Jared C. Lewis

Affiliations: 
2011-2018 Chemistry University of Chicago, Chicago, IL 
 2018- Indiana University, Bloomington, Bloomington, IN, United States 
Area:
transition metal catalysts, enzymes, and artificial metalloenzymes
Website:
https://www.chem.indiana.edu/faculty/jared-lewis/
Google:
"Jared Lewis"
Bio:

https://www.indiana.edu/~lewisgrp/

Mean distance: 7.02
 
SNBCP

Parents

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Eric Oldfield research assistant 1998-2002 UIUC
Robert G. Bergman grad student 2007 UC Berkeley
 (Discovery, optimization, and mechanisms of new transformations proceeding via catalytic carbon-hydrogen bond activation.)
Jonathan A. Ellman grad student 2007 UC Berkeley
 (Discovery, optimization, and mechanisms of new transformations proceeding via catalytic carbon-hydrogen bond activation.)
Frances H. Arnold post-doc 2007-2010 Caltech

Children

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Marissa Parker research assistant Chicago
Andrew A. Ng research assistant 2013-2015 Chicago
Michael Roy research assistant 2013-2016 Chicago
Harrison M. Snodgrass grad student Chicago
Mary C. Andorfer grad student 2011- Chicago
Landon J. Durak grad student 2010-2015 Chicago
James T. Payne grad student 2010-2015 Chicago
Chen Zhang grad student 2010-2015 Chicago
Brian M. Koronkiewicz grad student 2014-2015 Chicago
Hao Yang grad student 2010-2016 Chicago
Kenneth Ellis-Guardiola grad student 2011-2017 Chicago
Zhihui Zhang post-doc 2010-2012 Chicago
Catherine B. Poor post-doc 2012-2013 Chicago
Poonam Srivastava post-doc 2011-2014 Chicago
Lee A. Solomon post-doc 2013-2014 Chicago
Duo-Sheng Wang post-doc 2013-2014 Chicago

Collaborators

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Michael C. Jewett collaborator Northwestern (Microtree)
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Publications

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Jiang Y, Kim A, Olive C, et al. (2024) Selective C-H Halogenation of Alkenes and Alkynes Using Flavin-Dependent Halogenases. Angewandte Chemie (International Ed. in English). e202317860
Mondal D, Snodgrass HM, Gomez CA, et al. (2023) Non-Native Site-Selective Enzyme Catalysis. Chemical Reviews. 123: 10381-10431
Liu B, Zubi YS, Lewis JC. (2023) Iridium(III) polypyridine artificial metalloenzymes with tunable photophysical properties: a new platform for visible light photocatalysis in aqueous solution. Dalton Transactions (Cambridge, England : 2003). 52: 5034-5038
Jiang Y, Lewis JC. (2023) Asymmetric catalysis by flavin-dependent halogenases. Chirality
Gomez CA, Mondal D, Du Q, et al. (2023) Directed Evolution of an Iron(II)- and α-Ketoglutarate-Dependent Dioxygenase for Site-Selective Azidation of Unactivated Aliphatic C-H Bonds. Angewandte Chemie (International Ed. in English)
Jiang Y, Mondal D, Lewis JC. (2022) Expanding the Reactivity of Flavin Dependent Halogenases Toward Olefins via Enantioselective Intramolecular Haloetherification and Chemoenzymatic Oxidative Rearrangements. Acs Catalysis. 12: 13501-13505
Andorfer MC, Evans D, Yang S, et al. (2022) Analysis of Laboratory-Evolved Flavin-Dependent Halogenases Affords a Computational Model for Predicting Halogenase Site Selectivity. Chem Catalysis. 2: 2658-2674
Jiang Y, Snodgrass HM, Zubi YS, et al. (2022) The Single-Component Flavin Reductase/Flavin-Dependent Halogenase AetF is a Versatile Catalyst for Selective Bromination and Iodination of Arenes and Olefins. Angewandte Chemie (International Ed. in English)
Snodgrass HM, Mondal D, Lewis JC. (2022) Directed Evolution of Flavin-Dependent Halogenases for Site- and Atroposelective Halogenation of 3-Aryl-4(3)-Quinazolinones via Kinetic or Dynamic Kinetic Resolution. Journal of the American Chemical Society. 144: 16676-16682
Zubi YS, Seki K, Li Y, et al. (2022) Metal-responsive regulation of enzyme catalysis using genetically encoded chemical switches. Nature Communications. 13: 1864
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