Cargando…

Activity Improvement and Vital Amino Acid Identification on the Marine-Derived Quorum Quenching Enzyme MomL by Protein Engineering

MomL is a marine-derived quorum-quenching (QQ) lactonase which can degrade various N-acyl homoserine lactones (AHLs). Intentional modification of MomL may lead to a highly efficient QQ enzyme with broad application potential. In this study, we used a rapid and efficient method combining error-prone...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Jiayi, Lin, Jing, Zhang, Yunhui, Zhang, Jingjing, Feng, Tao, Li, Hui, Wang, Xianghong, Sun, Qingyang, Zhang, Xiaohua, Wang, Yan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6562636/
https://www.ncbi.nlm.nih.gov/pubmed/31117226
http://dx.doi.org/10.3390/md17050300
_version_ 1783426347592318976
author Wang, Jiayi
Lin, Jing
Zhang, Yunhui
Zhang, Jingjing
Feng, Tao
Li, Hui
Wang, Xianghong
Sun, Qingyang
Zhang, Xiaohua
Wang, Yan
author_facet Wang, Jiayi
Lin, Jing
Zhang, Yunhui
Zhang, Jingjing
Feng, Tao
Li, Hui
Wang, Xianghong
Sun, Qingyang
Zhang, Xiaohua
Wang, Yan
author_sort Wang, Jiayi
collection PubMed
description MomL is a marine-derived quorum-quenching (QQ) lactonase which can degrade various N-acyl homoserine lactones (AHLs). Intentional modification of MomL may lead to a highly efficient QQ enzyme with broad application potential. In this study, we used a rapid and efficient method combining error-prone polymerase chain reaction (epPCR), high-throughput screening and site-directed mutagenesis to identify highly active MomL mutants. In this way, we obtained two candidate mutants, MomL(I144V) and MomL(V149A). These two mutants exhibited enhanced activities and blocked the production of pathogenic factors of Pectobacterium carotovorum subsp. carotovorum (Pcc). Besides, seven amino acids which are vital for MomL enzyme activity were identified. Substitutions of these amino acids (E238G/K205E/L254R) in MomL led to almost complete loss of its QQ activity. We then tested the effect of MomL and its mutants on Pcc-infected Chinese cabbage. The results indicated that MomL and its mutants (MomL(L254R), MomL(I144V), MomL(V149A)) significantly decreased the pathogenicity of Pcc. This study provides an efficient method for QQ enzyme modification and gives us new clues for further investigation on the catalytic mechanism of QQ lactonase.
format Online
Article
Text
id pubmed-6562636
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-65626362019-06-17 Activity Improvement and Vital Amino Acid Identification on the Marine-Derived Quorum Quenching Enzyme MomL by Protein Engineering Wang, Jiayi Lin, Jing Zhang, Yunhui Zhang, Jingjing Feng, Tao Li, Hui Wang, Xianghong Sun, Qingyang Zhang, Xiaohua Wang, Yan Mar Drugs Article MomL is a marine-derived quorum-quenching (QQ) lactonase which can degrade various N-acyl homoserine lactones (AHLs). Intentional modification of MomL may lead to a highly efficient QQ enzyme with broad application potential. In this study, we used a rapid and efficient method combining error-prone polymerase chain reaction (epPCR), high-throughput screening and site-directed mutagenesis to identify highly active MomL mutants. In this way, we obtained two candidate mutants, MomL(I144V) and MomL(V149A). These two mutants exhibited enhanced activities and blocked the production of pathogenic factors of Pectobacterium carotovorum subsp. carotovorum (Pcc). Besides, seven amino acids which are vital for MomL enzyme activity were identified. Substitutions of these amino acids (E238G/K205E/L254R) in MomL led to almost complete loss of its QQ activity. We then tested the effect of MomL and its mutants on Pcc-infected Chinese cabbage. The results indicated that MomL and its mutants (MomL(L254R), MomL(I144V), MomL(V149A)) significantly decreased the pathogenicity of Pcc. This study provides an efficient method for QQ enzyme modification and gives us new clues for further investigation on the catalytic mechanism of QQ lactonase. MDPI 2019-05-21 /pmc/articles/PMC6562636/ /pubmed/31117226 http://dx.doi.org/10.3390/md17050300 Text en © 2019 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wang, Jiayi
Lin, Jing
Zhang, Yunhui
Zhang, Jingjing
Feng, Tao
Li, Hui
Wang, Xianghong
Sun, Qingyang
Zhang, Xiaohua
Wang, Yan
Activity Improvement and Vital Amino Acid Identification on the Marine-Derived Quorum Quenching Enzyme MomL by Protein Engineering
title Activity Improvement and Vital Amino Acid Identification on the Marine-Derived Quorum Quenching Enzyme MomL by Protein Engineering
title_full Activity Improvement and Vital Amino Acid Identification on the Marine-Derived Quorum Quenching Enzyme MomL by Protein Engineering
title_fullStr Activity Improvement and Vital Amino Acid Identification on the Marine-Derived Quorum Quenching Enzyme MomL by Protein Engineering
title_full_unstemmed Activity Improvement and Vital Amino Acid Identification on the Marine-Derived Quorum Quenching Enzyme MomL by Protein Engineering
title_short Activity Improvement and Vital Amino Acid Identification on the Marine-Derived Quorum Quenching Enzyme MomL by Protein Engineering
title_sort activity improvement and vital amino acid identification on the marine-derived quorum quenching enzyme moml by protein engineering
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6562636/
https://www.ncbi.nlm.nih.gov/pubmed/31117226
http://dx.doi.org/10.3390/md17050300
work_keys_str_mv AT wangjiayi activityimprovementandvitalaminoacididentificationonthemarinederivedquorumquenchingenzymemomlbyproteinengineering
AT linjing activityimprovementandvitalaminoacididentificationonthemarinederivedquorumquenchingenzymemomlbyproteinengineering
AT zhangyunhui activityimprovementandvitalaminoacididentificationonthemarinederivedquorumquenchingenzymemomlbyproteinengineering
AT zhangjingjing activityimprovementandvitalaminoacididentificationonthemarinederivedquorumquenchingenzymemomlbyproteinengineering
AT fengtao activityimprovementandvitalaminoacididentificationonthemarinederivedquorumquenchingenzymemomlbyproteinengineering
AT lihui activityimprovementandvitalaminoacididentificationonthemarinederivedquorumquenchingenzymemomlbyproteinengineering
AT wangxianghong activityimprovementandvitalaminoacididentificationonthemarinederivedquorumquenchingenzymemomlbyproteinengineering
AT sunqingyang activityimprovementandvitalaminoacididentificationonthemarinederivedquorumquenchingenzymemomlbyproteinengineering
AT zhangxiaohua activityimprovementandvitalaminoacididentificationonthemarinederivedquorumquenchingenzymemomlbyproteinengineering
AT wangyan activityimprovementandvitalaminoacididentificationonthemarinederivedquorumquenchingenzymemomlbyproteinengineering