Christopher Moore

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2012- Chemistry Massachusetts Institute of Technology, Cambridge, MA, United States 
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Mengiste AA, Wilson RH, Weissman RF, et al. (2023) Expanded MutaT7 toolkit efficiently and simultaneously accesses all possible transition mutations in bacteria. Nucleic Acids Research
Choudhury A, Ratna A, Lim A, et al. (2022) Loss of heat shock factor 1 promotes hepatic stellate cell activation and drives liver fibrosis. Hepatology Communications
King DT, Serrano-Negrón JE, Zhu Y, et al. (2022) Thermal Proteome Profiling Reveals the O-GlcNAc-Dependent Meltome. Journal of the American Chemical Society
Liebelt F, Sebastian RM, Moore CL, et al. (2019) SUMOylation and the HSF1-Regulated Chaperone Network Converge to Promote Proteostasis in Response to Heat Shock. Cell Reports. 26: 236-249.e4
Berman C, Papa LJ, Hendel SJ, et al. (2018) An Adaptable Platform for Directed Evolution in Human Cells. Journal of the American Chemical Society
Phillips AM, Ponomarenko AI, Chen K, et al. (2018) Destabilized adaptive influenza variants critical for innate immune system escape are potentiated by host chaperones. Plos Biology. 16: e3000008
Moore CL, Papa LJ, Shoulders MD. (2018) A Processive Protein Chimera Introduces Mutations Across Defined DNA Regions in vivo. Journal of the American Chemical Society
Maji B, Moore CL, Zetsche B, et al. (2016) Multidimensional chemical control of CRISPR-Cas9. Nature Chemical Biology
Moore CL, Dewal MB, Nekongo EE, et al. (2015) Transportable, Chemical Genetic Methodology for the Small Molecule-Mediated Inhibition of Heat Shock Factor 1. Acs Chemical Biology
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