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Sökning: id:"swepub:oai:research.chalmers.se:1504d62b-4748-4bd8-998d-e4ebca8e2494" > Mapping the Long-Ra...

Mapping the Long-Range Electron Transfer Route in Ligninolytic Peroxidases

Acebes, S. (författare)
Barcelona Supercomputing Center - Centro Nacional De Supercomputacion (BSC)
Ruiz-Duenas, F. J. (författare)
CSIC - Centro de Investigaciones Biologicas (CIB)
Toubes, M. (författare)
CSIC - Centro de Investigaciones Biologicas (CIB)
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Saez Jimenez, Veronica, 1985 (författare)
CSIC - Centro de Investigaciones Biologicas (CIB)
Perez-Boada, M. (författare)
CSIC - Centro de Investigaciones Biologicas (CIB)
Lucas, M. F. (författare)
Institucio Catalana de Recerca i Estudis Avancats (ICREA),Catalan Institution for Research and Advanced Studies (ICREA),Barcelona Supercomputing Center - Centro Nacional De Supercomputacion (BSC)
Martinez, A. T. (författare)
CSIC - Centro de Investigaciones Biologicas (CIB)
Guallar, V. (författare)
Institucio Catalana de Recerca i Estudis Avancats (ICREA),Catalan Institution for Research and Advanced Studies (ICREA),Barcelona Supercomputing Center - Centro Nacional De Supercomputacion (BSC)
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 (creator_code:org_t)
2017-04-14
2017
Engelska.
Ingår i: Journal of Physical Chemistry B. - : American Chemical Society (ACS). - 1520-5207 .- 1520-6106. ; 121:16, s. 3946-3954
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • Combining a computational analysis with site-directed mutagenesis, we have studied the long-range electron transfer pathway in versatile and lignin peroxidases, two enzymes of biotechnological interest that play a key role for fungal degradation of the bulky lignin molecule in plant biomass. The in silico study established two possible electron transfer routes starting at the surface tryptophan residue previously identified as responsible for oxidation of the bulky lignin polymer. Moreover, in both enzymes, a second buried tryptophan residue appears as a top electron transfer carrier, indicating the prevalence of one pathway. Site-directed mutagenesis of versatile peroxidase (from Pleurotus eryngii) allowed us to corroborate the computational analysis and the role played by the buried tryptophan (Trp244) and a neighbor phenylalanine residue (Phe198), together with the surface tryptophan, in the electron transfer. These three aromatic residues are highly conserved in all the sequences analyzed (up to a total of 169). The importance of the surface (Trp171) and buried (Trp251) tryptophan residues in lignin peroxidase has been also confirmed by directed mutagenesis of the Phanerochaete chrysosporium enzyme. Overall, the combined procedure identifies analogous electron transfer pathways in the long-range oxidation mechanism for both ligninolytic peroxidases, constituting a good example of how computational analysis avoids making extensive trial-error mutagenic experiments.

Ämnesord

NATURVETENSKAP  -- Biologi -- Strukturbiologi (hsv//swe)
NATURAL SCIENCES  -- Biological Sciences -- Structural Biology (hsv//eng)

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