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1. The Toxin of VapBC-1 Toxin-Antitoxin Module from Leptospira interrogans Is a Ribonuclease That Does Not Arrest Bacterial Growth but Affects Cell Viability.

3. The Toxin of VapBC-1 Toxin-Antitoxin Module from Leptospira interrogans Is a Ribonuclease That Does Not Arrest Bacterial Growth but Affects Cell Viability

4. Maintenance of the Shigella sonnei Virulence Plasmid Is Dependent on Its Repertoire and Amino Acid Sequence of Toxin-Antitoxin Systems

5. Maintenance of the Shigella sonnei Virulence Plasmid Is Dependent on Its Repertoire and Amino Acid Sequence of Toxin-Antitoxin Systems

6. Identification and characterization of VapBC toxin–antitoxin system in Bosea sp. PAMC 26642 isolated from Arctic lichens

7. Single nucleotide polymorphisms of Beijing lineage Mycobacterium tuberculosis toxin-antitoxin system genes: Their role in the changes of protein activity and evolution.

8. Crystal structure of Mycobacterium tuberculosis VapC20 toxin and its interactions with cognate antitoxin, VapB20, suggest a model for toxin-antitoxin assembly.

9. In Silico Analysis of Genetic VapC Profiles from the Toxin-Antitoxin Type II VapBC Modules among Pathogenic, Intermediate, and Non-Pathogenic Leptospira

10. Structural and Functional Study of the Klebsiella pneumoniae VapBC Toxin–Antitoxin System, Including the Development of an Inhibitor That Activates VapC

11. Maintenance of the Shigella sonnei Virulence Plasmid Is Dependent on Its Repertoire and Amino Acid Sequence of Toxin-Antitoxin Systems

12. Identification of a VapBC toxin-antitoxin system in a thermophilic bacterium Thermus thermophilus HB27.

13. Functional Studies of Five Toxin-Antitoxin Modules in Mycobacterium tuberculosis H37Rv.

14. VapC toxin inhibition as a method for prevention of the formation of resting forms of mycobacteria.

15. Genome‐wide interaction screen for Mycobacterium tuberculosis ClpCP protease reveals toxin–antitoxin systems as a major substrate class

16. Biochemical Characterization of VapC46 Toxin from Mycobacterium tuberculosis

17. VapBC and MazEF toxin/antitoxin systems in the regulation of biofilm formation and antibiotic tolerance in nontuberculous mycobacteria

18. Crystal structure of proteolyzed VapBC and DNA‐bound VapBC from Salmonella enterica Typhimurium LT2 and VapC as a putative Ca 2+ ‐dependent ribonuclease

19. Crystal structure of VapC21 from Mycobacterium tuberculosis at 1.31 Å resolution.

20. The VapBC1 toxin-antitoxin complex from Mycobacterium tuberculosis: purification, crystallization and X-ray diffraction analysis.

21. Bioinformatic and mutational studies of related toxin–antitoxin pairs in Mycobacterium tuberculosis predict and identify key functional residues

22. Toxin-Activating Stapled Peptides Discovered by Structural Analysis Were Identified as New Therapeutic Candidates That Trigger Antibacterial Activity against Mycobacterium tuberculosis in the Mycobacterium smegmatis Model

23. The VapBC Toxin-Antitoxin systems : regulators of the nitrogen-fixing symbiosis Rhizobium-Legume

24. VapC21 Toxin Contributes to Drug-Tolerance and Interacts With Non-cognate VapB32 Antitoxin in Mycobacterium tuberculosis

25. The role of toxin:antitoxin systems and insertion sequences in the loss of virulence in Shigella sonnei

26. A toxin-antitoxin system is essential for the stability of mosquitocidal plasmid pBsph of Lysinibacillus sphaericus

27. Genomic Polymorphisms in Toxin-Antitoxin Systems and Identification of Novel Phylo-SNPs and Polymorphisms Associated with Drug Resistance/Susceptibility in Clinical Isolates of Mycobacterium tuberculosis from Mumbai, India

28. System-Wide Analysis Unravels the Differential Regulation and In Vivo Essentiality of Virulence-Associated Proteins B and C Toxin-Antitoxin Systems of Mycobacterium tuberculosis

29. Crystal structure of Mycobacterium tuberculosis VapC20 toxin and its interactions with cognate antitoxin, VapB20, suggest a model for toxin-antitoxin assembly

30. Maintenance of the Shigella sonnei Virulence Plasmid Is Dependent on Its Repertoire and Amino Acid Sequence of Toxin-Antitoxin Systems.

31. The crystal structure of the Rv0301-Rv0300 VapBC-3 toxin-antitoxin complex from M. tuberculosis reveals a Mg2+ ion in the active site and a putative RNA-binding site.

32. The PIN-domain ribonucleases and the prokaryotic VapBC toxin–antitoxin array.

33. Toxin inhibition in C. crescentus VapBC1 is mediated by a flexible pseudo-palindromic protein motif and modulated by DNA binding

34. VapC toxin inhibition as a method for prevention of the formation of resting forms of mycobacteria

35. Accurate target identification for Mycobacterium tuberculosis endoribonuclease toxins requires expression in their native host

36. Crystal Structure of VapBC-1 from Nontypeable Haemophilus influenzae and the Effect of PIN Domain Mutations on Survival during Infection

37. Transcriptional Profiling of Mycobacterium tuberculosis Exposed to In Vitro Lysosomal Stress

38. Resonance assignments of a VapC family toxin from Clostridium thermocellum

39. The VapBC1 toxin–antitoxin complex fromMycobacterium tuberculosis: purification, crystallization and X-ray diffraction analysis

40. Identification and characterization of VapBC toxin-antitoxin system in Bosea sp. PAMC 26642 isolated from Arctic lichens.

41. Structural characterization of VapB46 antitoxin from Mycobacterium tuberculosis: insights into VapB46-DNA binding

42. VapC proteins from Mycobacterium tuberculosis share ribonuclease sequence specificity but differ in regulation and toxicity

43. Homologous VapC Toxins Inhibit Translation and Cell Growth by Sequence-Specific Cleavage of tRNA fMet

44. AvapBC-type toxin-antitoxin module ofSinorhizobium melilotiinfluences symbiotic efficiency and nodule senescence ofMedicago sativa

45. Crystal structure of the VapBC-15 complex from Mycobacterium tuberculosis reveals a two-metal ion dependent PIN-domain ribonuclease and a variable mode of toxin–antitoxin assembly

46. Functional details of the Mycobacterium tuberculosis VapBC26 toxin-antitoxin system based on a structural study: insights into unique binding and antibiotic peptides

47. Higher-Order Structure in Bacterial VapBC Toxin-Antitoxin Complexes

48. Toxin-antitoxinvapBClocus participates in formation of the dormant state inMycobacterium smegmatis

49. Functional Studies of Five Toxin-Antitoxin Modules in Mycobacterium tuberculosis H37Rv

50. Characterization and Comparative Overview of Complete Sequences of the First Plasmids of Pandoraea across Clinical and Non-clinical Strains

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