| Literature DB >> 26286751 |
Yuk-Lin Yung1, Ming-Yan Cheung1, Rui Miao2, Yu-Hang Fong3, Kwan-Pok Li1, Mei-Hui Yu1, Mee-Len Chye4, Kam-Bo Wong3, Hon-Ming Lam5.
Abstract
The C2 domain is one of the most diverse phospholipid-binding domains mediating cellular signaling. One group of C2-domain proteins are plant-specific and are characterized by their small sizes and simple structures. We have previously reported that a member of this group, OsGAP1, is able to alleviate salt stress and stimulate defense responses, and bind to both phospholipids and an unconventional G-protein, OsYchF1. Here we solved the crystal structure of OsGAP1 to a resolution of 1.63 Å. Using site-directed mutagenesis, we successfully differentiated between the clusters of surface residues that are required for binding to phospholipids versus OsYchF1, which, in turn, is critical for its role in stimulating defense responses. On the other hand, the ability to alleviate salt stress by OsGAP1 is dependent only on its ability to bind OsYchF1 and is independent of its phospholipid-binding activity.Entities:
Keywords: G protein; crystal structure; phospholipid; plant defense; plasma membrane
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Year: 2015 PMID: 26286751 PMCID: PMC4583037 DOI: 10.1074/jbc.M115.655639
Source DB: PubMed Journal: J Biol Chem ISSN: 0021-9258 Impact factor: 5.157