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Bioengineered System for High Throughput Screening of Kv1 Ion Channel Blockers

Screening drug candidates for their affinity and selectivity for a certain binding site is a crucial step in developing targeted therapy. Here, we created a screening assay for receptor binding that can be easily scaled up and automated for the high throughput screening of Kv channel blockers. It is...

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Autores principales: Sharonov, George V., Nekrasova, Oksana V., Kudryashova, Ksenia S., Kirpichnikov, Mikhail P., Feofanov, Alexey V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8614864/
https://www.ncbi.nlm.nih.gov/pubmed/34821753
http://dx.doi.org/10.3390/bioengineering8110187
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author Sharonov, George V.
Nekrasova, Oksana V.
Kudryashova, Ksenia S.
Kirpichnikov, Mikhail P.
Feofanov, Alexey V.
author_facet Sharonov, George V.
Nekrasova, Oksana V.
Kudryashova, Ksenia S.
Kirpichnikov, Mikhail P.
Feofanov, Alexey V.
author_sort Sharonov, George V.
collection PubMed
description Screening drug candidates for their affinity and selectivity for a certain binding site is a crucial step in developing targeted therapy. Here, we created a screening assay for receptor binding that can be easily scaled up and automated for the high throughput screening of Kv channel blockers. It is based on the expression of the KcsA-Kv1 hybrid channel tagged with a fluorescent protein in the E. coli membrane. In order to make this channel accessible for the soluble compounds, E. coli were transformed into spheroplasts by disruption of the cellular peptidoglycan envelope. The assay was evaluated using a hybrid KcsA-Kv1.3 potassium channel tagged with a red fluorescent protein (TagRFP). The binding of Kv1.3 channel blockers was measured by flow cytometry either by using their fluorescent conjugates or by determining the ability of unconjugated compounds to displace fluorescently labeled blockers with a known affinity. A fraction of the occupied receptor was calculated with a dedicated pipeline available as a Jupyter notebook. Measured binding constants for agitoxin-2, charybdotoxin and kaliotoxin were in firm agreement with the earlier published data. By using a mid-range flow cytometer with manual sample handling, we measured and analyzed up to ten titration curves (eight data points each) in one day. Finally, we considered possibilities for multiplexing, scaling and automation of the assay.
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spelling pubmed-86148642021-11-26 Bioengineered System for High Throughput Screening of Kv1 Ion Channel Blockers Sharonov, George V. Nekrasova, Oksana V. Kudryashova, Ksenia S. Kirpichnikov, Mikhail P. Feofanov, Alexey V. Bioengineering (Basel) Article Screening drug candidates for their affinity and selectivity for a certain binding site is a crucial step in developing targeted therapy. Here, we created a screening assay for receptor binding that can be easily scaled up and automated for the high throughput screening of Kv channel blockers. It is based on the expression of the KcsA-Kv1 hybrid channel tagged with a fluorescent protein in the E. coli membrane. In order to make this channel accessible for the soluble compounds, E. coli were transformed into spheroplasts by disruption of the cellular peptidoglycan envelope. The assay was evaluated using a hybrid KcsA-Kv1.3 potassium channel tagged with a red fluorescent protein (TagRFP). The binding of Kv1.3 channel blockers was measured by flow cytometry either by using their fluorescent conjugates or by determining the ability of unconjugated compounds to displace fluorescently labeled blockers with a known affinity. A fraction of the occupied receptor was calculated with a dedicated pipeline available as a Jupyter notebook. Measured binding constants for agitoxin-2, charybdotoxin and kaliotoxin were in firm agreement with the earlier published data. By using a mid-range flow cytometer with manual sample handling, we measured and analyzed up to ten titration curves (eight data points each) in one day. Finally, we considered possibilities for multiplexing, scaling and automation of the assay. MDPI 2021-11-16 /pmc/articles/PMC8614864/ /pubmed/34821753 http://dx.doi.org/10.3390/bioengineering8110187 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Sharonov, George V.
Nekrasova, Oksana V.
Kudryashova, Ksenia S.
Kirpichnikov, Mikhail P.
Feofanov, Alexey V.
Bioengineered System for High Throughput Screening of Kv1 Ion Channel Blockers
title Bioengineered System for High Throughput Screening of Kv1 Ion Channel Blockers
title_full Bioengineered System for High Throughput Screening of Kv1 Ion Channel Blockers
title_fullStr Bioengineered System for High Throughput Screening of Kv1 Ion Channel Blockers
title_full_unstemmed Bioengineered System for High Throughput Screening of Kv1 Ion Channel Blockers
title_short Bioengineered System for High Throughput Screening of Kv1 Ion Channel Blockers
title_sort bioengineered system for high throughput screening of kv1 ion channel blockers
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8614864/
https://www.ncbi.nlm.nih.gov/pubmed/34821753
http://dx.doi.org/10.3390/bioengineering8110187
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