生物化学
木聚糖酶
转录因子
酶
纤维素酶
氨基酸
生物合成
新陈代谢
化学
细胞外
抄写(语言学)
转录组
生物
调节器
蛋白质生物合成
代谢途径
基因表达
调节基因
基因
细胞生物学
基因表达调控
次生代谢
氨基酸合成
酶分析
转录调控
真菌蛋白
作者
Xiaozan Dai,Guanchen Liu,Quan Zhang,Chao Zhu,Huipeng Gao,Youduo Wu,Chi Cheng,Hailong Lin,Chuang Xue
标识
DOI:10.1021/acs.jafc.5c07274
摘要
The fungus Trichoderma reesei is widely employed for industrial enzyme production. However, the mechanisms coordinating enzyme production with amino acid biosynthesis and metabolism remain incompletely understood. Here, we characterized a novel C 2 H 2 zinc finger transcription factor, TrTRC-1, in T. reesei . The deletion of TrTRC-1 enhanced cellulase, xylanase, and extracellular protein production by 9.8–32.4% compared to that in T. reesei Rut C30, while simultaneously stimulating mycelial growth and conidiation. Transcriptomic analysis revealed that the deletion of TrTRC-1 significantly altered the expression of genes associated with primary metabolic pathways, amino acid biosynthesis/metabolism, and carbohydrate-active enzymes. In a 5 L bioreactor, T. reesei Δ TrTRC -1 achieved an FPase activity of 17.35 IU/mL and exhibited robust saccharification efficiency on lignocellulosic biomass. These findings demonstrate that TrTRC-1 serves as a multifunctional regulator in T. reesei, advancing our understanding of the regulatory network that balances enzyme production with cellular metabolism and providing a strategic basis for constructing microbial chassis strains with industrial application prospects.
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