IBBR Publications
Found 43 results
Filters: Keyword is Enzyme Stability [Clear All Filters]
Characterization of AlgMsp, an alginate lyase from Microbulbifer sp. 6532A. PLoS One. 2014 ;9(11):e112939.
. A new screening method for the directed evolution of thermostable bacteriolytic enzymes. J Vis Exp. 2012 ;(69).
. A modulator domain controlling thermal stability in the Group II chaperonins of Archaea. Arch Biochem Biophys. 2011 ;512(1):111-8.
. ATP hydrolysis and DNA binding confer thermostability on the MCM helicase. Biochemistry. 2009 ;48(11):2330-9.
. Chaperone action of a versatile small heat shock protein from Methanococcoides burtonii, a cold adapted archaeon. Proteins. 2009 ;75(2):275-81.
. Programmable assembly of a metabolic pathway enzyme in a pre-packaged reusable bioMEMS device. Lab Chip. 2008 ;8(3):420-30.
. Structure and lability of archaeal dehydroquinase. Acta Crystallogr Sect F Struct Biol Cryst Commun. 2008 ;64(Pt 10):886-92.
. Hydrogen-deuterium exchange in free and prodomain-complexed subtilisin. Biochemistry. 2007 ;46(3):652-8.
. Transglutaminase crosslinked gelatin as a tissue engineering scaffold. J Biomed Mater Res A. 2007 ;83(4):1039-46.
. Directed coevolution of stability and catalytic activity in calcium-free subtilisin. Biochemistry. 2005 ;44(9):3272-9.
. Engineering subtilisin into a fluoride-triggered processing protease useful for one-step protein purification. Biochemistry. 2004 ;43(46):14539-46.
. Extremely thermostable glutamate dehydrogenase (GDH) from the freshwater archaeon Thermococcus waiotapuensis: cloning and comparison with two marine hyperthermophilic GDHs. Extremophiles. 2002 ;6(2):151-9.
. Prodomains and protein folding catalysis. Chem Rev. 2002 ;102(12):4805-16.
. Cation-dependent stability of subtilisin. Biochemistry. 2001 ;40(35):10634-9.
. Enzyme conjugation to the polysaccharide chitosan: smart biocatalysts and biocatalytic hydrogels. Bioconjug Chem. 2001 ;12(2):301-6.
. Mechanism of pressure-induced thermostabilization of proteins: studies of glutamate dehydrogenases from the hyperthermophile Thermococcus litoralis. Protein Sci. 2001 ;10(9):1750-7.
. SNPs, protein structure, and disease. Hum Mutat. 2001 ;17(4):263-70.
. Stability and global fold of the mouse prohormone convertase 1 pro-domain. Biochemistry. 2001 ;40(18):5488-95.
. Stabilizing mutations and calcium-dependent stability of subtilisin. Biochemistry. 2001 ;40(35):10640-4.
. The crystal structure of adenylosuccinate lyase from Pyrobaculum aerophilum reveals an intracellular protein with three disulfide bonds. J Mol Biol. 2000 ;301(2):433-50.
. Protein engineering of subtilisin. Biochim Biophys Acta. 2000 ;1543(2):203-222.
. Rapid folding of calcium-free subtilisin by a stabilized pro-domain mutant. Biochemistry. 1999 ;38(26):8562-71.
. Effect on thermostability and catalytic activity of introducing disulfide bonds into Aspergillus awamori glucoamylase. Protein Eng. 1998 ;11(8):661-7.
. Insights into the molecular basis of thermal stability from the analysis of ion-pair networks in the glutamate dehydrogenase family. Eur J Biochem. 1998 ;255(2):336-46.
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