4.7 Article

Achieving efficient protein expression in Trichoderma reesei by using strong constitutive promoters

期刊

MICROBIAL CELL FACTORIES
卷 11, 期 -, 页码 -

出版社

BMC
DOI: 10.1186/1475-2859-11-84

关键词

Trichoderma Reesei; Xylanase; Pyruvate decarboxylase; Enolase; Quantitative real-time PCR

资金

  1. National Natural Science Foundation of China [31070044]
  2. Shenzhen Municipal Science and Technology Basic Research Program [JC201005280559A]
  3. Shenzhen Municipal Science and Technology key projects of Basic Research Program [JC201005250041A]

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Backgrounds: The fungus Trichoderma reesei is an important workhorse for expression of homologous or heterologous genes, and the inducible cbh1 promoter is generally used. However, constitutive expression is more preferable in some cases than inducible expression that leads to production of unwanted cellulase components. In this work, constitutive promoters of T. reesei were screened and successfully used for high level homologous expression of xylanase II. Results: The transcriptional profiles of 13 key genes that participate in glucose metabolism in T. reesei were analyzed by quantitative real-time reverse-transcription polymerase chain reaction (RT-qPCR). The results indicated that the mRNA levels of pdc (encoding pyruvate decarboxylase) and eno (encoding enolase) genes were much higher than other genes under high glucose conditions. Recombinant T. reesei strains that homologously expressed xylanase II were constructed by using the promoters of the pdc and eno genes, and they respectively produced 9266 IU/ml and 8866 IU/ml of xylanase activities in the cultivation supernatant in a medium with high glucose concentration. The productivities of xylanase II were 1.61 g/L (with the pdc promoter) and 1.52 g/L (with the eno promoter), approximately accounted for 83% and 82% of the total protein secreted by T. reesei, respectively. Conclusions: This work demonstrates the screening of constitutive promoters by using RT-qPCR in T. reesei, and has obtained the highest expression of recombinant xylanase II to date by using these promoters.

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