Characterization of SLAC: A small laccase from Streptomyces coelicolor with unprecedented activity

Характеристика SLAC: малая лакказа из Streptomyces coelicolor с беспрецедентной активностью
Michael C. Machczynski, Erik Vijgenboom, Bart Samyn, Gerard W. Canters
2004-08-05

Streptomyces coelicolorfour-copper oxidaseparamagnetic NMRtrinuclear copper clustertwo-domain laccases
Laccases and other four-copper oxidases are usually constructed of three domains: Domains one and three house the copper sites, and the second domain often helps form a substrate-binding cleft. In contrast to this arrangement, the genome of Streptomyces coelicolor was found to encode a small, four-copper oxidase that lacks the second domain. This protein is representative of a new family of enzymes--the two-domain laccases. Disruption of the corresponding gene abrogates laccase activity in the growth media. We have recombinantly expressed this enzyme, called SLAC, in Escherichia coli and characterized it. The enzyme binds four copper ions/monomer, and UV-visible absorption and EPR measurements confirm that the conserved type 1 copper site and trinuclear cluster are intact. We also report the first known paramagnetic NMR spectrum for the trinuclear copper cluster of a protein from the laccase family. The enzyme is highly stable, retaining activity as a dimer in denaturing gels after boiling and SDS treatment. The activity of the enzyme against 2,6-dimethoxyphenol (DMP) peaks at an unprecedentedly high pH (9.4), whereas the activity against ferrocyanide decreases with pH. SLAC binds negatively charged substrates more tightly than positively charged or uncharged molecules.
1
Disrupting the SLAC gene eliminates laccase activity in Streptomyces coelicolor growth media, linking the enzyme to extracellular activity.
2
Recombinant SLAC binds four copper ions per monomer, with intact type 1 and trinuclear copper centers confirmed by spectroscopic measurements.
3
SLAC is a new two-domain laccase family member that lacks the second domain typical of four-copper oxidases.
4
SLAC oxidation of 2,6-dimethoxyphenol peaks at the unprecedentedly high pH of 9.4, and the enzyme preferentially binds negatively charged substrates.
5
SLAC remains active as a dimer after boiling and SDS treatment, demonstrating exceptional structural and functional stability.

SLAC, the two-domain small laccase (four-copper oxidase) from Streptomyces coelicolor

SLAC’s structural, spectroscopic, stability, catalytic pH-dependent, and substrate-binding properties

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2004-08-05
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Michael C. Machczynski
Erik Vijgenboom
Bart Samyn
Gerard W. Canters
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