Expression and Characterization of Laccase Lac1 from Coriolopsis trogii Strain Mafic-2001 in Pichia pastoris and Its Degradation of Lignin. 2023

Chengling Bao, and Yajing Liu, and Feiyu Li, and Heng Cao, and Bing Dong, and Yunhe Cao
State Key Laboratory of Animal Nutrition, College of Animal Science and Technology, China Agricultural University, Beijing, 100193, People's Republic of China.

The laccase gene (Lac1) was cloned from Coriolopsis trogii strain Mafic-2001. Full-length sequence of Lac1 containing 11 exons and 10 introns is composed of 2140 nucleotides (nts). mRNA of Lac1 encoded for a protein of 517 aa. Nucleotide sequence of the laccase was optimized and expressed in Pichia pastoris X-33. SDS-PAGE analysis showed that the molecular weight of the purified recombinant laccase rLac1 was about 70 kDa. The optimum temperature and pH of rLac1 were 40 ℃ and 3.0, respectively. rLac1 showed high residual activity (90%) in the solutions after 1 h incubation at the pH ranging from 2.5 to 8.0. rLac1 maintained over 60% of laccase activity at the temperatures ranging from 20 to 60 °C, and kept higher than 50% of its activity at 40 °C for 2 h. The activity of rLac1 was promoted by Cu2+ and inhibited by Fe2+. Under optimal conditions, lignin degradation rates of rLac1 on the substrates of rice straw, corn stover, and palm kernel cake were 50.24%, 55.49%, and 24.43% (the lignin contents of substrates untreated with rLac1 were 100%), respectively. Treated with rLac1, the structures of agricultural residues (rice straw, corn stover, and palm kernel cake) were obviously loosened which was reflected by the analysis of scanning electron microscopy and Fourier transform infrared spectroscopy. Based on the specific activity of rLac1 on the degradation of lignin, rLac1 from Coriolopsis trogii strain Mafic-2001 has the potential for in-depth utilization of agricultural residues.

UI MeSH Term Description Entries
D008031 Lignin The most abundant natural aromatic organic polymer found in all vascular plants. Lignin together with cellulose and hemicellulose are the major cell wall components of the fibers of all wood and grass species. Lignin is composed of coniferyl, p-coumaryl, and sinapyl alcohols in varying ratios in different plant species. (From Merck Index, 11th ed) Lignins
D010843 Pichia Yeast-like ascomycetous fungi of the family Saccharomycetaceae, order SACCHAROMYCETALES isolated from exuded tree sap. Hansenula,Hansenulas,Pichias
D003001 Cloning, Molecular The insertion of recombinant DNA molecules from prokaryotic and/or eukaryotic sources into a replicating vehicle, such as a plasmid or virus vector, and the introduction of the resultant hybrid molecules into recipient cells without altering the viability of those cells. Molecular Cloning
D042845 Laccase A copper-containing oxidoreductase enzyme that catalyzes the oxidation of 4-benzenediol to 4-benzosemiquinone. It also has activity towards a variety of O-quinols and P-quinols. It primarily found in FUNGI and is involved in LIGNIN degradation, pigment biosynthesis and detoxification of lignin-derived products. Laccase B,Laccase I,Laccase II,Laccase III,Urishiol Oxidase,p-Diphenol Oxidase,Oxidase, Urishiol,Oxidase, p-Diphenol,p Diphenol Oxidase

Related Publications

Chengling Bao, and Yajing Liu, and Feiyu Li, and Heng Cao, and Bing Dong, and Yunhe Cao
April 2020, Microorganisms,
Chengling Bao, and Yajing Liu, and Feiyu Li, and Heng Cao, and Bing Dong, and Yunhe Cao
August 2017, Protein expression and purification,
Chengling Bao, and Yajing Liu, and Feiyu Li, and Heng Cao, and Bing Dong, and Yunhe Cao
April 2013, Applied biochemistry and biotechnology,
Chengling Bao, and Yajing Liu, and Feiyu Li, and Heng Cao, and Bing Dong, and Yunhe Cao
April 2012, Molecular biology reports,
Chengling Bao, and Yajing Liu, and Feiyu Li, and Heng Cao, and Bing Dong, and Yunhe Cao
October 2006, Microbial cell factories,
Chengling Bao, and Yajing Liu, and Feiyu Li, and Heng Cao, and Bing Dong, and Yunhe Cao
January 2014, Prikladnaia biokhimiia i mikrobiologiia,
Chengling Bao, and Yajing Liu, and Feiyu Li, and Heng Cao, and Bing Dong, and Yunhe Cao
August 2015, Journal of microbiology and biotechnology,
Chengling Bao, and Yajing Liu, and Feiyu Li, and Heng Cao, and Bing Dong, and Yunhe Cao
October 2012, BMC biotechnology,
Chengling Bao, and Yajing Liu, and Feiyu Li, and Heng Cao, and Bing Dong, and Yunhe Cao
April 2013, Bioresource technology,
Chengling Bao, and Yajing Liu, and Feiyu Li, and Heng Cao, and Bing Dong, and Yunhe Cao
April 2014, World journal of microbiology & biotechnology,
Copied contents to your clipboard!