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Active-site- and substrate-specificity of Thermoanaerobium Tok6-B1 pullulanase.

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dc.contributor.author Plant, Adrian R.
dc.contributor.author Clemens, Robyn M.
dc.contributor.author Morgan, Hugh W.
dc.contributor.author Daniel, Roy M.
dc.date.accessioned 2010-09-06T03:28:28Z
dc.date.available 2010-09-06T03:28:28Z
dc.date.issued 1987
dc.identifier.citation Plant, A.R., Clemens, R.M., Morgan, H.W. & Daniel, R.M. (1987). Active-site- and substrate-specificity of Thermoanaerobium Tok6-B1 pullulanase. Biochemical Journal, 246(2), 537-541. en_NZ
dc.identifier.uri http://hdl.handle.net/10289/4536
dc.description.abstract Thermoanaerobium Tok6-B1 pullulanase (EC 3.2.1.41) was active on alpha 1-6-glucosidic linkages of pullulan, amylopectin and glycogen and the alpha 1-4 linkages of amylose, amylopectin and glycogen but not of pullulan. Hydrolysis of short-chain-length malto-oligosaccharides (seven or fewer glucose residues) yielded maltose as product. Pullulan hydrolysis was pH-dependent and a plot of log(V/Km) versus pH implied a carboxy group with pKa 4.3 at the active site. Modification with 1-(3-dimethylaminopropyl)-3-ethylcarbodi-imide (EDAC) confirmed this view, and analysis of the order of reaction and inactivation kinetics suggested the presence of a single carboxy group at a catalytic centre of the active site. EDAC-mediated inhibition of pullulan alpha 1-6-bond hydrolysis was relieved by amylose or pullulan. Similarly both pullulan and amylose protected the activity directed at alpha 1-4 bonds of amylose from EDAC inhibition. When both amylose and pullulan were simultaneously present, the observed rate of product formation closely fitted a kinetic model in which both substrates were hydrolysed at the same active site. en_NZ
dc.language.iso en
dc.relation.uri http://www.biochemj.org/bj/246/bj2460537.htm en_NZ
dc.subject biology en_NZ
dc.title Active-site- and substrate-specificity of Thermoanaerobium Tok6-B1 pullulanase. en_NZ
dc.type Journal Article en_NZ


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