4.6 Article

Characterization of an Alkali- and Halide-Resistant Laccase Expressed in E-coli: CotA from Bacillus clausii

Journal

PLOS ONE
Volume 9, Issue 6, Pages -

Publisher

PUBLIC LIBRARY SCIENCE
DOI: 10.1371/journal.pone.0099402

Keywords

-

Funding

  1. Danish Council for Independent Research | Technology and Production Sciences (FTP) [10-082488]

Ask authors/readers for more resources

The limitations of fungal laccases at higher pH and salt concentrations have intensified the search for new extremophilic bacterial laccases. We report the cloning, expression, and characterization of the bacterial cotA from Bacillus clausii, a supposed alkalophilic ortholog of cotA from B. subtilis. Both laccases were expressed in E. coli strain BL21(DE3) and characterized fully in parallel for strict benchmarking. We report activity on ABTS, SGZ, DMP, caffeic acid, promazine, phenyl hydrazine, tannic acid, and bilirubin at variable pH. Whereas ABTS, promazine, and phenyl hydrazine activities vs. pH were similar, the activity of B. clausii cotA was shifted upwards by similar to 0.5-2 pH units for the simple phenolic substrates DMP, SGZ, and caffeic acid. This shift is not due to substrate affinity (K-M) but to pH dependence of catalytic turnover: The k(cat) of B. clausii cotA was 1 s(-1) at pH 6 and 5 s(-1) at pH 8 in contrast to 6 s(-1) at pH 6 and 2 s(-1) at pH 8 for of B. subtilis cotA. Overall, k(cat)/K-M was 10-fold higher for B. subtilis cotA at pH(opt). While both proteins were heat activated, activation increased with pH and was larger in cotA from B. clausii. NaCl inhibited activity at acidic pH, but not up to 500-700 mM NaCl in alkaline pH, a further advantage of the alkali regime in laccase applications. The B. clausii cotA had similar to 20 minutes half-life at 80 degrees C, less than the similar to 50 minutes at 80 degrees C for cotA from B. subtilis. While cotA from B. subtilis had optimal stability at pH similar to 8, the cotA from B. clausii displayed higher combined salt-and alkali-resistance. This resistance is possibly caused by two substitutions (S427Q and V110E) that could repel anions to reduce anion-copper interactions at the expense of catalytic proficiency, a trade-off of potential relevance to laccase optimization.

Authors

I am an author on this paper
Click your name to claim this paper and add it to your profile.

Reviews

Primary Rating

4.6
Not enough ratings

Secondary Ratings

Novelty
-
Significance
-
Scientific rigor
-
Rate this paper

Recommended

No Data Available
No Data Available