论文著作:
1. Junjun Wu*, Lin Zhou, Hu Peng, Zhaojun Wang, Zhaoshi Wang, Jay D Keasling, Shike Liu, Guanghong Zhou, Shijie Ding, Qiong Wang, Xuejian Wang, Xinxiu Chen, Yifei Lang, Mo Xia, Xin Guan, Mingsheng Dong, Jingwen Zhou, Jian Chen, 2023, A general and convenient peptide self-assembling mechanism for developing supramolecular versatile nanomaterials based on the biosynthetic hybrid amyloid-resilin protein. Advanced Materials. (IF=29.400)
2. Hu Peng, Lin Zhou, Xuguo Duan, Zhaojun Wang, Zhaoshi Wang, Mo Xia, Mingsheng Dong,Junjun Wu*. 2022. A multi-layer genome mining and phylogenomic analysis to construct efficient and autonomous efflux system for medium chain fatty acids. Food Materials Research. 2:15.
3. Wu, J.J., Zhou, L., Duan, X.G., Peng, H., Liu, S.K., Zhuang, Q.Q., Pablo, C.M., Fan, X., Ding, S.J., Dong, M.S., Zhou, J.W., 2021. Applied evolution: Dual dynamic regulations-based approaches in engineering intracellular malonyl-CoA availability. Metabolic Engineering. 67, 403-416. (IF=9.76)
4. Wu, J.J., Bao, M.J., Duan, X.G., Zhou, P., Chen, C.W., Gao, J.H., Cheng, S.Y., Zhuang, Q.Q., Zhao, Z.J., 2020. Developing a pathway-independent and full-autonomous global resource allocation strategy to dynamically switching phenotypic states.Nature Communications. 11(1), 5521. (IF=12.123)
5. Wu, J.J.,Wang, Z., Duan, X.G., Zhou P., Liu, P.C., Pang, Z., Wang, Y., Wang, X.J., Li, W., Dong, M.S., 2019. Construction of artificial micro-aerobic metabolism for energy- and carbon-efficient synthesis of medium chain fatty acids in Escherichia coli. Metabolic Engineering. 53, 1-13. (IF=9.76)
6. Wu, J.J.,Wang, Z., Zhang, X., Zhou P., Xia, X.D., Dong, M.S., 2019. Improving medium chain fatty acid production in Escherichia coli by multiple transporter engineering. Food Chemistry. 272, 628-634. (IF=6.35).
7. Wu, J.J*.,Zhang, X., Zhou, P; Xia, X.D., Dong, M.S*., 2017. Improving metabolic efficiency of the reverse beta-oxidation cycle by balancing redox cofactor requirement. Metabolic Engineering. 44, 313-324. (IF=9.76)
8. Wu, J.J.,Zhang, X., Xia, X.D., Dong, M.S., 2017. A systematic optimization of medium chain fatty acid biosynthesis via the reverse beta-oxidation cycle in Escherichia coli. Metabolic Engineering. 41, 115-124. (IF=9.76)
9. Wu, J.J., Zhang, X., Zhu, Y.J., Tan, Q.Y., He, J.C., Dong, M.S., 2017. Rational modular design of metabolic network for efficient production of plant polyphenol pinosylvin. Scientific Reports. 7, 1459.
10. Wu, J.J., Zhou, P., Zhang, X., Dong, M.S., 2017. Efficient de novo synthesis of resveratrol by metabolically engineered Escherichia coli. Journal of Industrial Microbiology Biotechnoloy. 44, 1083-1095.
11. Wu, J.J., Zhang, X., Zhou, J.W., Dong, M.S., 2016. Efficient biosynthesis of (2S)-pinocembrin from D-glucose by integrating engineering central metabolic pathways with a pH-shift control strategy. Bioresource Technology. 218, 999-1007. (IF=9.67)
12. Wu, J.J., Zhang, X., Dong, M.S., 2016. Stepwise modular pathway engineering of Escherichia coli for efficient one-step production of (2S)-pinocembrin. Journal of Biotechnology. 231, 183-192.
13. Wu, J.J., Du, G.C., Zhou, J.W.,Chen, J., 2015. Enhanced flavonoid production by fine-tunning the central metabolic pathways based on CRISPR interference system in Escherichia coli. Scientific reports.
14. Wu, J.J., Du, G.C., Zhou, J.W., Chen, J., 2013a. Metabolic engineering of Escherichia coli for (2S)-pinocembrin production from glucose by a modular metabolic strategy. Metabolic Engineering. 16, 48-55.(IF=9.76)
15. Wu, J.J., Liu, P.R., Bao, H., Fan, Y.M., Du, G.C., Zhou, J.W., Chen, J., 2013b. Multivariate modular metabolic engineering of Escherichia coli to produce resveratrol from L-tyrosine. Journal of Biotechnology. 167, 404-411.
16. Wu, J.J.,Zhou., T.T., Du, G.C., Zhou, J.W.,Chen, J., 2014. Modular optimization of heterologous pathways for de novo synthesis of (2S)-naringenin in Escherichia coli. Plos one.9, e101492.
17. Wu, J.J., Du, G.C., Zhou, J.W.,Chen, J., 2014. Systems metabolic engineering of microorganisms towards large-scale production of flavonoid scaffolds. Journal of Biotechnology. 188, 72-80.
18. Wu, J.J., Du, G.C., Zhou, J.W., Chen, J., 2014. Fine-tuning of fatty acid pathway based on synthetic antisense RNAs to achieve high-yield (2S)-naringenin production from L-tyrosine in Escherichia coli. Applied and Environmental Microbiology. 80, 7283-7292. (IF=3.8)
19. 周朋, 王喆, 包美娇, 董明盛, 吴俊俊, 2019.微生物群体感应系统的调控机制及应用研究进展. 生物加工过程. 10.3969/j.issn.1672-3678. 2019.03.002
20. 孙玲,吴俊俊*,2022,中链脂肪酸研究进展及应用现状,中国食品添加剂. 12,50-55