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1. Corrigendum: A highly potent anti-VISTA antibody KVA12123 - a new immune checkpoint inhibitor and a promising therapy against poorly immunogenic tumors

2. A highly potent anti-VISTA antibody KVA12123 - a new immune checkpoint inhibitor and a promising therapy against poorly immunogenic tumors

3. Metabolism of AGEs--bacterial AGEs are degraded by metallo-proteases.

4. Regulation of ASPP2 interaction with p53 core domain by an intramolecular autoinhibitory mechanism.

5. AGEs secreted by bacteria are involved in the inflammatory response.

6. The Ubiquitous Conserved Glycopeptidase Gcp Prevents Accumulation of Toxic Glycated Proteins

8. Li–Fraumeni Syndrome–Associated Dimer-Forming Mutant p53 Promotes Transactivation-Independent Mitochondrial Cell Death

9. Supplementary Figures from Li–Fraumeni Syndrome–Associated Dimer-Forming Mutant p53 Promotes Transactivation-Independent Mitochondrial Cell Death

10. Supplementary Data 2 from Li–Fraumeni Syndrome–Associated Dimer-Forming Mutant p53 Promotes Transactivation-Independent Mitochondrial Cell Death

12. Supplementary Data 6 from Li–Fraumeni Syndrome–Associated Dimer-Forming Mutant p53 Promotes Transactivation-Independent Mitochondrial Cell Death

14. Data from Li–Fraumeni Syndrome–Associated Dimer-Forming Mutant p53 Promotes Transactivation-Independent Mitochondrial Cell Death

15. Supplementary Data 1 from Li–Fraumeni Syndrome–Associated Dimer-Forming Mutant p53 Promotes Transactivation-Independent Mitochondrial Cell Death

18. Supplementary Figures 1-8 from p53 Frameshift Mutations Couple Loss-of-Function with Unique Neomorphic Activities

19. Data from p53 Frameshift Mutations Couple Loss-of-Function with Unique Neomorphic Activities

22. Data from An ERG Enhancer–Based Reporter Identifies Leukemia Cells with Elevated Leukemogenic Potential Driven by ERG-USP9X Feed-Forward Regulation

25. A non-canonical Hippo pathway represses the expression of ΔNp63

28. Abstract LB361: Li-Fraumeni syndrome-associated dimer-forming mutant p53 promotes transactivation-independent mitochondrial cell death

29. Abstract 972: VISTA expression in patients with advanced solid tumors: A potential biomarker in VISTA-101 clinical trial

30. p53 Frameshift Mutations Couple Loss-of-Function with Unique Neomorphic Activities

32. MDM2, MDMX, and p73 regulate cell-cycle progression in the absence of wild-type p53

33. Protection against avian coronavirus conferred by oral vaccination with live bacteria secreting LTB-fused viral proteins

34. Oral subunit SARS-CoV-2 vaccine induces systemic neutralizing IgG, IgA and cellular immune responses and can boost neutralizing antibody responses primed by an injected vaccine

35. Oral subunit SARS-CoV-2 vaccine induces systemic neutralizing IgG, IgA and cellular immune responses and can boost neutralizing antibody responses primed by an injected vaccine

36. An ERG Enhancer–Based Reporter Identifies Leukemia Cells with Elevated Leukemogenic Potential Driven by ERG-USP9X Feed-Forward Regulation

38. Microbial and viral chitinases: Attractive biopesticides for integrated pest management

39. Dysfunction of the MDM2/p53 axis is linked to premature aging

40. Protein and Peptide Arrays

41. An

42. Wild-type and cancer-related p53 proteins are preferentially degraded by MDM2 as dimers rather than tetramers

44. Integrated strategy reveals the protein interface between cancer targets Bcl-2 and NAF-1

45. ERG ENHANCER-BASED REPORTER IDENTIFIES LEUKEMIA CELLS WITH ELEVATED LEUKEMOGENIC POTENTIAL DRIVEN BY ERG-USP9X FEED-FORWARD REGULATION

46. Molecular Basis of the Interaction between Proapoptotic Truncated BID (tBID) Protein and Mitochondrial Carrier Homologue 2 (MTCH2) Protein

47. The C terminus of p53 binds the N-terminal domain of MDM2

48. A model for the interaction between NF-kappa-B and ASPP2 suggests an I-kappa-B-like binding mechanism

49. Molecular basis of the interaction between the antiapoptotic Bcl-2 family proteins and the proapoptotic protein ASPP2

50. Insights into the structure and protein–protein interactions of the pro-apoptotic protein ASPP2

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