Demyristoylation of the cytoplasmic redox protein Trx-h2 is critical for inducing a rapid cold stress response in plants

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dc.contributor.authorE S Lee-
dc.contributor.authorJ H Park-
dc.contributor.authorS D Wi-
dc.contributor.authorH B Chae-
dc.contributor.authorS K Paeng-
dc.contributor.authorS B Bae-
dc.contributor.authorK A T Phan-
dc.contributor.authorM G Kim-
dc.contributor.authorSang Soo Kwak-
dc.contributor.authorW Y Kim-
dc.contributor.authorD J Yun-
dc.contributor.authorS Y Lee-
dc.date.accessioned2021-08-24T15:30:21Z-
dc.date.available2021-08-24T15:30:21Z-
dc.date.issued2021-
dc.identifier.issn2076-3921-
dc.identifier.urihttps://oak.kribb.re.kr/handle/201005/24665-
dc.description.abstractIn Arabidopsis, the cytosolic redox protein thioredoxin h2 (Trx-h2) is anchored to the cytoplasmic endomembrane through the myristoylated second glycine residue (Gly2). However, under cold stress, the cytosolic Trx-h2 is rapidly translocated to the nucleus, where it interacts with and reduces the cold-responsive C-repeat-binding factors (CBFs), thus activating cold-responsive (COR) genes. In this study, we investigated the significance of fatty acid modification of Trx-h2 under cold conditions by generating transgenic Arabidopsis lines in the trx-h2 mutant background, overexpressing Trx-h2 (Trx-h2OE/trx-h2) and its point mutation variant Trx-h2(G/A) [Trx-h2(G/A)OE/trx-h2], in which the Gly2 was replaced by alanine (Ala). Due to the lack of Gly2, Trx-h2(G/A) was incapable of myristoylation, and a part of Trx-h2(G/A) localized to the nucleus even under warm temperature. As no time is spent on the demyristoylation and subsequent nuclear translocation of Trx-h2(G/A) under a cold snap, the ability of Trx-h2(G/A) to protect plants from cold stress was greater than that of Trx-h2. Additionally, COR genes were up-regulated earlier in Trx-h2(G/A)2OE/trx-h2 plants than in Trx-h2OE/trx-h2 plants under cold stress. Consequently, Trx-h2(G/A)2OE/trx-h2 plants showed greater cold tolerance than Col-0 (wild type) and Trx-h2OE/trx-h2 plants. Overall, our results clearly demonstrate the significance of the demyristoylation of Trx-h2 in enhancing plant cold/freezing tolerance.-
dc.publisherMDPI-
dc.titleDemyristoylation of the cytoplasmic redox protein Trx-h2 is critical for inducing a rapid cold stress response in plants-
dc.title.alternativeDemyristoylation of the cytoplasmic redox protein Trx-h2 is critical for inducing a rapid cold stress response in plants-
dc.typeArticle-
dc.citation.titleAntioxidants-
dc.citation.number8-
dc.citation.endPage1287-
dc.citation.startPage1287-
dc.citation.volume10-
dc.contributor.affiliatedAuthorSang Soo Kwak-
dc.contributor.alternativeName이은선-
dc.contributor.alternativeName박정훈-
dc.contributor.alternativeName위성동-
dc.contributor.alternativeName채호병-
dc.contributor.alternativeName팽설기-
dc.contributor.alternativeName배수빈-
dc.contributor.alternativeNamePhan-
dc.contributor.alternativeName김민갑-
dc.contributor.alternativeName곽상수-
dc.contributor.alternativeName김왜연-
dc.contributor.alternativeName윤대진-
dc.contributor.alternativeName이상열-
dc.identifier.bibliographicCitationAntioxidants, vol. 10, no. 8, pp. 1287-1287-
dc.identifier.doi10.3390/antiox10081287-
dc.subject.keywordThioredoxin h2-
dc.subject.keywordMyristoylation/demyristoylation-
dc.subject.keywordNuclear translocation-
dc.subject.keywordC-repeat binding factors (CBFs)-
dc.subject.keywordCold/freezing stress-
dc.subject.keywordTrx-h2(G/A) point mutation variant-
dc.subject.keywordTransgenic Arabidopsis-
dc.subject.localThioredoxin h2-
dc.subject.localMyristoylation/demyristoylation-
dc.subject.localNuclear translocation-
dc.subject.localC-repeat binding factors (CBFs)-
dc.subject.localCold/freezing stress-
dc.subject.localTrx-h2(G/A) point mutation variant-
dc.subject.localTransgenic arabidopsis-
dc.subject.localTransgenic Arabidopsis-
dc.description.journalClassY-
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Division of Research on National Challenges > Plant Systems Engineering Research > 1. Journal Articles
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