长期从事合成生物学和微生物代谢工程研究,课题组主要聚焦于多酶催化和光驱动合成生物学,近年以通讯作者在Cell、Nat Synth、JACS和Angew Chem Int Ed等领域主流刊物发表论文,相关成果入选2025世界人工智能与生物医药十大研究进展和中国生物制造颠覆性成果等。获吕志和科学突破奖等。
2011.09-2015.12,上海交通大学,生物学,博士
2008.09-2011.06,南京农业大学,微生物学,硕士
2004.09-2008.06,南京农业大学,生物技术,学士
2022-至今,上海交通大学,张江高等研究院, 长聘教轨副教授
2020-至今,上海交通大学,生命科学技术学院, 长聘教轨副教授
2018.04-2019.04,麻省理工学院,博士后
2015.12-2019.11,上海交通大学,博士后
1. Wang, J., Ouyang, X., Meng, S., Zhao, B., Liu, L., Li, C., Li, H., Zheng, H., Liu, Y., Shi, T., Zhao, Y., Ni, J*. Rational multienzyme architecture design with iMARS. Cell 2025, 188: 1349-1362
2. Liu, L., Wang, X., Wu, Y., Li, H., Wang, J., Li, C., Zheng, H., Ni, J*. Chemoenzymatic platform with coordinated cofactor self-circulation for lignin valorization. Nat. Synth. 2025, 4: 1151-1160
3. Li, C., Yin, L., Wang, J., Zheng, H., Ni, J*. Light-driven biosynthesis of volatile, unstable and photosensitive chemicals from CO2. Nat. Synth. 2023, 2: 960-971
4. Li, C., Zheng, H., Li, Y., Liu, L., Wang, J., Li, H., Zhang, Y., Liao, C., Ni, J*. Facilitated channeling of fixed carbon and energy into chemicals in artificial phototrophic communities. J. Am. Chem. Soc. 2025, 147: 4707-4713
5. Li, C., Wang, R., Wang, J., Liu, L., Li, H., Zheng, H., Ni, J*. A highly compatible phototrophic community for carbon‐negative biosynthesis. Angew. Chem. Int. Ed. 2023, 62: e202215013