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Directed evolution of a cyclodipeptide synthase with new activities via label-free mass spectrometric screening

Directed evolution is a powerful approach to engineer enzymes via iterative creation and screening of variant libraries. However, assay development for high-throughput mutant screening remains challenging, particularly for new catalytic activities. Mass spectrometry (MS) analysis is label-free and w...

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Autores principales: Zhang, Songya, Zhu, Jing, Fan, Shuai, Xie, Wenhao, Yang, Zhaoyong, Si, Tong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9241961/
https://www.ncbi.nlm.nih.gov/pubmed/35872818
http://dx.doi.org/10.1039/d2sc01637k
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author Zhang, Songya
Zhu, Jing
Fan, Shuai
Xie, Wenhao
Yang, Zhaoyong
Si, Tong
author_facet Zhang, Songya
Zhu, Jing
Fan, Shuai
Xie, Wenhao
Yang, Zhaoyong
Si, Tong
author_sort Zhang, Songya
collection PubMed
description Directed evolution is a powerful approach to engineer enzymes via iterative creation and screening of variant libraries. However, assay development for high-throughput mutant screening remains challenging, particularly for new catalytic activities. Mass spectrometry (MS) analysis is label-free and well suited for untargeted discovery of new enzyme products but is traditionally limited by slow speed. Here we report an automated workflow for directed evolution of new enzymatic activities via high-throughput library creation and label-free MS screening. For a proof of concept, we chose to engineer a cyclodipeptide synthase (CDPS) that synthesizes diketopiperazine (DKP) compounds with therapeutic potential. In recombinant Escherichia coli, site-saturation mutagenesis (SSM) and error-prone PCR (epPCR) libraries expressing CDPS mutants were automatically created and cultivated on an integrated work cell. Culture supernatants were then robotically processed for matrix-assisted laser desorption/ionization time-of-flight (MALDI-ToF) MS analysis at a rate of 5 s per sample. The resulting mass spectral data were processed via custom computational algorithms, which performed a multivariant analysis of 108 theoretical mass-to-charge (m/z) values of 190 possible DKP molecules within a mass window of 115–373 Da. An F186L CDPS mutant was isolated to produce cyclo(l-Phe–l-Val), which is undetectable in the product profile of the wild-type enzyme. This robotic, label-free MS screening approach may be generally applicable to engineering other enzymes with new activities in high throughput.
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spelling pubmed-92419612022-07-22 Directed evolution of a cyclodipeptide synthase with new activities via label-free mass spectrometric screening Zhang, Songya Zhu, Jing Fan, Shuai Xie, Wenhao Yang, Zhaoyong Si, Tong Chem Sci Chemistry Directed evolution is a powerful approach to engineer enzymes via iterative creation and screening of variant libraries. However, assay development for high-throughput mutant screening remains challenging, particularly for new catalytic activities. Mass spectrometry (MS) analysis is label-free and well suited for untargeted discovery of new enzyme products but is traditionally limited by slow speed. Here we report an automated workflow for directed evolution of new enzymatic activities via high-throughput library creation and label-free MS screening. For a proof of concept, we chose to engineer a cyclodipeptide synthase (CDPS) that synthesizes diketopiperazine (DKP) compounds with therapeutic potential. In recombinant Escherichia coli, site-saturation mutagenesis (SSM) and error-prone PCR (epPCR) libraries expressing CDPS mutants were automatically created and cultivated on an integrated work cell. Culture supernatants were then robotically processed for matrix-assisted laser desorption/ionization time-of-flight (MALDI-ToF) MS analysis at a rate of 5 s per sample. The resulting mass spectral data were processed via custom computational algorithms, which performed a multivariant analysis of 108 theoretical mass-to-charge (m/z) values of 190 possible DKP molecules within a mass window of 115–373 Da. An F186L CDPS mutant was isolated to produce cyclo(l-Phe–l-Val), which is undetectable in the product profile of the wild-type enzyme. This robotic, label-free MS screening approach may be generally applicable to engineering other enzymes with new activities in high throughput. The Royal Society of Chemistry 2022-06-02 /pmc/articles/PMC9241961/ /pubmed/35872818 http://dx.doi.org/10.1039/d2sc01637k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Zhang, Songya
Zhu, Jing
Fan, Shuai
Xie, Wenhao
Yang, Zhaoyong
Si, Tong
Directed evolution of a cyclodipeptide synthase with new activities via label-free mass spectrometric screening
title Directed evolution of a cyclodipeptide synthase with new activities via label-free mass spectrometric screening
title_full Directed evolution of a cyclodipeptide synthase with new activities via label-free mass spectrometric screening
title_fullStr Directed evolution of a cyclodipeptide synthase with new activities via label-free mass spectrometric screening
title_full_unstemmed Directed evolution of a cyclodipeptide synthase with new activities via label-free mass spectrometric screening
title_short Directed evolution of a cyclodipeptide synthase with new activities via label-free mass spectrometric screening
title_sort directed evolution of a cyclodipeptide synthase with new activities via label-free mass spectrometric screening
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9241961/
https://www.ncbi.nlm.nih.gov/pubmed/35872818
http://dx.doi.org/10.1039/d2sc01637k
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