Akram Fatima, Ashraf Sadia, Haq Ikram Ul, Shah Fatima Iftikhar, Aqeel Amna
Institute of Industrial Biotechnology, Government College University, Lahore, 54000, Pakistan.
Pakistan Academy of Sciences, Islamabad, Pakistan.
Appl Biochem Biotechnol. 2022 May;194(5):2336-2356. doi: 10.1007/s12010-021-03781-9. Epub 2022 Jan 13.
Laccases are blue multicopper oxidases that oxidize a wide range of phenolic as well as non-phenolic substrates in the presence or absence of mediators. They occur in various species of bacteria, fungi, insects, and plants; bacterial laccases show high substrate specificity. Bacteria produce these enzymes either extracellularly or intracellularly and exhibit stability to a wide range of pH and temperature. Therefore, they are suitable for various industrial processes such as food, textile, and paper and pulp industry. They are also valuable for producing biofuels, pharmaceuticals, biosensors, and degradation of various environmental pollutants and xenobiotics compounds. Since bacterial laccases are more versatile in the sense of nutritional needs and ecological factors, their use can provide a promising solution to various problems related to industry and the field of biotechnology. However, there is a need for a thorough understanding of the chemistry and activity of bacterial laccases to enable their full potential use in bioremediation and biofuel production.
漆酶是蓝色多铜氧化酶,在有或没有介质的情况下,能氧化多种酚类和非酚类底物。它们存在于细菌、真菌、昆虫和植物的各种物种中;细菌漆酶表现出高底物特异性。细菌在细胞外或细胞内产生这些酶,并对广泛的pH和温度表现出稳定性。因此,它们适用于各种工业过程,如食品、纺织以及造纸和纸浆工业。它们在生产生物燃料、药物、生物传感器以及降解各种环境污染物和异生物质化合物方面也很有价值。由于细菌漆酶在营养需求和生态因素方面更具通用性,它们的使用可以为与工业和生物技术领域相关的各种问题提供一个有前景的解决方案。然而,需要全面了解细菌漆酶的化学性质和活性,以便使其在生物修复和生物燃料生产中充分发挥潜力。