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1. Age-dependent natural killer cell and interferon γ deficits contribute to severe pertussis in infant mice.

14. Pharmacological targeting of host chaperones protects from pertussis toxin in vitro and in vivo

15. Highlights of the 12th InternationalBordetellaSymposium

19. Analysis of BvgA activation of the pertactin gene promoter in Bordetella pertussis

20. Pertussis Toxin Promotes Pulmonary Hypertension in an Infant Mouse Model of Bordetella pertussis Infection.

22. Effect of mutations causing overexpression of RNA polymerase alpha subunit on regulation of virulence factors in Bordetella pertussis

23. Hfr mapping of mutations in Bordetella pertussis than define a genetic locus involved in virulence gene regulation

24. A phase variant of Bordetella pertussis with a mutation in a new locus involved in the regulation of pertussis toxin and adenylate cyclase toxin expression

27. Proteolytic cleavage of pertussis toxin S1 subunit is not essential for its activity in mammalian cells

28. Overexpression of the RNA polymerase alpha subunit reduces transcription of Bvg-activated virulence genes in Bordetella pertussis

29. Reduction of Pertussis Inflammatory Pathology by Therapeutic Treatment With Sphingosine-1-Phosphate Receptor Ligands by a Pertussis Toxin-Insensitive Mechanism

32. Erratum for Carbonetti et al., “Highlights of the 11th International Bordetella Symposium: from Basic Biology to Vaccine Development”

34. Highlights of the 11th International Bordetella Symposium: from Basic Biology to Vaccine Development

36. The Prostaglandin E2-EP3 Receptor Axis Regulates Anaplasma phagocytophilum-Mediated NLRC4 Inflammasome Activation

41. The Prostaglandin E2-EP3 Receptor Axis Regulates Anaplasma phagocytophilum-Mediated NLRC4 Inflammasome Activation.

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