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

8. NAA50 Is an Enzymatically Active Nα-Acetyltransferase That Is Crucial for Development and Regulation of Stress Responses

9. A Molecular Scanner To Automate Proteomic Research and To Display Proteome Images

10. Toward a Clinical Molecular Scanner for Proteome Research: Parallel Protein Chemical Processing before and during Western Blot

11. NatB-Mediated N-Terminal Acetylation Affects Growth and Biotic Stress Responses

13. The Arabidopsis Nα‐acetyltransferase NAA60 locates to the plasma membrane and is vital for the high salt stress response.

15. NatB-Mediated N-Terminal Acetylation Affects Growth and Biotic Stress Responses.

17. The C-terminal residue of phage Vp16 PDF, the smallest peptide deformylase, acts as an offset element locking the active conformation

18. MetAP1 and MetAP2 drive cell selectivity for a potent anti-cancer agent in synergy, by controlling glutathione redox state

19. Influence of various endogenous and artefact modifications on large-scale proteomics analysis

20. Downregulation of N-terminal acetylation triggers ABA-mediated drought responses in Arabidopsis

25. Proteomics application exercise of the Swiss Proteomics Society: Report of the SPS'02 session

29. Influence of various endogenous and artefact modifications on large-scale proteomics analysis.

30. Comparative Large Scale Characterization of Plant versusMammal Proteins Reveals Similar and Idiosyncratic N-α-Acetylation Features*

31. NAA50 Is an Enzymatically Active N α -Acetyltransferase That Is Crucial for Development and Regulation of Stress Responses.

32. The C-terminal residue of phage Vp16 PDF, the smallest peptide deformylase, acts as an offset element locking the active conformation.

33. SILProNAQ: A Convenient Approach for Proteome-Wide Analysis of Protein N-Termini and N-Terminal Acetylation Quantitation.

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