Literature DB >> 20549574

Catalytic properties of two Rhizopus oryzae 99-880 glucoamylase enzymes without starch binding domains expressed in Pichia pastoris.

Jeffrey A Mertens1, Jay D Braker, Douglas B Jordan.   

Abstract

Catalytic properties of two glucoamylases, AmyC and AmyD, without starch binding domains from Rhizopus oryzae strain 99-880 are determined using heterologously expressed enzyme purified to homogeneity. AmyC and AmyD demonstrate pH optima of 5.5 and 6.0, respectively, nearly one unit higher than the Rhizopus AmyA glucoamylase enzyme. Optimal initial activities are at 60 and 50 °C for AmyC and AmyD, respectively. Inactivation of both enzymes occurs at 50 °C following 30 min pre-incubation. The two enzymes demonstrate substantially slower catalytic rates toward soluble starch relative to AmyA. AmyC has similar k(cat) and K(m) for oligosaccharides to other Rhizopus and Aspergillus glucoamylases; however, the enzyme has a 2-fold lower K(m) (maltose) . AmyD has a 3-fold higher K(m) and lower k(cat) for maltooligosaccharides than AmyC and other glucoamylases. AmyC (but not AmyD) exhibits substrate inhibition. K(i) for substrate inhibition decreases with increasing length of the oligosaccharides. Data from pre-steady-state binding of AmyC to maltose and maltotriose and pre-steady-state to steady-state catalytic turnover experiments of AmyC acting on maltotriose were used to interrogate models of substrate inhibition. In the preferred model, AmyC accumulates an enzyme-maltose-maltotriose dead-end complex in the steady state.

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Year:  2010        PMID: 20549574     DOI: 10.1007/s12010-010-8994-0

Source DB:  PubMed          Journal:  Appl Biochem Biotechnol        ISSN: 0273-2289            Impact factor:   2.926


  4 in total

1.  Expression and characterization of fifteen Rhizopus oryzae 99-880 polygalacturonase enzymes in Pichia pastoris.

Authors:  Jeffrey A Mertens; Michael J Bowman
Journal:  Curr Microbiol       Date:  2010-12-15       Impact factor: 2.188

2.  Heterologous expression and characterization of processing α-glucosidase I from Aspergillus brasiliensis ATCC 9642.

Authors:  Takatsugu Miyazaki; Yuji Matsumoto; Kana Matsuda; Yuma Kurakata; Ichiro Matsuo; Yukishige Ito; Atsushi Nishikawa; Takashi Tonozuka
Journal:  Glycoconj J       Date:  2011-10-22       Impact factor: 2.916

3.  Identification, molecular and biochemical characterization of a novel thermoactive and thermostable glucoamylase from Thermoanaerobacter ethanolicus.

Authors:  Natael M Wayllace; Nicolas Hedín; María V Busi; Diego F Gomez-Casati
Journal:  Biotechnol Lett       Date:  2022-08-23       Impact factor: 2.716

4.  Glucoamylase of Caulobacter crescentus CB15: cloning and expression in Escherichia coli and functional identification.

Authors:  Masayoshi Sakaguchi; Yudai Matsushima; Toshiyuki Nankumo; Junichi Seino; Satoshi Miyakawa; Shotaro Honda; Yasusato Sugahara; Fumitaka Oyama; Masao Kawakita
Journal:  AMB Express       Date:  2014-01-27       Impact factor: 3.298

  4 in total

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