Volume 5 Issue 5, May 2004

Volume 5 Issue 5

Caenorhabditis elegans (pictured) has an innate system for immune defense. Ewbank and colleagues (p 488; News and Views by Hodgkin p 471) use this powerful genetic model to show that the worm ortholog of SARM, a vertebrate TIR adaptor protein of unknown function, controls the induction of antimicrobial peptides in a Toll-like receptor-independent way. Artwork by Lewis Long.

Editorial

Correspondence

Commentaries

  • Commentary |

    Vaccination is a marvel of scientific endeavor that benefits the masses. Yet the laissez-faire economy may not provide a sufficient push for vaccine research and development. The current climate that drives this globally important venture is examined here.

    • G J V Nossal
  • Commentary |

    Vaccination has attracted controversy at every stage of its development and use. Ethical debates should consider its basic goal, which is to benefit the community at large rather than the individual.

    • Christine Grady

News and Views

  • News & Views |

    The idea that Qa-1-dependent CD8+ suppressor T cells regulate peripheral immune responses was unpopular during the era of 'suppressor skepticism' in the late 1980s, but this has now been resurrected.

    • Leonard Chess
    •  & Hong Jiang
  • News & Views |

    The function of the mammalian TIR domain adaptor protein SARM is unclear. In Caenorhabditis elegans, however, the homolog of SARM controls the induction of peptides involved in innate immunity.

    • Jonathan Hodgkin
  • News & Views |

    Toll-like receptors (TLRs) use multiple downstream signaling pathways. New data suggest that components of the tumor necrosis factor receptor signaling pathway are involved in signal transduction by certain TLR family members.

    • Gregory M Barton
    •  & Ruslan Medzhitov
  • News & Views |

    Correlative analyses of polymorphism and disease resistance in Drosophila melanogaster refine our understanding of the forces that maintain variation in innate immunity loci.

    • Steven A Wasserman
  • News & Views |

    Antigen receptor genes are assembled by a sequence of lineage-specific recombinatorial events, in which DNA breaks must be properly repaired to ensure cell survival and further developmental maturation. B lymphocytes, it seems, use multiple unique pathways to repair their DNA.

    • Jennifer E Posey
    • , Vicky L Brandt
    •  & David B Roth

Articles

Corrigendum