| Literature DB >> 26540299 |
Hidekazu Iwakuma1, Yoshiyuki Koyama1, Ayako Miyachi1, Masashi Nasukawa1, Hitoshi Matsumoto1, Shuntaro Yano2, Jun Ogihara1, Takafumi Kasumi1.
Abstract
We obtained a novel glucose de-repressed mutant of Trichoderma reesei using disparity mutagenesis. A plasmid containing DNA polymerase δ lacking proofreading activity, and AMAI, an autonomously replicating sequence was introduced into T. reesei ATCC66589. The rate of mutation evaluated with 5-fluoroorotic acid resistance was approximately 30-fold higher than that obtained by UV irradiation. The transformants harboring incompetent DNA polymerase δ were then selected on 2-deoxyglucose agar plates with hygromycin B. The pNP-lactoside hydrolyzing activities of mutants were 2 to 5-fold higher than the parent in liquid medium containing glucose. Notably, the amino acid sequence of cre1, a key gene involved in glucose repression, was identical in the mutant and parent strains, and further, the cre1 expression levels was not abolished in the mutant. Taken together, these results demonstrate that the strains of T. reesei generated by disparity mutagenesis are glucose de-repressed variants that contain mutations in yet-unidentified factors other than cre1.Entities:
Keywords: Trichoderma reesei; cellulase; cre1; disparity mutagenesis; glucose de-repression
Mesh:
Substances:
Year: 2015 PMID: 26540299 DOI: 10.1080/09168451.2015.1104236
Source DB: PubMed Journal: Biosci Biotechnol Biochem ISSN: 0916-8451 Impact factor: 2.043