Dylan M. Lynch

Affiliations: 
2017-2022 Chemistry Trinity College, Dublin, Dublin, County Dublin, Ireland 
 2022- CeTPD University of Dundee, Dundee, Scotland, United Kingdom 
Area:
Organic Chemistry, Targeted Protein Degradation, PROTACs, Carbohydrate Chemistry, Radical Chemistry, Biomolecular, Radical, Carbohydrate, Methodology, Glycopeptides
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"Dylan Lynch"
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Parents

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Eoin M. Scanlan grad student 2017-2021 Trinity College Dublin
 (PhD)
Champak Chatterjee grad student 2021-2022 University of Washington
 (Fulbright Award, visiting graduate student)
Alessio Ciulli post-doc 2022- University of Dundee
 (Postdoc)
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Publications

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Lynch DM, Forrester B, Webb T, et al. (2024) Unravelling the druggability and immunological roles of the SOCS-family proteins. Frontiers in Immunology. 15: 1449397
Kroupova A, Spiteri VA, Rutter ZJ, et al. (2024) Design of a Cereblon construct for crystallographic and biophysical studies of protein degraders. Nature Communications. 15: 8885
Freemantle JB, Shah D, Lynch DM, et al. (2024) The pro-drug C13 activates AMPK by two distinct mechanisms. The Biochemical Journal. 481: 1203-1219
Ramachandran S, Makukhin N, Haubrich K, et al. (2023) Structure-based design of a phosphotyrosine-masked covalent ligand targeting the E3 ligase SOCS2. Nature Communications. 14: 6345
Lynch DM, Nolan MD, Williams C, et al. (2023) Traceless Thioacid-Mediated Radical Cyclization of 1,6-Dienes. The Journal of Organic Chemistry
Barnes DD, Kuznetsova V, Visheratina A, et al. (2023) Glycosylated quantum dots as fluorometric nanoprobes for trehalase. Organic & Biomolecular Chemistry
Calatrava-Pérez E, Marchetti LA, McManus GJ, et al. (2021) Real-Time Multi-Photon Tracking and Bioimaging of Glycosylated Theranostic Prodrugs upon Specific Enzyme Triggered Release. Chemistry (Weinheim An Der Bergstrasse, Germany)
Lundahl M, Lynch DM, Barnes D, et al. (2020) Mycobacterial para Hydroxybenzoic Acid-Derivatives (pHBADs) and Related Structures Induce Macrophage Innate Memory. Acs Chemical Biology
Lynch DM, Scanlan EM. (2020) Thiyl Radicals: Versatile Reactive Intermediates for Cyclization of Unsaturated Substrates. Molecules (Basel, Switzerland). 25
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