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来自……的漆酶1在……中的异源表达 。 (你提供的原文内容不完整,“from”和“in”后面缺少具体信息)

Heterologous Expression of Laccase1 from in .

作者信息

So Kum-Kang, Alvarado Fatima Alejandra Hernandez, Han Gui-Hwan, Kim Jeong-Won, Kim Tae-Geum, Kim Dae-Hyuk

机构信息

Institute for Molecular Biology and Genetics, Jeonbuk National University, Jeonju, Republic of Korea.

Department of Molecular Biology, Jeonbuk National University, Jeonju, Republic of Korea.

出版信息

Mycobiology. 2025 Jan 11;53(1):36-46. doi: 10.1080/12298093.2024.2439646. eCollection 2025.

Abstract

Laccases are enzymes capable of oxidizing phenolic compounds and are important tools in different industrial processes. Heterologous expression of laccases is of great interest in biotechnological applications but achieving high expression levels is challenging. Three different laccases have been identified in the chestnut blight fungus , among which a tannic acid-inducible laccase (laccase3) was successfully expressed using . To obtain high and stable expression of fungal laccases, we cloned the gene encoding an extracellular laccase (Laccase1) of into a yeast episomal vector, used the resulting vectors to transform , and optimized the culture conditions of the selected transformants for Laccase1 production. We also tested the significance of the signal peptide of Laccase1 in the secretion of expressed Laccase1 and compared it with the widely used rice amylase signal peptide. Among the four constructs tested using a yeast episomal vector, full-length Laccase1 containing an endogenous signal peptide, showed the highest laccase activity. Interestingly, the stability of the recombinant vector expressing laccase was lower than that of the mock transformant, suggesting a detrimental effect of the Laccase1-expressing vector on host cells. Thus, we optimized the culture conditions to produce Laccase1 and the resulting optimum culture conditions identified through one-factor-at-a -time (OFAT) were 2% sucrose; 3% yeast nitrogen base without amino acid; pH 5.0; and 30 °C. The laccase activity was found to be 2.2 U/mL in optimal culture conditions, resulting in a 6.5-fold increase compared to the conventional culture medium.

摘要

漆酶是能够氧化酚类化合物的酶,是不同工业过程中的重要工具。漆酶的异源表达在生物技术应用中备受关注,但实现高表达水平具有挑战性。在栗疫病菌中已鉴定出三种不同的漆酶,其中一种单宁酸诱导型漆酶(漆酶3)已成功使用……进行表达。为了获得真菌漆酶的高稳定表达,我们将编码……的细胞外漆酶(漆酶1)的基因克隆到酵母附加型载体中,使用所得载体转化……,并优化所选转化体用于漆酶1生产的培养条件。我们还测试了漆酶1信号肽在表达的漆酶1分泌中的重要性,并将其与广泛使用的水稻淀粉酶信号肽进行比较。在使用酵母附加型载体测试的四种构建体中,含有内源性信号肽的全长漆酶1显示出最高的漆酶活性。有趣的是,表达漆酶的重组载体的稳定性低于空载转化体,这表明表达漆酶1的载体对宿主细胞有有害影响。因此,我们优化了培养条件以生产漆酶1,通过一次一个因素(OFAT)确定的最佳培养条件为2%蔗糖;3%无氨基酸的酵母氮碱;pH 5.0;和30℃。在最佳培养条件下发现漆酶活性为2.2 U/mL,与传统培养基相比增加了6.5倍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8bb6/11780702/d2fd80aad45d/TMYB_A_2439646_F0001_C.jpg

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