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Computational Strategies Towards Improved Protein Function Prophecy of Xylanases from Thermomyces lanuginosus

by Karthik, MVK.
Authors: Shukla, Pratyoosh.%author. | SpringerLink (Online service) Series: SpringerBriefs in Systems Biology, 2193-4746 Physical details: VII, 44 p. 12 illus. in color. online resource. ISBN: 1461447232 Subject(s): Life sciences. | Biochemistry. | Enzymes. | Bioinformatics. | Life Sciences. | Bioinformatics. | Enzymology. | Protein Science.
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E-Book E-Book AUM Main Library 570.285 (Browse Shelf) Not for loan

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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