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Mbio|March 23, 2017
The Vitamin B<sub>12</sub>-Dependent Photoreceptor AerR Relieves Photosystem Gene Repression by Extending the Interaction of CrtJ with Photosystem PromotersMingxu Fang, Carl E BauerProceedings of the National Academy of Sciences of the United States of America|June 6, 2018
Regulation of stringent factor by branched-chain amino acidsMingxu Fang, Carl E BauerBMC Genomics|December 18, 2015
Mapping the CgrA regulon of Rhodospirillum centenum reveals a hierarchal network controlling Gram-negative cyst developmentQian Dong, Mingxu Fang, Sugata Roychowdhury, et al.Elife|October 4, 2018
Differing isoforms of the cobalamin binding photoreceptor AerR oppositely regulate photosystem expressionHaruki Yamamoto, Mingxu Fang, Vladimira Dragnea, et al.Annual Review of Microbiology|August 26, 2025
Prokaryotic Circadian Systems: Cyanobacteria and BeyondMingxu Fang, Carrie L Partch, Andy LiWang, et al.Proceedings of the National Academy of Sciences of the United States of America|March 20, 2023
Synchronization of the circadian clock to the environment tracked in real timeMingxu Fang, Archana G Chavan, Andy LiWang, et al.Trends in Biochemical Sciences|January 7, 2024
The inner workings of an ancient biological clockMingxu Fang, Andy LiWang, Susan S Golden, et al.Microbial Genomics|November 9, 2017
Transcriptomic analysis of aerobic respiratory and anaerobic photosynthetic states in <i>Rhodobacter capsulatus</i> and their modulation by global redox regulators RegA, FnrL and CrtJJoseph E Kumka, Heidi Schindel, Mingxu Fang, et al.Microbiology Spectrum|September 15, 2022
Redox Brake Regulator RedB and FnrL Function as Yin-Yang Regulators of Anaerobic-Aerobic Metabolism in Rhodobacter capsulatusNijia Ke, Joseph E Kumka, Mingxu Fang, et al.Microbiology Spectrum|September 15, 2022
RedB, a Member of the CRP/FNR Family, Functions as a Transcriptional Redox BrakeNijia Ke, Joseph E Kumka, Mingxu Fang, et al.Pageof 2