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A mix-and-read drop-based in vitro two-hybrid method for screening high-affinity peptide binders

Drop-based microfluidics have recently become a novel tool by providing a stable linkage between phenotype and genotype for high throughput screening. However, use of drop-based microfluidics for screening high-affinity peptide binders has not been demonstrated due to the lack of a sensitive functio...

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Autores principales: Cui, Naiwen, Zhang, Huidan, Schneider, Nils, Tao, Ye, Asahara, Haruichi, Sun, Zhiyi, Cai, Yamei, Koehler, Stephan A., de Greef, Tom F. A., Abbaspourrad, Alireza, Weitz, David A., Chong, Shaorong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4778045/
https://www.ncbi.nlm.nih.gov/pubmed/26940078
http://dx.doi.org/10.1038/srep22575
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author Cui, Naiwen
Zhang, Huidan
Schneider, Nils
Tao, Ye
Asahara, Haruichi
Sun, Zhiyi
Cai, Yamei
Koehler, Stephan A.
de Greef, Tom F. A.
Abbaspourrad, Alireza
Weitz, David A.
Chong, Shaorong
author_facet Cui, Naiwen
Zhang, Huidan
Schneider, Nils
Tao, Ye
Asahara, Haruichi
Sun, Zhiyi
Cai, Yamei
Koehler, Stephan A.
de Greef, Tom F. A.
Abbaspourrad, Alireza
Weitz, David A.
Chong, Shaorong
author_sort Cui, Naiwen
collection PubMed
description Drop-based microfluidics have recently become a novel tool by providing a stable linkage between phenotype and genotype for high throughput screening. However, use of drop-based microfluidics for screening high-affinity peptide binders has not been demonstrated due to the lack of a sensitive functional assay that can detect single DNA molecules in drops. To address this sensitivity issue, we introduced in vitro two-hybrid system (IVT2H) into microfluidic drops and developed a streamlined mix-and-read drop-IVT2H method to screen a random DNA library. Drop-IVT2H was based on the correlation between the binding affinity of two interacting protein domains and transcriptional activation of a fluorescent reporter. A DNA library encoding potential peptide binders was encapsulated with IVT2H such that single DNA molecules were distributed in individual drops. We validated drop-IVT2H by screening a three-random-residue library derived from a high-affinity MDM2 inhibitor PMI. The current drop-IVT2H platform is ideally suited for affinity screening of small-to-medium-sized libraries (10(3)–10(6)). It can obtain hits within a single day while consuming minimal amounts of reagents. Drop-IVT2H simplifies and accelerates the drop-based microfluidics workflow for screening random DNA libraries, and represents a novel alternative method for protein engineering and in vitro directed protein evolution.
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spelling pubmed-47780452016-03-09 A mix-and-read drop-based in vitro two-hybrid method for screening high-affinity peptide binders Cui, Naiwen Zhang, Huidan Schneider, Nils Tao, Ye Asahara, Haruichi Sun, Zhiyi Cai, Yamei Koehler, Stephan A. de Greef, Tom F. A. Abbaspourrad, Alireza Weitz, David A. Chong, Shaorong Sci Rep Article Drop-based microfluidics have recently become a novel tool by providing a stable linkage between phenotype and genotype for high throughput screening. However, use of drop-based microfluidics for screening high-affinity peptide binders has not been demonstrated due to the lack of a sensitive functional assay that can detect single DNA molecules in drops. To address this sensitivity issue, we introduced in vitro two-hybrid system (IVT2H) into microfluidic drops and developed a streamlined mix-and-read drop-IVT2H method to screen a random DNA library. Drop-IVT2H was based on the correlation between the binding affinity of two interacting protein domains and transcriptional activation of a fluorescent reporter. A DNA library encoding potential peptide binders was encapsulated with IVT2H such that single DNA molecules were distributed in individual drops. We validated drop-IVT2H by screening a three-random-residue library derived from a high-affinity MDM2 inhibitor PMI. The current drop-IVT2H platform is ideally suited for affinity screening of small-to-medium-sized libraries (10(3)–10(6)). It can obtain hits within a single day while consuming minimal amounts of reagents. Drop-IVT2H simplifies and accelerates the drop-based microfluidics workflow for screening random DNA libraries, and represents a novel alternative method for protein engineering and in vitro directed protein evolution. Nature Publishing Group 2016-03-04 /pmc/articles/PMC4778045/ /pubmed/26940078 http://dx.doi.org/10.1038/srep22575 Text en Copyright © 2016, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Cui, Naiwen
Zhang, Huidan
Schneider, Nils
Tao, Ye
Asahara, Haruichi
Sun, Zhiyi
Cai, Yamei
Koehler, Stephan A.
de Greef, Tom F. A.
Abbaspourrad, Alireza
Weitz, David A.
Chong, Shaorong
A mix-and-read drop-based in vitro two-hybrid method for screening high-affinity peptide binders
title A mix-and-read drop-based in vitro two-hybrid method for screening high-affinity peptide binders
title_full A mix-and-read drop-based in vitro two-hybrid method for screening high-affinity peptide binders
title_fullStr A mix-and-read drop-based in vitro two-hybrid method for screening high-affinity peptide binders
title_full_unstemmed A mix-and-read drop-based in vitro two-hybrid method for screening high-affinity peptide binders
title_short A mix-and-read drop-based in vitro two-hybrid method for screening high-affinity peptide binders
title_sort mix-and-read drop-based in vitro two-hybrid method for screening high-affinity peptide binders
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4778045/
https://www.ncbi.nlm.nih.gov/pubmed/26940078
http://dx.doi.org/10.1038/srep22575
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