Structure of aspartate-beta-semialdehyde dehydrogenase from Escherichia coli, a key enzyme in the aspartate family of amino acid biosynthesis, J MOL BIOL, 289(4), 1999, pp. 991-1002
Authors:
De Paola, CC
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Citation: Cc. De Paola et al., L-butaneboronic acid binding to Aeromonas proteolytica aminopeptidase: A case of arrested development, BIOCHEM, 38(28), 1999, pp. 9048-9053
Citation: Aa. Morollo et al., Structure of a Michaelis complex analogue: Propionate binds in the substrate carboxylate site of alanine racemase, BIOCHEM, 38(11), 1999, pp. 3293-3301
Authors:
Wieczorek, SJ
Kalivoda, KA
Clifton, JG
Ringe, D
Petsko, GA
Gerlt, JA
Citation: Sj. Wieczorek et al., Evolution of enzymatic activities in the enolase superfamily: Identification of a "new" general acid catalyst in the active site of D-galactonate dehydratase from Escherichia coli, J AM CHEM S, 121(18), 1999, pp. 4540-4541