N-terminal region of rice polycomb group protein OsEZ1 is required for OsEZ1-OsFIE2 protein interaction
- Authors
- Na, Jong-Kuk; Seo, Mi-Hye; Moon, Seok-Jun; Yoon, In-Sun; Lee, Yeon-Hee; Kim, Jae Kwang; Lee, Kyun Oh; Kim, Dool-Yi
- Issue Date
- Oct-2013
- Publisher
- SPRINGER
- Keywords
- Rice; Polycomb group protein; OsEZ1; Seed development
- Citation
- PLANT BIOTECHNOLOGY REPORTS, v.7, no.4, pp 503 - 510
- Pages
- 8
- Indexed
- SCIE
SCOPUS
KCI
- Journal Title
- PLANT BIOTECHNOLOGY REPORTS
- Volume
- 7
- Number
- 4
- Start Page
- 503
- End Page
- 510
- URI
- https://scholarworks.gnu.ac.kr/handle/sw.gnu/20451
- DOI
- 10.1007/s11816-013-0288-x
- ISSN
- 1863-5466
1863-5474
- Abstract
- Polycomb group (PcG) proteins form Polycomb Repressive Complex 2 (PRC2), which regulates seed development by the epigenetic control of gene expression. Interaction assay among Arabidopsis Fertilization-independent-seed2 (FIS) class PcG proteins showed that Fertilization-independent endosperm (FIE) interacts with Medea (MEA), a SET-domain polycomb protein, of which N-terminal region is crucial for the interaction. In this study, rice SET-domain PcG protein OsEZ1, also known as OsiEZ1 in indica rice, was analyzed to identify an interacting domain of OsEZ1 required for OsEZ1-OsFIE2 protein interaction. A series of OsEZ1 deletions were generated and used to determine an interacting domain of OsEZ1 with OsFIE2 using the yeast two-hybrid system. Among OsEZ1 deletions, only OsEZ1a dagger 2 and OsEZ1a dagger 3 interacted with OsFIE2, indicating that the 155K-169R or N-proximal region of OsEZ1 is crucial for OsFIE2-OsEZ1 interaction. To examine the physiological roles of OsEZ1, 35S:OsEZ1 Arabidopsis lines were generated. OsEZ1 overexpressors exhibited altered seedling growth and seed size, implying that OsEZ1 may play important roles in seedling and seed development.
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