Biosynthesis of High‐Active Hemoproteins by the Efficient Heme‐Supply Pichia Pastoris Chassis

Author:

Yu Fei1234ORCID,Zhao Xinrui1234ORCID,Zhou Jingwen1234ORCID,Lu Wei5,Li Jianghua1234,Chen Jian1234ORCID,Du Guocheng12346ORCID

Affiliation:

1. Key Laboratory of Industrial Biotechnology Ministry of Education School of Biotechnology Jiangnan University 1800 Lihu Road Wuxi Jiangsu 214122 China

2. Science Center for Future Foods Jiangnan University 1800 Lihu Road Wuxi Jiangsu 214122 China

3. Jiangsu Province Engineering Research Center of Food Synthetic Biotechnology Jiangnan University 1800 Lihu Road Wuxi Jiangsu 214122 China

4. Engineering Research Center of Ministry of Education on Food Synthetic Biotechnology Jiangnan University 1800 Lihu Road Wuxi Jiangsu 214122 China

5. Dongsheng Biotech Co., Ltd. 91–92 Junmin Road Taixing Jiangsu 225432 China

6. Key Laboratory of Carbohydrate Chemistry and Biotechnology Ministry of Education Jiangnan University 1800 Lihu Road Wuxi Jiangsu 214122 China

Abstract

AbstractMicrobial synthesis of valuable hemoproteins has become a popular research topic, and Pichia pastoris is a versatile platform for the industrial production of recombinant proteins. However, the inadequate supply of heme limits the synthesis of high‐active hemoproteins. Here a strategy for enhancing intracellular heme biosynthesis to improve the titers and functional activities of hemoproteins is reported. After selecting a suitable expressional strategy for globins, the efficient heme‐supply P. pastoris chassis is established by removing the spatial segregation during heme biosynthesis, optimizing precursor synthesis, assembling rate‐limiting enzymes using protein scaffolds, and inhibiting heme degradation. This robust chassis produces several highly active hemoproteins, including porcine myoglobin, soy hemoglobin, Vitreoscilla hemoglobin, and P450‐BM3, which can be used in the development of artificial meat, high‐cell‐density fermentation, and whole‐cell catalytic synthesis of high‐value‐added compounds. Furthermore, the engineered chassis strain has great potential for producing and applying other hemoproteins with high activities in various fields.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Publisher

Wiley

Subject

General Physics and Astronomy,General Engineering,Biochemistry, Genetics and Molecular Biology (miscellaneous),General Materials Science,General Chemical Engineering,Medicine (miscellaneous)

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