Phytophthora infestans causes severe losses in potato production. The MAPK kinase StMKK1 was previously found to negatively regulate potato immunity to P. infestans. Our results showed that StMKK1 interacts with a protein tyrosine phosphatase, referred to as StPTP1a, and StMKK1 directly phosphorylates StPTP1a at residues Ser-99, Tyr-223 and Thr-290. StPTP1a is a functional phosphatase and the phosphorylation of StPTP1a at these three residues enhances its stability and catalytic activity. StPTP1a negatively regulates potato immunity and represses SA-related gene expression. Furthermore, StPTP1a interacts with, and dephosphorylates, the StMKK1 downstream signalling targets StMPK4 and -7 at their Tyr-203 residue resulting in the repression of salicylic acid (SA)-related immunity. Silencing of NbPTP1aâ+âNbMPK4 or NbPTP1aâ+âNbMPK7 abolished the plant immunity to P. infestans caused by NbPTP1a silencing, indicating that PTP1a functions upstream of NbMPK4 and NbMPK7. StMKK1 requires StPTP1a to negatively regulate SA-related immunity and StPTP1a is phosphorylated and stabilized during immune activation to promote the de-phosphorylation of StMPK4 and -7. Our results reveal that potato StMKK1 activates and stabilizes the tyrosine phosphatase StPTP1a that in its turn de-phosphorylates StMPK4 and -7, thereby repressing plant SA-related immunity.
Potato protein tyrosine phosphatase StPTP1a is activated by StMKK1 to negatively regulate plant immunity.
马铃薯蛋白酪氨酸磷酸酶 StPTP1a 被 StMKK1 激活,从而对植物免疫力产生负调控作用
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作者:Li Fangfang, Chen Xiaokang, Yang Ruixin, Zhang Kun, Shan Weixing, Joosten Matthieu H A J, Du Yu
| 期刊: | Plant Biotechnology Journal | 影响因子: | 10.500 |
| 时间: | 2023 | 起止号: | 2023 Mar;21(3):646-661 |
| doi: | 10.1111/pbi.13979 | 研究方向: | 其它 |
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