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Cited 4 time in webofscience Cited 7 time in scopus
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Functional Characterization of a Rice Thioredoxin Protein OsTrxm and Its Cysteine Mutant Variant with Antifungal Activityopen access

Authors
Park, Seong-CheolKim, Il RyongKim, Jin-YoungLee, YongjaeYoo, Su-HyangJung, Ji HyunCheong, Gang-WonLee, Sang YeolJang, Mi-KyeongLee, Jung Ro
Issue Date
Dec-2019
Publisher
MDPI
Keywords
OsTrxm; active cysteine; antifungal protein; rice; pathogen
Citation
ANTIOXIDANTS, v.8, no.12
Indexed
SCIE
SCOPUS
Journal Title
ANTIOXIDANTS
Volume
8
Number
12
URI
https://scholarworks.bwise.kr/gnu/handle/sw.gnu/8477
DOI
10.3390/antiox8120598
ISSN
2076-3921
Abstract
Although there are many antimicrobial proteins in plants, they are not well-explored. Understanding the mechanism of action of plant antifungal proteins (AFPs) may help combat fungal infections that impact crop yields. In this study, we aimed to address this gap by screening Oryza sativa leaves to isolate novel AFPs. We identified a thioredoxin protein with antioxidant properties. Being ubiquitous, thioredoxins (Trxs) function in the redox balance of all living organisms. Sequencing by Edman degradation method revealed the AFP to be O. sativa Thioredoxin m-type isoform (OsTrxm). We purified the recombinant OsTrxm and its cysteine mutant proteins (OsTrxm C/S) in Escherichia coli. The recombinant OsTrxm proteins inhibited the growth of various pathogenic fungal cells. Interestingly, OsTrxm C/S mutant showed higher antifungal activity than OsTrxm. A growth inhibitory assay against various fungal pathogens and yeasts confirmed the pertinent role of cysteine residues. The OsTrxm protein variants penetrated the fungal cell wall and membrane, accumulated in the cells and generated reactive oxygen species. Although the role of OsTrxm in chloroplast development is known, its biochemical and molecular functions have not been elucidated. These findings suggest that in addition to redox regulation, OsTrxm also functions as an antimicrobial agent.
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