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1. Dual lysine and N‐terminal acetyltransferases reveal the complexity underpinning protein acetylation

2. Beyond Histones: New Substrate Proteins of Lysine Deacetylases in Arabidopsis Nuclei

3. PAPE (Prefractionation-Assisted Phosphoprotein Enrichment): A Novel Approach for Phosphoproteomic Analysis of Green Tissues from Plants

4. Arabidopsis protein phosphatase DBP1 nucleates a protein network with a role in regulating plant defense.

5. In vivo evidence for a regulatory role of phosphorylation of Arabidopsis Rubisco activase at the Thr78 site

6. Dual lysine and N‐terminal acetyltransferases reveal the complexity underpinning protein acetylation

7. High-Resolution Lysine Acetylome Profiling by Offline Fractionation and Immunoprecipitation

8. High-Resolution Lysine Acetylome Profiling by Offline Fractionation and Immunoprecipitation

9. In vivo evidence for a regulatory role of phosphorylation of

10. Lysine acetylation in mitochondria: From inventory to function

11. Uncovering mechanisms of rubber biosynthesis in Taraxacum koksaghyz - role of cis-prenyltransferase-like 1 protein

12. Chloroplast Acetyltransferase NSI Is Required for State Transitions in

13. YODA MAP3K kinase regulates plant immune responses conferring broad-spectrum disease resistance

14. Dimethyl-Labeling-Based Quantification of the Lysine Acetylome and Proteome of Plants

15. Targeted Proteomics Analysis of Protein Degradation in Plant Signaling on an LTQ-Orbitrap Mass Spectrometer

16. PAPE (Prefractionation-Assisted Phosphoprotein Enrichment): A Novel Approach for Phosphoproteomic Analysis of Green Tissues from Plants

17. Dimethyl-Labeling-Based Quantification of the Lysine Acetylome and Proteome of Plants

18. A protein phosphatase 2C, responsive to the bacterial effector AvrRpm1 but not to the AvrB effector, regulates defense responses in Arabidopsis

19. Phosphoprotein Enrichment Combined with Phosphopeptide Enrichment to Identify Putative Phosphoproteins During Defense Response in Arabidopsis thaliana

20. Phosphoprotein Enrichment Combined with Phosphopeptide Enrichment to Identify Putative Phosphoproteins During Defense Response in Arabidopsis thaliana

21. Sustained mitogen-activated protein kinase activation reprograms defense metabolism and phosphoprotein profile in Arabidopsis thaliana

22. Arabidopsis protein phosphatase DBP1 nucleates a protein network with a role in regulating plant defense

23. A protein phosphatase 2C, responsive to the bacterial effector AvrRpm1 but not to the AvrB effector, regulates defense responses in Arabidopsis

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