Bryan C. Dickinson, Ph.D.

Affiliations: 
University of Chicago, Chicago, IL 
Website:
http://dickinsonlab.uchicago.edu/
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Parents

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David Fushman research assistant 2004-2006 University of Maryland
Christopher J. Chang grad student 2006-2010 UC Berkeley
 (Molecular Imaging Approaches to Understanding the Roles of Hydrogen Peroxide Biology in Stress and Development.)
David R. Liu post-doc 2011-2014 Harvard

Children

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Fernando Banales Mejia grad student 2017-2020 Chicago
Michael W. Beck post-doc 2015-2019 Chicago
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Publications

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Lippert AR, Dickinson BC, New EJ. (2021) Imaging Mitochondrial Hydrogen Peroxide in Living Cells. Methods in Molecular Biology (Clifton, N.J.). 2275: 127-140
Dewey JA, Dickinson BC. (2020) Split T7 RNA polymerase biosensors to study multiprotein interaction dynamics. Methods in Enzymology. 641: 413-432
Zinkus-Boltz J, DeValk C, Dickinson BC. (2019) A Phage-Assisted Continuous Selection Approach for Deep Mutational Scanning of Protein-Protein Interactions. Acs Chemical Biology
Jones KA, Kentala K, Beck MW, et al. (2019) Development of a Split Esterase for Protein-Protein Interaction-Dependent Small-Molecule Activation. Acs Central Science. 5: 1768-1776
Cao Y, Qiu T, Kathayat RS, et al. (2019) ABHD10 is an S-depalmitoylase affecting redox homeostasis through peroxiredoxin-5. Nature Chemical Biology. 15: 1232-1240
Azizi SA, Kathayat RS, Dickinson BC. (2019) Activity-Based Sensing of -Depalmitoylases: Chemical Technologies and Biological Discovery. Accounts of Chemical Research
Kathayat RS, Dickinson BC. (2019) Measuring S-Depalmitoylation Activity In Vitro and In Live Cells with Fluorescent Probes. Methods in Molecular Biology (Clifton, N.J.). 2009: 99-109
Rauch S, Dickinson BC. (2019) Targeted mA reader proteins to study the epitranscriptome. Methods in Enzymology. 621: 1-16
Rauch S, He C, Dickinson BC. (2018) Targeted mA Reader Proteins To Study Epitranscriptomic Regulation of Single RNAs. Journal of the American Chemical Society
Kathayat RS, Cao Y, Elvira PD, et al. (2018) Active and dynamic mitochondrial S-depalmitoylation revealed by targeted fluorescent probes. Nature Communications. 9: 334
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