数字农科院2.0

Improving the Properties of Laccase Through Heterologous Expression and Protein Engineering

文献类型: 外文期刊

作者: Guoqiang Guan;Beidian Li;Ling Xu;Jingya Qian;Bin Zou;Shuhao Huo;Zhongyang Ding;Kai Cui;Feng Wang

作者机构:

关键词: bacteria;enzyme engineering;fungi;heterologous expression;laccase

期刊名称: Microorganisms

ISSN: 2076-2607

年卷期: 2025 年 13 卷 6 期

页码:

收录情况: SCIE(2025版)

摘要: Laccase, a member of the blue multicopper oxidase family, is widely distributed across diverse taxonomic groups, including fungi, bacteria, plants, and insects. This enzyme drives biocatalytic processes through the oxidation of phenolic compounds, aromatic amines, and lignin derivatives, underpinning its significant potential in the food industry, cosmetics, and environmental remediation. However, wild-type laccases face critical limitations, such as low catalytic efficiency, insufficient expression yields, and poor stability. To address these bottlenecks, this review systematically examines optimization strategies for heterologous laccase expression by fungal and bacterial systems. Additionally, we discuss protein engineering for laccase modification, with a focus on the structural basis and active-site redesign. The comprehensive analysis presented herein provides strategic suggestions for advancing laccase engineering, ultimately establishing a theoretical framework for developing high-efficiency, low-cost engineered variants for large-scale biomanufacturing and green chemistry applications.

分类号:

  • 相关文献

[1]Hyperoxic Gas Conditioning Enhanced Microbial Wood Degradation in a Meso-thermophilic Composting Environment. Li, Anran,van Erven, Gijs,Huang, Sijie,Sigmund, Gabriel,Doppelmayer, Kevin,Pignitter, Marc,Buisman, Cees J. N.,Chen, Wei-Shan. 2026

[2]Effects of the transgenic CrylAc and CpTI insect-resistant cotton SGK321 on rhizosphere soil microorganism populations in northern China. Xie, M.,Peng, D. L.. 2014

[3]Antagonistic effect of protein extracts from Streptococcus sanguinis on pathogenic bacteria and fungi of the oral cavity. Ma, Shengli,Li, Hui,Yan, Chuang,Wang, Dan,Li, Haiqing,Xia, Xue,Dong, Xue,Zhao, Yingnan,Sun, Tingting,Hu, Pengfei,Guan, Weijun. 2014

[4]Changes in the composition and diversity of topsoil bacterial, archaeal and fungal communities after 22 years conventional and no-tillage managements in Northern China. Dong, Wenyi,Liu, Enke,Yan, Changrong,Zhang, Hengheng,Zhang, Yanqing,Dong, Wenyi,Liu, Enke,Yan, Changrong,Zhang, Hengheng,Zhang, Yanqing.

[5]Climate change and human activities altered the diversity and composition of soil microbial community in alpine grasslands of the Qinghai-Tibetan Plateau. Zhang, Yong,Dong, Shikui,Liu, Shiliang,Dong, Shikui,Gao, Qingzhu,Ganjurjav, Hasbagan,Wang, Xuexia,Zhou, Huakun.

[6]Coupling Between the Responses of Plants, Soil, and Microorganisms Following Grazing Exclusion in an Overgrazed Grassland. Zhen Wang,Xiliang Li,Baoming Ji,Paul C. Struik,Ke Jin,Shiming Tang. 2021

[7]Effects of phthalate esters on soil microbial community under different planting patterns in Northern China: Case study of Hebei Province. Zhou B.,Zhao L.,Sun Y.,Li X.,Weng L.,Xue Y.,Li Y.. 2022

[8]Application of Atmospheric and Room-Temperature Plasma (ARTP) to Microbial Breeding. Qin Zhang,Renyun Miao,Rencai Feng,Junjie Yan,Tao Wang,Ying Gan,Jin Zhao,Junbin Lin,Bingcheng Gan. 2023

[9]Distinct distribution patterns and functional potentials of rare and abundant microorganisms between plastisphere and soils. Yongbin Li,Wenlong Gao,Caixia Wang,Miao Gao. 2023

[10]Root traits and soil nutrient and carbon availability drive soil microbial diversity and composition in a northern temperate forest. Liu, Bitao,Han, Fei,Ning, Peng,Li, Hongbo,Rengel, Zed. 2022

[11]Impact of N application rate on tea (Camellia sinensis) growth and soil bacterial and fungi communities. Tang, Sheng,Zhou, Jingjie,Pan, Wankun,Tang, Rui,Ma, Qingxu,Xu, Meng,Qi, Tong,Ma, Zhengbo,Fu, Haoran,Wu, Lianghuan. 2022

[12]Maize residue retention shapes soil microbial communities and co-occurrence networks upon freeze-thawing cycles. Yang Yu,Quankuan Guo,Shuhan Zhang,Yupeng Guan,Nana Jiang,Yang Zhang,Rong Mao,Keyu Bai,Salimjan Buriyev,Nuriddin Samatov,Ximei Zhang,Wei Yang. 2024

[13]Effects of Salinity Accumulation on Physical, Chemical, and Microbial Properties of Soil under Rural Domestic Sewage Irrigation. Weihan Wang,Dandan Zhang,Hao Kong,Gengtao Zhang,Feng Shen,Zhiping Huang. 2024

[14]Taxonomic turnover dominates changes in soil microbial communities and functions in response to wildfire in subtropical forest. Ziyue Shi,Yaru Chen,Aogui Li,Chao Wang,Mengjun Hu,Weixing Liu. 2024

[15]Fire alters soil bacterial and fungal communities and intensifies seasonal variation in subtropical forest ecosystem. Ziyue Shi,Yaru Chen,Aogui Li,Mengjun Hu,Weixing Liu. 2024

[16]Stable soil moisture promotes shoot performance and shapes the root-rhizosphere microbiome. Dichuan Liu,Zhuan Wang,Guolong Zhu,Aiguo Xu,Renlian Zhang,Ray Bryant,Patrick J. Drohan,Huaiyu Long,Viola Willemsen. 2025

[17]Regulation on microbial composition,serotonergic synapse, and apoptotic signaling pathway by extracts fromSonchus brachyotus DC. (SBE) to improve ethanol-induced acute oxidative stress in mice. Yang Juan,Tian Wei,Zhou Weiwei,Shi dongdong,Zhang Mengjie,Wang Xuefeng,Li Xianglong,Sun Yuelong,Zhao Jinhua,Li Xiumei. 2025

[18]ExpressionoflaccasegenefromwhiterotfungusinPichiapastoriscanenhancetheresistanceofyeasttoH-2O_2-mediatedoxidativestressbystimulatingthegIutathione-basedantioxidativesystem. 杨洋,范芳芳,卓睿,马富英,江木兰,张晓昱. 2012

[19]硅酸盐细菌PCR鉴定方法的建立和应用. 曹凤明,关大伟,葛一凡,姜昕,沈德龙,李俊. 2010

[20]Fusion of a proline-rich oligopeptide to the C-terminus of a ruminal xylanase improves catalytic efficiency. Dong R.,Liu X.,Wang Y.,Qin X.,Wang X.,Zhang H.,Wang Y.,Luo H.,Yao B.,Bai Y.,Tu T.. 2022

作者其他论文 更多>>