Artículo
Superactive β-galactosidase inclusion bodies
Flores Mamani, Sandra Soledad; Nolan, María Verónica
; Perillo, Maria Angelica
; Sanchez, Julieta Maria
Fecha de publicación:
01/01/2019
Editorial:
Elsevier Science
Revista:
Colloids and Surfaces B: Biointerfaces
ISSN:
0927-7765
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
Bacterial inclusion bodies (IBs) were historically considered one of the major obstacles in protein production through recombinant DNA techniques and conceived as amorphous deposits formed by passive and rather unspecific structures of unfolded proteins aggregates. Subsequent studies demonstrated that IBs contained an important quantity of active protein. In this work, we proved that recombinant β-galactosidase inclusion bodies (IB β-Gal ) are functional aggregates. Moreover, they exhibit particular features distinct to the soluble version of the enzyme. The particulate enzyme was highly active against lactose in physiological and in acid pH and also retained its activity upon a pre-incubation at high temperature. IB β-Gal washing or dilution induced the spontaneous release of active enzymes from the supramolecular aggregates. Along this process, we observed a continuous change in the values of several kinetic parameters, including specific activity and Michaelis–Menten constant, measured in the IB β-Gal suspensions. Simultaneously, IB β-Gal turned into a more heterogeneous population where smaller particles appeared. The released protein exhibited secondary structure features more similar to those of the soluble species than to the aggregated enzyme. Concluding, IB β-Gal represents a reservoir and packed source of highly active and stable enzyme.
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Articulos(IIBYT)
Articulos de INSTITUTO DE INVESTIGACIONES BIOLOGICAS Y TECNOLOGICAS
Articulos de INSTITUTO DE INVESTIGACIONES BIOLOGICAS Y TECNOLOGICAS
Citación
Flores Mamani, Sandra Soledad; Nolan, María Verónica; Perillo, Maria Angelica; Sanchez, Julieta Maria; Superactive β-galactosidase inclusion bodies; Elsevier Science; Colloids and Surfaces B: Biointerfaces; 173; 1-1-2019; 769-775
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