Computational Strategies Towards Improved Protein Function Prophecy of Xylanases from Thermomyces lanuginosus [electronic resource] / by MVK Karthik, Pratyoosh Shukla.

Por: Karthik, MVK [author.]Colaborador(es): Shukla, Pratyoosh [author.]Tipo de material: TextoTextoSeries SpringerBriefs in Systems BiologyEditor: New York, NY : Springer New York : Imprint: Springer, 2012Descripción: VII, 44 p. 12 illus. in color. online resourceTipo de contenido: text Tipo de medio: computer Tipo de portador: online resourceISBN: 9781461447238Trabajos contenidos: SpringerLink (Online service)Tema(s): Life sciences | Biochemistry | Enzymes | Bioinformatics | Life Sciences | Bioinformatics | Enzymology | Protein ScienceFormatos físicos adicionales: Sin títuloClasificación CDD: 570.285 Clasificación LoC:QH324.2-324.25Recursos en línea: de clik aquí para ver el libro electrónico Springer eBooksResumen: This Brief reports on the interplay of an amino-acid mutation towards substrate which could lead to enhanced effects on mutant. These effects need to be given consideration in the engineering processes of protein stability and further exploration of such learning are required to provide novel indication for selection of an enzymes. There are very few reports showing such stable, energy efficient model towards improved protein function prediction screening in-silico structure based mutagenesis of xylanases from Thermomyces lanuginosus
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This Brief reports on the interplay of an amino-acid mutation towards substrate which could lead to enhanced effects on mutant. These effects need to be given consideration in the engineering processes of protein stability and further exploration of such learning are required to provide novel indication for selection of an enzymes. There are very few reports showing such stable, energy efficient model towards improved protein function prediction screening in-silico structure based mutagenesis of xylanases from Thermomyces lanuginosus

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