Microbial Cell Factories (Dec 2011)

A thermostable GH45 endoglucanase from yeast: impact of its atypical multimodularity on activity

  • Couturier Marie,
  • Feliu Julia,
  • Haon Mireille,
  • Navarro David,
  • Lesage-Meessen Laurence,
  • Coutinho Pedro M,
  • Berrin Jean-Guy

DOI
https://doi.org/10.1186/1475-2859-10-103
Journal volume & issue
Vol. 10, no. 1
p. 103

Abstract

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Abstract Background The gene encoding an atypical multi-modular glycoside hydrolase family 45 endoglucanase bearing five different family 1 carbohydrate binding modules (CBM1), designated PpCel45A, was identified in the Pichia pastoris GS115 genome. Results PpCel45A (full-length open reading frame), and three derived constructs comprising (i) the catalytic module with its proximal CBM1, (ii) the catalytic module only, and (iii) the five CBM1 modules without catalytic module, were successfully expressed to high yields (up to 2 grams per litre of culture) in P. pastoris X33. Although the constructs containing the catalytic module displayed similar activities towards a range of glucans, comparison of their biochemical characteristics revealed striking differences. We observed a high thermostability of PpCel45A (Half life time of 6 h at 80°C), which decreased with the removal of CBMs and glycosylated linkers. However, both binding to crystalline cellulose and hydrolysis of crystalline cellulose and cellohexaose were substantially boosted by the presence of one CBM rather than five. Conclusions The present study has revealed the specific features of the first characterized endo β-1,4 glucanase from yeast, whose thermostability is promising for biotechnological applications related to the saccharification of lignocellulosic biomass such as consolidated bioprocessing.

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