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Título

Molecular characterization and heterologous expression of a Xanthophyllomyces dendrorhous ¿-glucosidase with potential for prebiotics production

AutorGutiérrez-Alonso, Patricia; Gimeno-Pérez, María CSIC ORCID; Ramírez-Escudero, Mercedes CSIC ORCID; Plou Gasca, Francisco José CSIC ORCID ; Sanz-Aparicio, J. CSIC ORCID; Fernández Lobato, María CSIC ORCID
Palabras claveAlpha-glucosidase
Panose
Maltooligosaccharides
Xanthophyllomyces dendrorhous
GH31 family
Fecha de publicación2015
EditorAmerican Society for Microbiology
CitaciónApplied and Environmental Microbiology 100: 3125- 3135 (2016)
ResumenAbstract Basidiomycetous yeast Xanthophyllomyces dendrorhous expresses an α-glucosidase with strong transglycosylation activity producing prebiotic sugars such as panose and an unusual tetrasaccharides mixture including α–(1–6) bonds as major products, which makes it of biotechnological interest. Initial analysis pointed to a homodimeric protein of 60 kDa subunit as responsible for this activity. In this study, the gene Xd-AlphaGlu was characterized. The 4131-bp-long gene is interrupted by 13 short introns and encodes a protein of 990 amino acids (Xd-AlphaGlu). The N-terminal sequence of the previously detected 60 kDa protein resides in this larger protein at residues 583–602. Functionality of the gene was proved in Saccharomyces cerevisiae, which produced a protein of about 130 kDa containing Xd-AlphaGlu sequences. All properties of the heterologously expressed protein, including thermal and pH profiles, activity on different substrates, and ability to produce prebiotic sugars were similar to that of the α-glucosidase produced in X. dendrorhous. No activity was detected in S. cerevisiae containing exclusively the 1256-bp from gene Xd-AlphaGlu that would encode synthesis of the 60 kDa protein previously detected. Data were compatible with an active monomeric α-glucosidase of 990 amino acids and an inactive hydrolysis product of 60 kDa. Protein Xd-AlphaGlu contained most of the elements characteristic of α-glucosidases included in the glycoside hydrolases family GH31 and its structural model based on the homologous human maltase-lucoamylase was obtained. Remarkably, the Xd-AlphaGlu C-terminal domain presents an unusually long 115-residue insertion that could be involved in this enzyme’s activity against long-size substrates such as maltoheptaose and soluble starch.
URIhttp://hdl.handle.net/10261/151751
DOI10.1007/s00253-015-7171-3
Identificadoresdoi: 10.1007/s00253-015-7171-3
issn: 1098-5336
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