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1. Inflammasome sensor NLRP1 controls rat macrophage susceptibility to Toxoplasma gondii.

2. Dual Role for Inflammasome Sensors NLRP1 and NLRP3 in Murine Resistance to Toxoplasma gondii

3. The Bacillus cereus Hbl and Nhe tripartite enterotoxin components assemble sequentially on the surface of target cells and are not interchangeable.

4. Anthrax edema factor toxicity is strongly mediated by the N-end rule.

5. Inflammasome sensor Nlrp1b-dependent resistance to anthrax is mediated by caspase-1, IL-1 signaling and neutrophil recruitment.

6. Susceptibility to anthrax lethal toxin-induced rat death is controlled by a single chromosome 10 locus that includes rNlrp1.

7. The heart is an early target of anthrax lethal toxin in mice: a protective role for neuronal nitric oxide synthase (nNOS).

8. Role of N-terminal amino acids in the potency of anthrax lethal factor.

9. Frontline Science: Anthrax lethal toxin-induced, NLRP1-mediated IL-1β release is a neutrophil and PAD4-dependent event

10. A Heterodimer of a VHH (Variable Domains of Camelid Heavy Chain-only) Antibody That Inhibits Anthrax Toxin Cell Binding Linked to a VHH Antibody That Blocks Oligomer Formation Is Highly Protective in an Anthrax Spore Challenge Model

11. Tolerogenic nanoparticles restore the antitumor activity of recombinant immunotoxins by mitigating immunogenicity

12. Engineering Anthrax Toxin Variants That Exclusively Form Octamers and Their Application to Targeting Tumors

13. Antidotes to anthrax lethal factor intoxication. Part 3: Evaluation of core structures and further modifications to the C2-side chain

14. Anthrax Edema Toxin Impairs Clearance in Mice

15. Lipoprotein biosynthesis by prolipoprotein diacylglyceryl transferase is required for efficient spore germination and full virulence of Bacillus anthracis

16. Mouse Monoclonal Antibodies to Anthrax Edema Factor Protect against Infection

17. Anthrax Toxin Targeting of Myeloid Cells through the CMG2 Receptor Is Essential for Establishment of Bacillus anthracis Infections in Mice

18. Novel Chimpanzee/Human Monoclonal Antibodies That Neutralize Anthrax Lethal Factor, and Evidence for Possible Synergy with Anti-Protective Antigen Antibody

19. Potent neutralization of anthrax edema toxin by a humanized monoclonal antibody that competes with calmodulin for edema factor binding

20. Elimination of murine and human T-cell epitopes in recombinant immunotoxin eliminates neutralizing and anti-drug antibodies in vivo

21. Dual role for inflammasome sensors NLRP1 and NLRP3 in murine resistance to Toxoplasma gondii

22. Arsenic trioxide and other arsenical compounds inhibit the NLRP1, NLRP3, and NAIP5/NLRC4 inflammasomes

23. Small-molecule inhibitors of lethal factor protease activity protect against anthrax infection

24. Key tissue targets responsible for anthrax-toxin-induced lethality

25. Diphthamide modification on eukaryotic elongation factor 2 is needed to assure fidelity of mRNA translation and mouse development

26. Antidotes to anthrax lethal factor intoxication. Part 2: structural modifications leading to improved in vivo efficacy

27. MyD88-Dependent Signaling Protects against Anthrax Lethal Toxin-Induced Impairment of Intestinal Barrier Function▿

28. Inflammasome sensor Nlrp1b-dependent resistance to anthrax is mediated by caspase-1, IL-1 signaling and neutrophil recruitment

29. Anthrax lethal toxin activates the inflammasome in sensitive rat macrophages

30. Susceptibility to anthrax lethal toxin-induced rat death is controlled by a single chromosome 10 locus that includes rNlrp1

31. Capillary morphogenesis protein-2 is the major receptor mediating lethality of anthrax toxin in vivo

32. The heart is an early target of anthrax lethal toxin in mice: a protective role for neuronal nitric oxide synthase (nNOS)

33. Transcriptional analysis of the three Nlrp1 paralogs in mice

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