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Showing 1–50 of 190 results
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  • The HIV-1 accessory protein Vif uses the host transcription cofactor CBFβ to tag the restriction factor APOBEC3G for proteasomal destruction.

    • Sheilagh Molloy
    Research Highlights
    Nature Reviews Microbiology
    Volume: 10, P: 81
  • Two recentNature papers provide functional evidence for a role for PTEX in the export of Plasmodiumproteins into red blood cells.

    • Sheilagh Molloy
    Research Highlights
    Nature Reviews Microbiology
    Volume: 12, P: 594-595
  • A new study published inNature Geneticsreveals the parallel adaptive evolution of a bacterial pathogen during infection of humans and identifies new candidate pathogenicity genes.

    • Sheilagh Molloy
    Research Highlights
    Nature Reviews Microbiology
    Volume: 10, P: 5
    • Sheilagh Molloy
    Research Highlights
    Nature Reviews Microbiology
    Volume: 2, P: 925
    • Sheilagh Molloy
    Research Highlights
    Nature Reviews Genetics
    Volume: 13, P: 4
    • Sheilagh Molloy
    Research Highlights
    Nature Reviews Microbiology
    Volume: 7, P: 842
    • Sheilagh Molloy
    Research Highlights
    Nature Reviews Microbiology
    Volume: 3, P: 366
    • Sheilagh Molloy
    Research Highlights
    Nature Reviews Microbiology
    Volume: 3, P: 909
  • In bacteria, translation is restricted to specific locations that are dictated by the limited diffusion of mature transcripts from the location of transcription, which is in turn specified by the position of the chromosomal locus.

    • Sheilagh Molloy
    Research Highlights
    Nature Reviews Microbiology
    Volume: 8, P: 533
    • Sheilagh Molloy
    Research Highlights
    Nature Reviews Microbiology
    Volume: 5, P: 87
    • Sheilagh Molloy
    Research Highlights
    Nature Reviews Microbiology
    Volume: 12, P: 4
    • Sheilagh Molloy
    Research Highlights
    Nature Reviews Microbiology
    Volume: 10, P: 82
    • Sheilagh Molloy
    Research Highlights
    Nature Reviews Microbiology
    Volume: 6, P: 329
    • Sheilagh Molloy
    Research Highlights
    Nature Reviews Microbiology
    Volume: 7, P: 482
    • Sheilagh Molloy
    Research Highlights
    Nature Reviews Genetics
    Volume: 11, P: 240
    • Sheilagh Molloy
    Research Highlights
    Nature Reviews Microbiology
    Volume: 3, P: 452
  • A 'multi-omics', systems-based approach reveals the details of electron flow in a syntrophic relationship between twoGeobacterspecies.

    • Sheilagh Molloy
    Research Highlights
    Nature Reviews Microbiology
    Volume: 12, P: 7
  • A new study provides the first insights into the growth and physiology ofDesulfobulbaceaesp., which are filamentous bacteria that can conduct electrons over centimetre distances.

    • Sheilagh Molloy
    Research Highlights
    Nature Reviews Microbiology
    Volume: 12, P: 150
  • The expression of heterologous pattern recognition receptors in plants can confer broad-spectrum antibacterial resistance.

    • Sheilagh Molloy
    Research Highlights
    Nature Reviews Microbiology
    Volume: 8, P: 313
    • Sheilagh Molloy
    Research Highlights
    Nature Reviews Microbiology
    Volume: 5, P: 908
  • The first visualization and detailed characterization of the DNA-uptake apparatus that is involved in natural transformation inVibrio cholerae.

    • Sheilagh Molloy
    Research Highlights
    Nature Reviews Microbiology
    Volume: 11, P: 821
  • A general mechanism for controlling the adenylylation activity of Fic proteins has been identified.

    • Sheilagh Molloy
    Research Highlights
    Nature Reviews Microbiology
    Volume: 10, P: 160
    • Sheilagh Molloy
    Research Highlights
    Nature Reviews Microbiology
    Volume: 3, P: 746
    • Sheilagh Molloy
    Research Highlights
    Nature Reviews Microbiology
    Volume: 11, P: 820
    • Sheilagh Molloy
    Research Highlights
    Nature Reviews Microbiology
    Volume: 7, P: 689
    • Sheilagh Molloy
    Research Highlights
    Nature Reviews Microbiology
    Volume: 10, P: 82
    • Sheilagh Molloy
    Research Highlights
    Nature Reviews Microbiology
    Volume: 3, P: 582
  • Ustilago maydisCmu1 is a virulence factor that can move through plant cells, redirecting plant metabolic pathways to favour fungal infection.

    • Sheilagh Molloy
    Research Highlights
    Nature Reviews Microbiology
    Volume: 9, P: 833
    • Sheilagh Molloy
    Research Highlights
    Nature Reviews Microbiology
    Volume: 3, P: 830
    • Sheilagh Molloy
    Research Highlights
    Nature Reviews Microbiology
    Volume: 3, P: 453
    • Sheilagh Molloy
    Research Highlights
    Nature Reviews Microbiology
    Volume: 5, P: 4