Arabidopsis Disulfide Reductase, Trx-h2, Functions as an RNA Chaperone under Cold Stressopen access
- Authors
- Lee, Eun Seon; Park, Joung Hun; Wi, Seong Dong; Chae, Ho Byoung; Paeng, Seol Ki; Bae, Su Bin; Kieu Anh Thi Phan; Lee, Sang Yeol
- Issue Date
- Aug-2021
- Publisher
- MDPI
- Keywords
- RNA chaperone; thioredoxin; Trx-h2; cold stress
- Citation
- APPLIED SCIENCES-BASEL, v.11, no.15
- Indexed
- SCIE
SCOPUS
- Journal Title
- APPLIED SCIENCES-BASEL
- Volume
- 11
- Number
- 15
- URI
- https://scholarworks.gnu.ac.kr/handle/sw.gnu/72882
- DOI
- 10.3390/app11156865
- ISSN
- 2076-3417
- Abstract
- The thioredoxin-h (Trx-h) family of Arabidopsis thaliana comprises cytosolic disulfide reductases. However, the physiological function of Trx-h2, which contains an additional 19 amino acids at its N-terminus, remains unclear. In this study, we investigated the molecular function of Trx-h2 both in vitro and in vivo and found that Arabidopsis Trx-h2 overexpression (Trx-h2(OE)) lines showed significantly longer roots than wild-type plants under cold stress. Therefore, we further investigated the role of Trx-h2 under cold stress. Our results revealed that Trx-h2 functions as an RNA chaperone by melting misfolded and non-functional RNAs, and by facilitating their correct folding into active forms with native conformation. We showed that Trx-h2 binds to and efficiently melts nucleic acids (ssDNA, dsDNA, and RNA), and facilitates the export of mRNAs from the nucleus to the cytoplasm under cold stress. Moreover, overexpression of Trx-h2 increased the survival rate of the cold-sensitive E. coli BX04 cells under low temperature. Thus, our data show that Trx-h2 performs function as an RNA chaperone under cold stress, thus increasing plant cold tolerance.
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