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Structural (betaalpha)8 TIM barrel model of 3-hydroxy-3-methylglutaryl-coenzyme A lyase
Authors:Casals Núria  Gómez-Puertas Paulino  Pié Juan  Mir Cecilia  Roca Ramón  Puisac Beatriz  Aledo Rosa  Clotet Josep  Menao Sebastián  Serra Dolors  Asins Guillermina  Till Jacqueline  Elias-Jones Alun C  Cresto Juan C  Chamoles Nestor A  Abdenur Jose E  Mayatepek Ertan  Besley Guy  Valencia Alfonso  Hegardt Fausto G
Institution:Unit of Biochemistry and Molecular Biology, International University of Catalonia, Spain.
Abstract:This study describes three novel homozygous missense mutations (S75R, S201Y, and D204N) in the 3-hydroxy-3-methylglutaryl-CoA (HMG-CoA) lyase gene, which caused 3-hydroxy-3-methylglutaric aciduria in patients from Germany, England, and Argentina. Expression studies in Escherichia coli show that S75R and S201Y substitutions completely abolished the HMG-CoA lyase activity, whereas D204N reduced catalytic efficiency to 6.6% of the wild type. We also propose a three-dimensional model for human HMG-CoA lyase containing a (betaalpha)8 (TIM) barrel structure. The model is supported by the similarity with analogous TIM barrel structures of functionally related proteins, by the localization of catalytic amino acids at the active site, and by the coincidence between the shape of the substrate (HMG-CoA) and the predicted inner cavity. The three novel mutations explain the lack of HMG-CoA lyase activity on the basis of the proposed structure: in S75R and S201Y because the new amino acid residues occlude the substrate cavity, and in D204N because the mutation alters the electrochemical environment of the active site. We also report the localization of all missense mutations reported to date and show that these mutations are located in the beta-sheets around the substrate cavity.
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