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Chang X, Wu S, Chen J, Xiong S, Wang P, Shi X, Wang A, Wang B (2021)
Characterization of a carboxylesterase with hyper-thermostability and alkali-stability from Streptomyces lividans TK24
Extremophiles

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Wang B, Wu S, Chang X, Chen J, Ma J, Wang P, Zhu G (2020)
Characterization of a novel hyper-thermostable and chlorpyrifos-hydrolyzing carboxylesterase EstC: A representative of the new esterase family XIX
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Biochemical and Structural Analyses of Two Cryptic Esterases in Bacteroides intestinalis and their Synergistic Activities with Cognate Xylanases
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Singh MK, Manoj N (2016)
An extended loop in CE7 carbohydrate esterase family is dispensable for oligomerization but required for activity and thermostability
J Struct Biol 194: 434

Porter JL, Boon PL, Murray TP, Huber T, Collyer CA, Ollis DL (2015)
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ACS Chemical Biology 10: 611

Hang BJ, Hong Q, Xie XT, Huang X, Wang CH, He J, Li SP (2012)
SulE, a sulfonylurea herbicide de-esterification esterase from Hansschlegelia zhihuaiae S113
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Legler PM, Leary DH, Hervey WJt, Millard CB (2012)
A role for His-160 in peroxide inhibition of S. cerevisiae S-formylglutathione hydrolase: evidence for an oxidation sensitive motif
Archives of Biochemistry & Biophysics 528: 7

Yang Y, Xu R, Ma CJ, Vlot AC, Klessig DF, Pichersky E (2008)
Inactive methyl indole-3-acetic acid ester can be hydrolyzed and activated by several esterases belonging to the AtMES esterase family of Arabidopsis
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Onaca C, Kieninger M, Engesser KH, Altenbuchner J (2007)
Degradation of alkyl methyl ketones by Pseudomonas veronii MEK700
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Development and application of a suite of polysaccharide-degrading enzymes for analyzing plant cell walls
Proc Natl Acad Sci U S A 103: 11417

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Cloning and characterization of EstC from Burkholderia gladioli, a novel-type esterase related to plant enzymes
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Electrostatic influence on the kinetics of ligand binding to acetylcholinesterase. Distinctions between active center ligands and fasciculin
Journal of Biological Chemistry 272: 23265

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Purification and partial characterization of a novel thermophilic carboxylesterase with high mesophilic specific activity
Enzyme Microb Technol 17: 816

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Dissection of the human acetylcholinesterase active center determinants of substrate specificity. Identification of residues constituting the anionic site, the hydrophobic site, and the acyl pocket
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Catalysis by acetylcholinesterase in two-hydronic-reactive states. Integrity of deuterium oxide effects and hydron inventories
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