调节器
突变
GTP酶
计算生物学
对接(动物)
生物
结合位点
细胞生物学
化学
生物物理学
生物化学
突变
基因
护理部
医学
作者
Ming-Yan Cheung,Jacky Chi Ki Ngo,Zhongzhou Chen,Qi Jia,Tianjie Li,Yitao Gou,Yi Wang,Hon‐Ming Lam
摘要
The unconventional G-protein OsYchF1 plays regulatory roles in plant defense and abiotic stress responses. We have previously resolved the crystal structures of OsYchF1 and its plant-specific regulator, OsGAP1, and determined the residues on OsGAP1 that are essential for its binding to OsYchF1. In this study, we employed site-directed mutagenesis to identify four critical residues on the TGS domain of OsYchF1 that are critical for its binding to OsGAP1. We also generated a docking model of the OsYchF1 : OsGAP1 complex to dissect the molecular basis of their interactions. Our finding not only reveals the roles of the key interacting residues controlling the binding between OsYchF1 and OsGAP1, but also provides a working model on the potential regulatory mechanism mediated by a TGS domain, particularly in the class of GTPase of the OBG family.
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