Melissa M. Dix, Ph.D.

Affiliations: 
2012 Scripps Research Institute, La Jolla, La Jolla, CA, United States 
Area:
Medicinal Chemistry
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"Melissa Dix"
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Benjamin F. Cravatt grad student 2012 Scripps Institute
 (Development and Application of Advanced Proteomic Methods to Globally Map Protease Substrate Profiles.)
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Publications

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Lazear MR, Remsberg JR, Jaeger MG, et al. (2023) Proteomic discovery of chemical probes that perturb protein complexes in human cells. Molecular Cell
Kemper EK, Zhang Y, Dix MM, et al. (2022) Global profiling of phosphorylation-dependent changes in cysteine reactivity. Nature Methods
Bouffard E, Zaro BW, Dix MM, et al. (2021) Refinement of Covalent EGFR Inhibitor AZD9291 to Eliminate Off-target Activity. Tetrahedron Letters. 74
Abbasov ME, Kavanagh ME, Ichu TA, et al. (2021) Publisher Correction: A proteome-wide atlas of lysine-reactive chemistry. Nature Chemistry
Abbasov ME, Kavanagh ME, Ichu TA, et al. (2021) A proteome-wide atlas of lysine-reactive chemistry. Nature Chemistry
Remsberg JR, Suciu RM, Zambetti NA, et al. (2021) ABHD17 regulation of plasma membrane palmitoylation and N-Ras-dependent cancer growth. Nature Chemical Biology
Zhang X, Luukkonen LM, Eissler CL, et al. (2021) DCAF11 Supports Targeted Protein Degradation by Electrophilic Proteolysis-Targeting Chimeras. Journal of the American Chemical Society
Vaisar T, Hu JH, Airhart N, et al. (2020) Parallel Murine and Human Plaque Proteomics Reveals Pathways of Plaque Rupture. Circulation Research
Vinogradova EV, Zhang X, Remillard D, et al. (2020) An Activity-Guided Map of Electrophile-Cysteine Interactions in Primary Human T Cells. Cell
Wang Y, Dix MM, Bianco G, et al. (2019) Expedited mapping of the ligandable proteome using fully functionalized enantiomeric probe pairs. Nature Chemistry
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