Inverse relationship between chitobiase and transglycosylation activities of chitinase-D from Serratia proteamaculans revealed by mutational and biophysical analysesOpen Access

Madhuprakash J., Bobbili K., Moerschbacher B., Singh T., Swamy M., Podile A.

Forschungsartikel (Zeitschrift) | Peer reviewed

Zusammenfassung

Serratia proteamaculans chitinase-D (SpChiD) has a unique combination of hydrolytic and transglycosylation (TG) activities. The TG activity of SpChiD can be used for large-scale production of chito-oligosaccharides (CHOS). The multiple activities (hydrolytic and/or chitobiase activities and TG) of SpChiD appear to be strongly influenced by the substrate-binding cleft. Here, we report the unique property of SpChiD substrate-binding cleft, wherein, the residues Tyr28, Val35 and Thr36 control chitobiase activity and the residues Trp160 and Trp290 are crucial for TG activity. Mutants with reduced (V35G and T36G/F) or no (SpChiDIΔ 30-42 and Y28A) chitobiase activity produced higher amounts of the quantifiable even-chain TG product with degree of polymerization (DP)-6, indicating that the chitobiase and TG activities are inversely related. In addition to its unprecedented catalytic properties, unlike other chitinases, the single modular SpChiD showed dual unfolding transitions. Ligand-induced thermal stability studies with the catalytically inactive mutant of SpChiD (E153A) showed that the transition temperature increased upon binding of CHOS with DP2-6. Isothermal titration calorimetry experiments revealed the exceptionally high binding affinities for E153A to CHOS with DP2-6. These observations strongly support that the architecture of SpChiD substrate-binding cleft adopted to control chitobiase and TG activities, in addition to usual chitinase-mediated hydrolysis.

Details zur Publikation

FachzeitschriftScientific Reports (Sci. Rep.)
Jahrgang / Bandnr. / Volume5
Ausgabe / Heftnr. / Issuenull
StatusVeröffentlicht
Veröffentlichungsjahr2015
Sprache, in der die Publikation verfasst istEnglisch

Autor*innen der Universität Münster

Moerschbacher, Bruno

Projekte, aus denen die Publikation entstanden ist

Laufzeit: 01.10.2013 - 30.09.2017
Gefördert durch: EU FP 7 - Collaborative Project
Art des Projekts: EU-Projekt koordiniert an der Universität Münster
Laufzeit: 10.03.2009 - 31.03.2014 | 1. Förderperiode
Gefördert durch: DFG - Internationales Graduiertenkolleg
Art des Projekts: DFG-Hauptprojekt koordiniert an der Universität Münster