4.2 Article

Escherichia coli expression and in vitro activation of a unique ligninolytic peroxidase that has a catalytic tyrosine residue

期刊

PROTEIN EXPRESSION AND PURIFICATION
卷 68, 期 2, 页码 208-214

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.pep.2009.06.003

关键词

Lignin peroxidase; Trametes cervina; Heme protein; Escherichia coli expression; In vitro activation; Veratryl alcohol

资金

  1. Spanish Projects [BIO2007-65890-C02-01, BIO2008-01533]
  2. European Union [NMP2-CT-2006-026456]
  3. Spanish MICINN

向作者/读者索取更多资源

Heterologous expression of Trametes cervina lignin peroxidase (UP), the only basidiomycete peroxidase that has a catalytic tyrosine, was investigated. The mature UP cDNA was cloned into the pET vector and used to transform Escherichia coli. Recombinant UP protein accumulated in inclusion bodies as an inactive form. Refolding conditions for its in vitro activation-including incorporation of heme and structural Ca2+ ions, and formation of disulfide bridges-were optimized taking as a starting point those reported for other plant and fungal peroxidases. The absorption spectrum of the refolded enzyme was identical to that of wild UP from T cervina suggesting that it was properly folded. The enzyme was able to oxidize 1,4-dimethoxybenzene and ferrocytochrome c confirming its high redox potential and ability to oxidize large substrates. However, during oxidation of veratryl alcohol (VA), the physiological UP substrate, an unexpected initial lag period was observed. Possible modification of the enzyme was investigated by incubating it with H2O2 and VA (for 30 min before dialysis). The pretreated enzyme showed normal kinetics traces for VA oxidation, without the initial lag previously observed. Steady-state kinetics of the pretreated UP were almost the same as the recombinant enzyme before the pretreatment. Moreover, the catalytic constant (k(cat)) for VA oxidation was comparable to that of wild LiP from T. cervina, although the Michaelis-Menten constant (K-m) was 8-fold higher. The present heterologous expression system provides a valuable tool to investigate structure-function relationships, and autocatalytic activation of the unique T. cervina LiP. (C) 2009 Elsevier Inc. All rights reserved.

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