We have previously shown that the hyperthermophilic glycosynthase from Sulfolobus solfataricus (Ssbeta-glyE387G) can promote the synthesis of branched oligosaccharides from activated beta-glycosides, at pH 6.5, in the presence of 2 M sodium formate as an external nucleophile. In an effort to increase the synthetic potential of hyperthermophilic glycosynthases, we report a new method to reactivate the Ssbeta-glyE387G glycosynthase and two novel mutants in the nucleophile of the beta-glycosidases from the hyperthermophilic Archaea Thermosphaera aggregans (Tabeta-gly) and Pyrococcus furiosus (CelB). We describe here that, at pH 3.0 and low concentrations of sodium formate buffer, the three hyperthermophilic glycosynthases show k(cat) values similar to those of the wild-type enzymes and 17-fold higher than those observed at the usual reactivation conditions in 2 M sodium formate at pH 6.5. Moreover, at acidic pH the three reactivated mutants have wide substrate specificity and improved efficiency in the synthetic reaction. The data reported suggest that the reactivation conditions modify the ionization state of the residue acting as an acid/base catalyst. This new reactivation method can be of general applicability on hyperthermophilic glycosynthases whose intrinsic stability allows their exploitation as synthetic tools at low pH.

Activity of hyperthermophilic glycosynthases is significantly enhanced at acidic pH.

Giordano A;Moracci M
2003

Abstract

We have previously shown that the hyperthermophilic glycosynthase from Sulfolobus solfataricus (Ssbeta-glyE387G) can promote the synthesis of branched oligosaccharides from activated beta-glycosides, at pH 6.5, in the presence of 2 M sodium formate as an external nucleophile. In an effort to increase the synthetic potential of hyperthermophilic glycosynthases, we report a new method to reactivate the Ssbeta-glyE387G glycosynthase and two novel mutants in the nucleophile of the beta-glycosidases from the hyperthermophilic Archaea Thermosphaera aggregans (Tabeta-gly) and Pyrococcus furiosus (CelB). We describe here that, at pH 3.0 and low concentrations of sodium formate buffer, the three hyperthermophilic glycosynthases show k(cat) values similar to those of the wild-type enzymes and 17-fold higher than those observed at the usual reactivation conditions in 2 M sodium formate at pH 6.5. Moreover, at acidic pH the three reactivated mutants have wide substrate specificity and improved efficiency in the synthetic reaction. The data reported suggest that the reactivation conditions modify the ionization state of the residue acting as an acid/base catalyst. This new reactivation method can be of general applicability on hyperthermophilic glycosynthases whose intrinsic stability allows their exploitation as synthetic tools at low pH.
2003
Istituto di Biochimica delle Proteine - IBP - Sede Napoli
42
8484
8493
Glicosintasi
Meccanismo di reazione
Sintesi oligosaccaridi
Glicosidasi termofile
Archaea
Questo lavoro espande le possibili applicazioni delle glicosintasi da ipertermofili, dimostrando che in particolari condizioni (estremi di pH, temperatura e organici) essi rappresentano le sole reali alternative biologiche alla sintesi chimica. Questi risultati sono apparsi su “Biochemistry”, che è una delle più prestigiose riviste internazionali, ed è largamente diffusa nei laboratori internazionali di biochimica e biologia molecolare. I risultati presentati in questo prodotto sono stati anche oggetto della comunicazione orale di Marco Moracci “Engineering Structure and Function of Glycosyl Hydrolases from Hyperthermophiles” nell’ambito del convegno “Archaea: Ecology, Metabolism & Molecular Biology” della Gordon Research Conference presso la Proctor academy Andover USA, 3-8 agosto 2003. Impact Factor 3.922.
7
info:eu-repo/semantics/article
262
Perugino, G; Trincone, A; Giordano, A; van der Oost, J; Kaper, T; Rossi, M; Moracci, M
01 Contributo su Rivista::01.01 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/122425
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