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Deciphering the Role of Tyrosine Sulfation in Xanthomonas oryzae pv. oryzae Using Shotgun Proteomic Analysisopen access

Authors
Park, Hye-JeePark, Chang-JinBae, NaheeHan, Sang-Wook
Issue Date
Jun-2016
Publisher
KOREAN SOC PLANT PATHOLOGY
Keywords
proteomics; tyrosine sulfation; Xanthomonas oryzae pv. oryzae
Citation
PLANT PATHOLOGY JOURNAL, v.32, no.3, pp 266 - 272
Pages
7
Journal Title
PLANT PATHOLOGY JOURNAL
Volume
32
Number
3
Start Page
266
End Page
272
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/6874
DOI
10.5423/PPJ.NT.12.2015.0273
ISSN
1598-2254
2093-9280
Abstract
A bacterial tyrosine sulfotransferase, RaxST, is required for activation of rice XA21-mediated immunity, and it catalyzes sulfation of tyrosine residues of Omp1X and RaxX in Xanthomonas oryzae pv. oryzae, a causal agent of bacterial blight in rice. Although RaxST is biochemically well-characterized, biological functions of tyrosine sulfation have not been fully elucidated. We compared protein expression patterns between the wildtype and a raxST knockout mutant using shotgun proteomic analysis. Forty nine proteins displayed a more than 1.5-fold difference in their expression between the wildtype and the mutant strains. Clusters of orthologous groups analysis revealed that proteins involved in cell motility were most abundant, and phenotypic observation also showed that the twitching motility of the mutant was dramatically changed. These results indicate that tyrosine sulfation by RaxST is essential for Xoo movement, and they provide new insights into the biological roles of RaxST in cellular processes.
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Han, Sang-Wook
생명공학대학 (식물생명공학)
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