Structure and antimicrobial activity of NCR169, a nodule-specific cysteine-rich peptide of Medicago truncatula

Abstract A model legume, Medicago truncatula, has over 600 nodule-specific cysteine-rich (NCR) peptides required for symbiosis with rhizobia. Among them, NCR169, an essential factor for establishing symbiosis, has four cysteine residues that are indispensable for its function. However, knowledge of...

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Main Authors: Noriyoshi Isozumi, Yuya Masubuchi, Tomohiro Imamura, Masashi Mori, Hironori Koga, Shinya Ohki
Format: Article
Language:English
Published: Nature Publishing Group 2021-05-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-021-89485-w
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spelling doaj-219e7e335d924fcd8a489737c3b2bfd92021-05-11T14:56:32ZengNature Publishing GroupScientific Reports2045-23222021-05-0111111210.1038/s41598-021-89485-wStructure and antimicrobial activity of NCR169, a nodule-specific cysteine-rich peptide of Medicago truncatulaNoriyoshi Isozumi0Yuya Masubuchi1Tomohiro Imamura2Masashi Mori3Hironori Koga4Shinya Ohki5Center for Nano Materials and Technology (CNMT), Japan Advanced Institute of Science and Technology (JAIST)Center for Nano Materials and Technology (CNMT), Japan Advanced Institute of Science and Technology (JAIST)Ishikawa Prefectural UniversityIshikawa Prefectural UniversityIshikawa Prefectural UniversityCenter for Nano Materials and Technology (CNMT), Japan Advanced Institute of Science and Technology (JAIST)Abstract A model legume, Medicago truncatula, has over 600 nodule-specific cysteine-rich (NCR) peptides required for symbiosis with rhizobia. Among them, NCR169, an essential factor for establishing symbiosis, has four cysteine residues that are indispensable for its function. However, knowledge of NCR169 structure and mechanism of action is still lacking. In this study, we solved two NMR structures of NCR169 caused by different disulfide linkage patterns. We show that both structures have a consensus C-terminal β-sheet attached to an extended N-terminal region with dissimilar features; one moves widely, whereas the other is relatively stapled. We further revealed that the disulfide bonds of NCR169 contribute to its structural stability and solubility. Regarding the function, one of the NCR169 oxidized forms could bind to negatively charged bacterial phospholipids. Furthermore, the positively charged lysine-rich region of NCR169 may be responsible for its antimicrobial activity against Escherichia coli and Sinorhizobium meliloti. This active region was disordered even in the phospholipid bound state, suggesting that the disordered conformation of this region is key to its function. Morphological observations suggested the mechanism of action of NCR169 on bacteria. The present study on NCR169 provides new insights into the structure and function of NCR peptides.https://doi.org/10.1038/s41598-021-89485-w
collection DOAJ
language English
format Article
sources DOAJ
author Noriyoshi Isozumi
Yuya Masubuchi
Tomohiro Imamura
Masashi Mori
Hironori Koga
Shinya Ohki
spellingShingle Noriyoshi Isozumi
Yuya Masubuchi
Tomohiro Imamura
Masashi Mori
Hironori Koga
Shinya Ohki
Structure and antimicrobial activity of NCR169, a nodule-specific cysteine-rich peptide of Medicago truncatula
Scientific Reports
author_facet Noriyoshi Isozumi
Yuya Masubuchi
Tomohiro Imamura
Masashi Mori
Hironori Koga
Shinya Ohki
author_sort Noriyoshi Isozumi
title Structure and antimicrobial activity of NCR169, a nodule-specific cysteine-rich peptide of Medicago truncatula
title_short Structure and antimicrobial activity of NCR169, a nodule-specific cysteine-rich peptide of Medicago truncatula
title_full Structure and antimicrobial activity of NCR169, a nodule-specific cysteine-rich peptide of Medicago truncatula
title_fullStr Structure and antimicrobial activity of NCR169, a nodule-specific cysteine-rich peptide of Medicago truncatula
title_full_unstemmed Structure and antimicrobial activity of NCR169, a nodule-specific cysteine-rich peptide of Medicago truncatula
title_sort structure and antimicrobial activity of ncr169, a nodule-specific cysteine-rich peptide of medicago truncatula
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2021-05-01
description Abstract A model legume, Medicago truncatula, has over 600 nodule-specific cysteine-rich (NCR) peptides required for symbiosis with rhizobia. Among them, NCR169, an essential factor for establishing symbiosis, has four cysteine residues that are indispensable for its function. However, knowledge of NCR169 structure and mechanism of action is still lacking. In this study, we solved two NMR structures of NCR169 caused by different disulfide linkage patterns. We show that both structures have a consensus C-terminal β-sheet attached to an extended N-terminal region with dissimilar features; one moves widely, whereas the other is relatively stapled. We further revealed that the disulfide bonds of NCR169 contribute to its structural stability and solubility. Regarding the function, one of the NCR169 oxidized forms could bind to negatively charged bacterial phospholipids. Furthermore, the positively charged lysine-rich region of NCR169 may be responsible for its antimicrobial activity against Escherichia coli and Sinorhizobium meliloti. This active region was disordered even in the phospholipid bound state, suggesting that the disordered conformation of this region is key to its function. Morphological observations suggested the mechanism of action of NCR169 on bacteria. The present study on NCR169 provides new insights into the structure and function of NCR peptides.
url https://doi.org/10.1038/s41598-021-89485-w
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