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ACS Synthetic Biology|September 28, 2017
Development of Transcription Factor-Based Designer Macrolide Biosensors for Metabolic Engineering and Synthetic BiologyChristian M Kasey, Mounir Zerrad, Yiwei Li, et al.ACS Synthetic Biology|September 21, 2021
Development of Genetically Encoded Biosensors for Reporting the Methyltransferase-Dependent Biosynthesis of Semisynthetic Macrolide AntibioticsYiwei Li, Megan Reed, H Tonie Wright, et al.Annual Review of Biochemistry|February 22, 2014
Expanding and reprogramming the genetic code of cells and animalsJason W ChinCurrent Opinion in Structural Biology|July 18, 2006
Programming and engineering biological networksJason W ChinNature Chemical Biology|May 20, 2006
Modular approaches to expanding the functions of living matterJason W ChinJournal of Molecular Biology|March 7, 2009
Structure and function of the macrolide biosensor protein, MphR(A), with and without erythromycinJianting Zheng, Vatsala Sagar, Adam Smolinsky, et al.The Journal of Biological Chemistry|October 9, 2002
Biochemical evidence for an editing role of thioesterase II in the biosynthesis of the polyketide pikromycinBeom Seok Kim, T Ashton Cropp, Brian J Beck, et al.Organic & Biomolecular Chemistry|May 19, 2017
Genetic incorporation of 4-fluorohistidine into peptides enables selective affinity purificationChristine M Ring, Emil S Iqbal, David E Hacker, et al.Biochemistry|August 28, 2002
An unexpected interaction between the modular polyketide synthases, erythromycin DEBS1 and pikromycin PikAIV, leads to efficient triketide lactone synthesisBeom Seok Kim, T Ashton Cropp, Galina Florova, et al.Pageof 17