Juan Tang
Affiliations: | 2017- | Chemistry | Rice University, Houston, TX |
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Wang L, Wang S, Tang J, et al. (2021) Oxime as a general photocage for the design of visible light photo-activatable fluorophores. Chemical Science. 12: 15572-15580 |
Loredo A, Tang J, Wang L, et al. (2020) Tetrazine as a general phototrigger to turn on fluorophores. Chemical Science. 11: 4410-4415 |
Chen Y, Tang J, Wang L, et al. (2020) Creation of Bacterial cells with 5-Hydroxytryptophan as a 21 Amino Acid Building Block. Chem. 6: 2717-2727 |
Tang J, Yu C, Loredo A, et al. (2020) Site-Specific Incorporation of a Photoactivatable Fluorescent Amino Acid. Chembiochem : a European Journal of Chemical Biology |
Tang J, Wang L, Loredo A, et al. (2020) Single-atom replacement as a general approach towards visible-light/near-infrared heavy-atom-free photosensitizers for photodynamic therapy. Chemical Science. 11: 6701-6708 |
Chen Y, Wu KL, Tang J, et al. (2019) Addition of Isocyanide-containing Amino Acids to the Genetic Code for Protein Labeling and Activation. Acs Chemical Biology |
Tang J, Robichaux M, Wu KL, et al. (2019) Single-Atom Fluorescence Switch: A General Approach towards Visible Light-Activated Dyes for Biological Imaging. Journal of the American Chemical Society |
Xiao H, Yu C, Tang J, et al. (2018) Proximity-induced Site-specific Antibody Conjugation. Bioconjugate Chemistry |
Chen Y, Loredo A, Gordon A, et al. (2018) A noncanonical amino acid-based relay system for site-specific protein labeling. Chemical Communications (Cambridge, England) |
Chen JJ, Jing J, Chang H, et al. (2013) A sensitive and quantitative autolysosome probe for detecting autophagic activity in live and prestained fixed cells. Autophagy. 9: 894-904 |