Abstract
Fucosylated glycoconjugates are involved in numerous biological events, and α-L-fucosidases, the enzymes responsible for their processing, are therefore of crucial importance. Deficiency in α-L-fucosidase activity is associated with fucosidosis, a lysosomal storage disorder characterized by rapid neurodegeneration, resulting in severe mental and motor deterioration. To gain insight into α-L-fucosidase function at the molecular level, we have determined the crystal structure of Thermotoga maritima α-L-fucosidase. This enzyme assembles as a hexamer and displays a two-domain fold, composed of a catalytic (β/α)8-like domain and a C-terminal β-sandwich domain. The structures of an enzyme-product complex and of a covalent glycosyl-enzyme intermediate, coupled with kinetic and mutagenesis studies, allowed us to identify the catalytic nucleophile, Asp244, and the Brønsted acid/base, Glu266. Because T. maritima α-L-fucosidase occupies a unique evolutionary position, being far more closely related to the mammalian enzymes than to any other prokaryotic homolog, a structural model of the human enzyme was built to document the structural consequences of the genetic mutations associated with fucosidosis.
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CITATION STYLE
Sulzenbacher, G., Bignon, C., Nishimura, T., Tarling, C. A., Withers, S. G., Henrissat, B., & Bourne, Y. (2004). Crystal structure of Thermotoga maritima α-L-fucosidase: Insights into the catalytic mechanism and the molecular basis for fucosidosis. Journal of Biological Chemistry, 279(13), 13119–13128. https://doi.org/10.1074/jbc.M313783200
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