里氏木霉
纤维素酶
异源的
分解代谢抑制
突变体
生物
发起人
生物化学
基因
异源表达
心理压抑
分子生物学
基因表达
酶
重组DNA
作者
Zhihua Zhu,Gen Zou,Shunxing Chai,Meili Xiao,Yinmei Wang,Pingping Wang,Zhihua Zhou
标识
DOI:10.1038/s42003-024-06072-1
摘要
Abstract Protein methylation is a commonly posttranslational modification of transcriptional regulators to fine-tune protein function, however, whether this regulation strategy participates in the regulation of lignocellulase synthesis and secretion in Trichoderma reesei remains unexplored. Here, a putative protein methyltransferase ( Tr SAM) is screened from a T. reesei mutant with the ability to express heterologous β-glucosidase efficiently even under glucose repression. The deletion of its encoding gene trsam causes a significant increase of cellulase activities in all tested T. reesei strains, including transformants of expressing heterologous genes using cbh1 promotor. Further investigation confirms that Tr SAM interacts with the cellulase negative regulator ACE1 via its amino acid residue Arg 383 , which causes a decrease in the ACE1-DNA binding affinity. The enzyme activity of a T. reesei strain harboring ACE1 R383Q increases by 85.8%, whereas that of the strains with trsam or ace1 deletion increases by more than 100%. By contrast, the strain with ACE1 R383K shows no difference to the parent strain. Taken together, our results demonstrate that Tr SAM plays an important role in regulating the expression of cellulase and heterologous proteins initiated by cbh1 promotor through interacting with ACE1 R383 . Elimination and mutation of Tr SAM and its downstream ACE1 alleviate the carbon catabolite repression (CCR) in expressing cellulase and heterologous protein in varying degrees. This provides a new solution for the exquisite modification of T. reesei chassis.
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