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Trends in Biotechnology|November 12, 2017
Genomics-Driven Natural Product Discovery in ActinomycetesGuoqing NiuTrends in Biochemical Sciences|July 2, 2019
Next-Generation Drug Discovery to Combat Antimicrobial ResistanceGuoqing Niu, Wenli LiTrends in Microbiology|December 4, 2014
Nucleoside antibiotics: biosynthesis, regulation, and biotechnologyGuoqing Niu, Huarong TanScience China. Life Sciences|August 9, 2017
Biosynthesis and combinatorial biosynthesis of antifungal nucleoside antibioticsGuoqing Niu, Jiazhen Zheng, Huarong TanSynthetic and Systems Biotechnology|November 13, 2018
Regulation of antibiotic biosynthesis in actinomycetes: Perspectives and challengesJunhong Wei, Lang He, Guoqing NiuApplied and Environmental Microbiology|October 20, 2009
Autoaggregation response of Fusobacterium nucleatumJustin Merritt, Guoqing Niu, Toshinori Okinaga, et al.ACS Synthetic Biology|August 4, 2021
Synthetic Cellobiose-Inducible Regulatory Systems Allow Tight and Dynamic Controls of Gene Expression in StreptomycesXia Wang, Yudie Fu, Meiyan Wang, et al.Frontiers in Microbiology|January 11, 2020
Regulation of Antibiotic Production by Signaling Molecules in StreptomycesDekun Kong, Xia Wang, Ju Nie, et al.The Journal of Antibiotics|September 11, 2019
Engineering nucleoside antibiotics toward the development of novel antimicrobial agentsGuoqing Niu, Zhilei Li, Pengju Huang, et al.Metabolic Engineering|February 9, 2006
SanJ, an ATP-dependent picolinate-CoA ligase, catalyzes the conversion of picolinate to picolinate-CoA during nikkomycin biosynthesis in Streptomyces ansochromogenesGuoqing Niu, Gang Liu, Yuqing Tian, et al.Pageof 7