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Discovery of potent thrombin inhibitors from a protease-focused DNA-encoded chemical library

DNA-encoded chemical libraries are collections of compounds individually coupled to unique DNA tags serving as amplifiable identification barcodes. By bridging split-and-pool combinatorial synthesis with the ligation of unique encoding DNA oligomers, million- to billion-member libraries can be synth...

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Autores principales: Dawadi, Surendra, Simmons, Nicholas, Miklossy, Gabriella, Bohren, Kurt M., Faver, John C., Ucisik, Melek Nihan, Nyshadham, Pranavanand, Yu, Zhifeng, Matzuk, Martin M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7382296/
https://www.ncbi.nlm.nih.gov/pubmed/32641511
http://dx.doi.org/10.1073/pnas.2005447117
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author Dawadi, Surendra
Simmons, Nicholas
Miklossy, Gabriella
Bohren, Kurt M.
Faver, John C.
Ucisik, Melek Nihan
Nyshadham, Pranavanand
Yu, Zhifeng
Matzuk, Martin M.
author_facet Dawadi, Surendra
Simmons, Nicholas
Miklossy, Gabriella
Bohren, Kurt M.
Faver, John C.
Ucisik, Melek Nihan
Nyshadham, Pranavanand
Yu, Zhifeng
Matzuk, Martin M.
author_sort Dawadi, Surendra
collection PubMed
description DNA-encoded chemical libraries are collections of compounds individually coupled to unique DNA tags serving as amplifiable identification barcodes. By bridging split-and-pool combinatorial synthesis with the ligation of unique encoding DNA oligomers, million- to billion-member libraries can be synthesized for use in hundreds of healthcare target screens. Although structural diversity and desirable molecular property ranges generally guide DNA-encoded chemical library design, recent reports have highlighted the utility of focused DNA-encoded chemical libraries that are structurally biased for a class of protein targets. Herein, a protease-focused DNA-encoded chemical library was designed that utilizes chemotypes known to engage conserved catalytic protease residues. The three-cycle library features functional moieties such as guanidine, which interacts strongly with aspartate of the protease catalytic triad, as well as mild electrophiles such as sulfonamide, urea, and carbamate. We developed a DNA-compatible method for guanidinylation of amines and reduction of nitriles. Employing these optimized reactions, we constructed a 9.8-million-membered DNA-encoded chemical library. Affinity selection of the library with thrombin, a common protease, revealed a number of enriched features which ultimately led to the discovery of a 1 nM inhibitor of thrombin. Thus, structurally focused DNA-encoded chemical libraries have tremendous potential to find clinically useful high-affinity hits for the rapid discovery of drugs for targets (e.g., proteases) with essential functions in infectious diseases (e.g., severe acute respiratory syndrome coronavirus 2) and relevant healthcare conditions (e.g., male contraception).
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spelling pubmed-73822962020-07-30 Discovery of potent thrombin inhibitors from a protease-focused DNA-encoded chemical library Dawadi, Surendra Simmons, Nicholas Miklossy, Gabriella Bohren, Kurt M. Faver, John C. Ucisik, Melek Nihan Nyshadham, Pranavanand Yu, Zhifeng Matzuk, Martin M. Proc Natl Acad Sci U S A Physical Sciences DNA-encoded chemical libraries are collections of compounds individually coupled to unique DNA tags serving as amplifiable identification barcodes. By bridging split-and-pool combinatorial synthesis with the ligation of unique encoding DNA oligomers, million- to billion-member libraries can be synthesized for use in hundreds of healthcare target screens. Although structural diversity and desirable molecular property ranges generally guide DNA-encoded chemical library design, recent reports have highlighted the utility of focused DNA-encoded chemical libraries that are structurally biased for a class of protein targets. Herein, a protease-focused DNA-encoded chemical library was designed that utilizes chemotypes known to engage conserved catalytic protease residues. The three-cycle library features functional moieties such as guanidine, which interacts strongly with aspartate of the protease catalytic triad, as well as mild electrophiles such as sulfonamide, urea, and carbamate. We developed a DNA-compatible method for guanidinylation of amines and reduction of nitriles. Employing these optimized reactions, we constructed a 9.8-million-membered DNA-encoded chemical library. Affinity selection of the library with thrombin, a common protease, revealed a number of enriched features which ultimately led to the discovery of a 1 nM inhibitor of thrombin. Thus, structurally focused DNA-encoded chemical libraries have tremendous potential to find clinically useful high-affinity hits for the rapid discovery of drugs for targets (e.g., proteases) with essential functions in infectious diseases (e.g., severe acute respiratory syndrome coronavirus 2) and relevant healthcare conditions (e.g., male contraception). National Academy of Sciences 2020-07-21 2020-07-08 /pmc/articles/PMC7382296/ /pubmed/32641511 http://dx.doi.org/10.1073/pnas.2005447117 Text en Copyright © 2020 the Author(s). Published by PNAS. http://creativecommons.org/licenses/by/4.0/ https://creativecommons.org/licenses/by/4.0/This open access article is distributed under Creative Commons Attribution License 4.0 (CC BY) (http://creativecommons.org/licenses/by/4.0/) .
spellingShingle Physical Sciences
Dawadi, Surendra
Simmons, Nicholas
Miklossy, Gabriella
Bohren, Kurt M.
Faver, John C.
Ucisik, Melek Nihan
Nyshadham, Pranavanand
Yu, Zhifeng
Matzuk, Martin M.
Discovery of potent thrombin inhibitors from a protease-focused DNA-encoded chemical library
title Discovery of potent thrombin inhibitors from a protease-focused DNA-encoded chemical library
title_full Discovery of potent thrombin inhibitors from a protease-focused DNA-encoded chemical library
title_fullStr Discovery of potent thrombin inhibitors from a protease-focused DNA-encoded chemical library
title_full_unstemmed Discovery of potent thrombin inhibitors from a protease-focused DNA-encoded chemical library
title_short Discovery of potent thrombin inhibitors from a protease-focused DNA-encoded chemical library
title_sort discovery of potent thrombin inhibitors from a protease-focused dna-encoded chemical library
topic Physical Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7382296/
https://www.ncbi.nlm.nih.gov/pubmed/32641511
http://dx.doi.org/10.1073/pnas.2005447117
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