Artículo
In silico study of the inhibition of DNA polymerase by a novel catalpol derivative
Martín, Osvaldo Antonio
; Garro, Hugo Alejandro
; Kurina Sanz, Marcela Beatriz
; Tonn, Carlos Eugenio
; Pungitore, Carlos Rodolfo
; Garro, Hugo Alejandro
; Kurina Sanz, Marcela Beatriz
; Tonn, Carlos Eugenio
; Pungitore, Carlos Rodolfo
Fecha de publicación:
01/2011
Editorial:
Springer
Revista:
Journal of Molecular Modeling
ISSN:
1610-2940
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
In this work, a novel catalpol derivative (6,10,2′,6′-tetraacetyl-O-catalpol), which was previously obtained by our group and shown experimentally to inhibit a type of Taq DNA polymerase, was studied in silico. Studies of the interaction of 6,10,2′,6′-tetraacetyl-O-catalpol with the Klentaq fragment of the Taq DNA polymerase I from Thermus aquaticus helped to elucidate the mechanism of inhibition of the enzyme, and offered valuable information that can be used to propose substrate structural modifications aimed at increasing the binding affinity. Classical and semi-empirical methods were used to characterize the conformational preferences of this organic compound in solution. Using docking simulations, the most probable binding mode was found, and the stabilities of the docked solutions were tested in a series of molecular dynamics experiments. Results indicated that the mechanism of inhibition may be competitive, which agrees with previous binding experiments done with 6,10,2′,6′-tetraacetyl-O-catalpol.
Palabras clave:
Taq DNA polymerase
,
iridoids
,
catalpol
,
docking
Archivos asociados
Licencia
Identificadores
Colecciones
Articulos(IMASL)
Articulos de INST. DE MATEMATICA APLICADA DE SAN LUIS
Articulos de INST. DE MATEMATICA APLICADA DE SAN LUIS
Articulos(INTEQUI)
Articulos de INST. DE INVEST. EN TECNOLOGIA QUIMICA
Articulos de INST. DE INVEST. EN TECNOLOGIA QUIMICA
Citación
Martín, Osvaldo Antonio; Garro, Hugo Alejandro; Kurina Sanz, Marcela Beatriz; Tonn, Carlos Eugenio; Pungitore, Carlos Rodolfo; In silico study of the inhibition of DNA polymerase by a novel catalpol derivative; Springer; Journal of Molecular Modeling; 17; 1-2011; 2717-2723
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