2004 ASM Conference on the New Phage Biology: the ‘Phage Summit’
- 4 February 2005
- journal article
- Published by Wiley in Molecular Microbiology
- Vol. 55 (5) , 1300-1314
- https://doi.org/10.1111/j.1365-2958.2005.04509.x
Abstract
In August, more than 350 conferees from 24 countries attended the ASM Conference on the New Phage Biology, in Key Biscayne, Florida. This meeting, also called the Phage Summit, was the first major international gathering in decades devoted exclusively to phage biology. What emerged from the 5 days of the Summit was a clear perspective on the explosive resurgence of interest in all aspects of bacteriophage biology. The classic phage systems like λ and T4, reinvigorated by structural biology, bioinformatics and new molecular and cell biology tools, remain model systems of unequalled power and facility for studying fundamental biological issues. In addition, the New Phage Biology is also populated by basic and applied scientists focused on ecology, evolution, nanotechnology, bacterial pathogenesis and phage‐based immunologics, therapeutics and diagnostics, resulting in a heightened interest in bacteriophages per se, rather than as a model system. Besides constituting another landmark in the long history of a field begun by d’Herelle and Twort during the early 20th century, the Summit provided a unique venue for establishment of new interactive networks for collaborative efforts between scientists of many different backgrounds, interests and expertise.Keywords
This publication has 61 references indexed in Scilit:
- In Vivo Bypass of Chaperone by Extended Coiled-Coil Motif in T4 Tail FiberJournal of Bacteriology, 2004
- The tale of two RNA polymerases: transcription profiling and gene expression strategy of bacteriophage Xp10Molecular Microbiology, 2004
- Membrane structure and interactions with protein and DNA in bacteriophage PRD1Nature, 2004
- Burkholderia cenocepacia Phage BcepMu and a Family of Mu-like Phages Encoding Potential Pathogenesis FactorsJournal of Molecular Biology, 2004
- A −1 Ribosomal Frameshift in the Transcript That Encodes the Major Head Protein of Bacteriophage A2 Mediates Biosynthesis of a Second Essential Component of the CapsidJournal of Bacteriology, 2004
- Protelomerase Uses a Topoisomerase IB/Y-Recombinase Type Mechanism to Generate DNA Hairpin EndsJournal of Molecular Biology, 2004
- Bacterial debris—an ecological mechanism for coexistence of bacteria and their virusesJournal of Theoretical Biology, 2003
- Mechanism of Inhibition of Site-specific Recombination by the Holliday Junction-trapping Peptide WKHYNY: Insights into Phage λ Integrase-mediated Strand ExchangeJournal of Molecular Biology, 2003
- Genetic Engineering Using Homologous RecombinationAnnual Review of Genetics, 2002
- Dissection of bacteriophage λ site-specific recombination using synthetic peptide combinatorial librariesJournal of Molecular Biology, 2000