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1. ImmCellTyper facilitates systematic mass cytometry data analysis for deep immune profiling

2. Protein degradation by human 20S proteasomes elucidates the interplay between peptide hydrolysis and splicing

3. InvitroSPI and a large database of proteasome-generated spliced and non-spliced peptides

5. Potential Mimicry of Viral and Pancreatic β Cell Antigens Through Non-Spliced and cis-Spliced Zwitter Epitope Candidates in Type 1 Diabetes

6. Proteasome-Generated cis-Spliced Peptides and Their Potential Role in CD8+ T Cell Tolerance

7. Multi-level Strategy for Identifying Proteasome-Catalyzed Spliced Epitopes Targeted by CD8+ T Cells during Bacterial Infection

8. An in silico—in vitro Pipeline Identifying an HLA-A*02:01+ KRAS G12V+ Spliced Epitope Candidate for a Broad Tumor-Immune Response in Cancer Patients

9. An Unexpected Major Role for Proteasome-Catalyzed Peptide Splicing in Generation of T Cell Epitopes: Is There Relevance for Vaccine Development?

10. Modelling Proteasome and Proteasome Regulator Activities

11. Untangling Extracellular Proteasome-Osteopontin Circuit Dynamics in Multiple Sclerosis

12. Author Correction: NMDA-receptor inhibition and oxidative stress during hippocampal maturation differentially alter parvalbumin expression and gamma-band activity

13. Quantitative time-resolved analysis reveals intricate, differential regulation of standard- and immuno-proteasomes

14. Current Understanding on the Role of Standard and Immunoproteasomes in Inflammatory/Immunological Pathways of Multiple Sclerosis

15. Poly-Ub-substrate-degradative activity of 26S proteasome is not impaired in the aging rat brain.

16. Evidence for sub-haplogroup h5 of mitochondrial DNA as a risk factor for late onset Alzheimer's disease.

17. The 20S proteasome splicing activity discovered by SpliceMet.

18. Immunoproteasome LMP2 60HH variant alters MBP epitope generation and reduces the risk to develop multiple sclerosis in Italian female population.

21. Data from Mapping the MHC Class I–Spliced Immunopeptidome of Cancer Cells

22. iBench: A ground truth approach for advanced validation of mass spectrometry identification method

23. Database search engines and target database features impinge upon the identification of post-translationally cis-spliced peptides in HLA class I immunopeptidomes

24. Predicting the success of Fmoc-based peptide synthesis

25. Mechanistic diversity in MHC class I antigen recognition

27. Identification of a class of non-conventional ER-stress-response-derived immunogenic peptides

29. Mapping the MHC Class I–Spliced Immunopeptidome of Cancer Cells

30. Proteasome-Generated

31. What We See, What We Do Not See, and What We Do Not Want to See in HLA Class I Immunopeptidomes

32. Large database for the analysis and prediction of spliced and non-spliced peptide generation by proteasomes

33. ER-aminopeptidase 1 determines the processing and presentation of an immunotherapy-relevant melanoma epitope

34. Untangling Extracellular Proteasome-Osteopontin Circuit Dynamics in Multiple Sclerosis

35. Proteolytic dynamics of human 20S thymoproteasome

36. Commentary: Are There Indeed Spliced Peptides in the Immunopeptidome?

37. Author Correction: NMDA-receptor inhibition and oxidative stress during hippocampal maturation differentially alter parvalbumin expression and gamma-band activity

38. Why do proteases mess up with antigen presentation by re-shuffling antigen sequences?

39. Post-Translational Peptide Splicing and T Cell Responses

40. Multi-level Strategy for Identifying Proteasome-Catalyzed Spliced Epitopes Targeted by CD8+ T Cells during Bacterial Infection

41. Extracellular proteasome-osteopontin circuit regulates cell migration with implications in multiple sclerosis

42. Neuroinflammatory targets and treatments for epilepsy validated in experimental models

43. Proteasome isoforms exhibit only quantitative differences in cleavage and epitope generation

44. Modelling Proteasome and Proteasome Regulator Activities

45. Multi-level Strategy for Identifying Proteasome-Catalyzed Spliced Epitopes Targeted by CD8

46. Proteasomes generate spliced epitopes by two different mechanisms and as efficiently as non-spliced epitopes

47. Driving Forces of Proteasome-catalyzed Peptide Splicing in Yeast and Humans

48. The T210M substitution in the HLA-a*02:01 gp100 epitope strongly affects overall proteasomal cleavage site usage and antigen processing

49. Proteasome Modulation in Brain: A New Target for Anti-Aging Drugs?

50. Quantitative time-resolved analysis reveals intricate, differential regulation of standard- and immuno-proteasomes

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