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Genes, Structural, and Biochemical Characterization of Four Chlorophyllases from Solanum lycopersicum

Recent studies have confirmed that chlorophyllase (CLH), a long-found chlorophyll (Chl) dephytylation enzyme for initiating Chl catabolism, has no function in leaf senescence-related Chl breakdown. Yet, CLH is considered to be involved in fruit degreening and responds to external and hormonal stimul...

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Autores principales: Liu, Guangyuan, Meng, Xue, Ren, Yujun, Zhang, Min, Chen, Ziqing, Zhang, Zhaoqi, Pang, Xuequn, Zhang, Xuelian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9570282/
https://www.ncbi.nlm.nih.gov/pubmed/36233017
http://dx.doi.org/10.3390/ijms231911716
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author Liu, Guangyuan
Meng, Xue
Ren, Yujun
Zhang, Min
Chen, Ziqing
Zhang, Zhaoqi
Pang, Xuequn
Zhang, Xuelian
author_facet Liu, Guangyuan
Meng, Xue
Ren, Yujun
Zhang, Min
Chen, Ziqing
Zhang, Zhaoqi
Pang, Xuequn
Zhang, Xuelian
author_sort Liu, Guangyuan
collection PubMed
description Recent studies have confirmed that chlorophyllase (CLH), a long-found chlorophyll (Chl) dephytylation enzyme for initiating Chl catabolism, has no function in leaf senescence-related Chl breakdown. Yet, CLH is considered to be involved in fruit degreening and responds to external and hormonal stimuli. The purpose of this work was to elucidate in detail the biochemical, structural properties, and gene expression of four CLHs from the Solanum lycopersicum genome so as to understand the roles of Solanum lycopersicum chlorophyllases (SlCLHs). SlCLH1/4 were the predominantly expressed CLH genes during leaf and fruit development/ripening stages, and SlCLH1 in mature green fruit was modulated by light. SlCLH1/2/3/4 contained a highly conserved GHSXG lipase motif and a Ser-Asp-His catalytic triad. We identified Ser159, Asp226, and His258 as the essential catalytic triad by site-directed mutagenesis in recombinant SlCLH1. Kinetic analysis of the recombinant enzymes revealed that SlCLH1 had high hydrolysis activities against Chl a, Chl b, and pheophytin a (Phein a), but preferred Chl a and Chl b over Phein a; SlCLH2/3 only showed very low activity to Chl a and Chl b, while SlCLH4 showed no Chl dephytylation activity. The recombinant SlCLH1/2/3 had different pH stability and temperature optimum. Removal of the predicted N-terminal processing peptide caused a partial loss of activity in recombinant SlCLH1/2 but did not compromise SlCLH3 activity. These different characteristics among SlCLHs imply that they may have different physiological functions in tomato.
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spelling pubmed-95702822022-10-17 Genes, Structural, and Biochemical Characterization of Four Chlorophyllases from Solanum lycopersicum Liu, Guangyuan Meng, Xue Ren, Yujun Zhang, Min Chen, Ziqing Zhang, Zhaoqi Pang, Xuequn Zhang, Xuelian Int J Mol Sci Article Recent studies have confirmed that chlorophyllase (CLH), a long-found chlorophyll (Chl) dephytylation enzyme for initiating Chl catabolism, has no function in leaf senescence-related Chl breakdown. Yet, CLH is considered to be involved in fruit degreening and responds to external and hormonal stimuli. The purpose of this work was to elucidate in detail the biochemical, structural properties, and gene expression of four CLHs from the Solanum lycopersicum genome so as to understand the roles of Solanum lycopersicum chlorophyllases (SlCLHs). SlCLH1/4 were the predominantly expressed CLH genes during leaf and fruit development/ripening stages, and SlCLH1 in mature green fruit was modulated by light. SlCLH1/2/3/4 contained a highly conserved GHSXG lipase motif and a Ser-Asp-His catalytic triad. We identified Ser159, Asp226, and His258 as the essential catalytic triad by site-directed mutagenesis in recombinant SlCLH1. Kinetic analysis of the recombinant enzymes revealed that SlCLH1 had high hydrolysis activities against Chl a, Chl b, and pheophytin a (Phein a), but preferred Chl a and Chl b over Phein a; SlCLH2/3 only showed very low activity to Chl a and Chl b, while SlCLH4 showed no Chl dephytylation activity. The recombinant SlCLH1/2/3 had different pH stability and temperature optimum. Removal of the predicted N-terminal processing peptide caused a partial loss of activity in recombinant SlCLH1/2 but did not compromise SlCLH3 activity. These different characteristics among SlCLHs imply that they may have different physiological functions in tomato. MDPI 2022-10-03 /pmc/articles/PMC9570282/ /pubmed/36233017 http://dx.doi.org/10.3390/ijms231911716 Text en © 2022 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
Liu, Guangyuan
Meng, Xue
Ren, Yujun
Zhang, Min
Chen, Ziqing
Zhang, Zhaoqi
Pang, Xuequn
Zhang, Xuelian
Genes, Structural, and Biochemical Characterization of Four Chlorophyllases from Solanum lycopersicum
title Genes, Structural, and Biochemical Characterization of Four Chlorophyllases from Solanum lycopersicum
title_full Genes, Structural, and Biochemical Characterization of Four Chlorophyllases from Solanum lycopersicum
title_fullStr Genes, Structural, and Biochemical Characterization of Four Chlorophyllases from Solanum lycopersicum
title_full_unstemmed Genes, Structural, and Biochemical Characterization of Four Chlorophyllases from Solanum lycopersicum
title_short Genes, Structural, and Biochemical Characterization of Four Chlorophyllases from Solanum lycopersicum
title_sort genes, structural, and biochemical characterization of four chlorophyllases from solanum lycopersicum
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9570282/
https://www.ncbi.nlm.nih.gov/pubmed/36233017
http://dx.doi.org/10.3390/ijms231911716
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