The Experts below are selected from a list of 9 Experts worldwide ranked by ideXlab platform

Thomas J Beatty - One of the best experts on this subject based on the ideXlab platform.

  • characterization of a newly discovered Mu like bacterioPhage rcapMu in rhodobacter capsulatus strain sb1003
    Virology, 2011
    Co-Authors: Paul C M Fogg, Alexander P Hynes, Elizabeth L Digby, Andrew S Lang, Thomas J Beatty
    Abstract:

    The α-proteobacterium Rhodobacter capsulatus is a model organism for the study of bacterial photosynthesis and the bacterioPhage-like gene transfer agent. Characterization of Phages that infect Rhodobacter is extremely rare, and scarce for the α-proteobacteria in general. Here, we describe the discovery of the only functional Mu-like transposing Phage to have been identified in the α-proteobacteria, RcapMu, resident in the genome-sequenced R. capsulatus SB1003 strain. RcapMu packages ~ 42 kb of total DNA, including < 3 kb of host DNA with no conserved motifs, indicative of replicative transposition with little insertion site preference. The Phage genome contains 58 ORFs with comparable organization to known transposable Phages. Shotgun proteomics of purified RcapMu particles detected all proteins with predicted structural functions as well as seven hypothetical proteins. Overall, comparison of RcapMu to Enterobacteria Phage Mu and other Mu-like Phages revealed only regional homology to these Phages, providing further evidence for the promiscuous, modular nature of bacterioPhage evolution.

Paul C M Fogg - One of the best experts on this subject based on the ideXlab platform.

  • characterization of a newly discovered Mu like bacterioPhage rcapMu in rhodobacter capsulatus strain sb1003
    Virology, 2011
    Co-Authors: Paul C M Fogg, Alexander P Hynes, Elizabeth L Digby, Andrew S Lang, Thomas J Beatty
    Abstract:

    The α-proteobacterium Rhodobacter capsulatus is a model organism for the study of bacterial photosynthesis and the bacterioPhage-like gene transfer agent. Characterization of Phages that infect Rhodobacter is extremely rare, and scarce for the α-proteobacteria in general. Here, we describe the discovery of the only functional Mu-like transposing Phage to have been identified in the α-proteobacteria, RcapMu, resident in the genome-sequenced R. capsulatus SB1003 strain. RcapMu packages ~ 42 kb of total DNA, including < 3 kb of host DNA with no conserved motifs, indicative of replicative transposition with little insertion site preference. The Phage genome contains 58 ORFs with comparable organization to known transposable Phages. Shotgun proteomics of purified RcapMu particles detected all proteins with predicted structural functions as well as seven hypothetical proteins. Overall, comparison of RcapMu to Enterobacteria Phage Mu and other Mu-like Phages revealed only regional homology to these Phages, providing further evidence for the promiscuous, modular nature of bacterioPhage evolution.

Alexander P Hynes - One of the best experts on this subject based on the ideXlab platform.

  • characterization of a newly discovered Mu like bacterioPhage rcapMu in rhodobacter capsulatus strain sb1003
    Virology, 2011
    Co-Authors: Paul C M Fogg, Alexander P Hynes, Elizabeth L Digby, Andrew S Lang, Thomas J Beatty
    Abstract:

    The α-proteobacterium Rhodobacter capsulatus is a model organism for the study of bacterial photosynthesis and the bacterioPhage-like gene transfer agent. Characterization of Phages that infect Rhodobacter is extremely rare, and scarce for the α-proteobacteria in general. Here, we describe the discovery of the only functional Mu-like transposing Phage to have been identified in the α-proteobacteria, RcapMu, resident in the genome-sequenced R. capsulatus SB1003 strain. RcapMu packages ~ 42 kb of total DNA, including < 3 kb of host DNA with no conserved motifs, indicative of replicative transposition with little insertion site preference. The Phage genome contains 58 ORFs with comparable organization to known transposable Phages. Shotgun proteomics of purified RcapMu particles detected all proteins with predicted structural functions as well as seven hypothetical proteins. Overall, comparison of RcapMu to Enterobacteria Phage Mu and other Mu-like Phages revealed only regional homology to these Phages, providing further evidence for the promiscuous, modular nature of bacterioPhage evolution.

Elizabeth L Digby - One of the best experts on this subject based on the ideXlab platform.

  • characterization of a newly discovered Mu like bacterioPhage rcapMu in rhodobacter capsulatus strain sb1003
    Virology, 2011
    Co-Authors: Paul C M Fogg, Alexander P Hynes, Elizabeth L Digby, Andrew S Lang, Thomas J Beatty
    Abstract:

    The α-proteobacterium Rhodobacter capsulatus is a model organism for the study of bacterial photosynthesis and the bacterioPhage-like gene transfer agent. Characterization of Phages that infect Rhodobacter is extremely rare, and scarce for the α-proteobacteria in general. Here, we describe the discovery of the only functional Mu-like transposing Phage to have been identified in the α-proteobacteria, RcapMu, resident in the genome-sequenced R. capsulatus SB1003 strain. RcapMu packages ~ 42 kb of total DNA, including < 3 kb of host DNA with no conserved motifs, indicative of replicative transposition with little insertion site preference. The Phage genome contains 58 ORFs with comparable organization to known transposable Phages. Shotgun proteomics of purified RcapMu particles detected all proteins with predicted structural functions as well as seven hypothetical proteins. Overall, comparison of RcapMu to Enterobacteria Phage Mu and other Mu-like Phages revealed only regional homology to these Phages, providing further evidence for the promiscuous, modular nature of bacterioPhage evolution.

Andrew S Lang - One of the best experts on this subject based on the ideXlab platform.

  • characterization of a newly discovered Mu like bacterioPhage rcapMu in rhodobacter capsulatus strain sb1003
    Virology, 2011
    Co-Authors: Paul C M Fogg, Alexander P Hynes, Elizabeth L Digby, Andrew S Lang, Thomas J Beatty
    Abstract:

    The α-proteobacterium Rhodobacter capsulatus is a model organism for the study of bacterial photosynthesis and the bacterioPhage-like gene transfer agent. Characterization of Phages that infect Rhodobacter is extremely rare, and scarce for the α-proteobacteria in general. Here, we describe the discovery of the only functional Mu-like transposing Phage to have been identified in the α-proteobacteria, RcapMu, resident in the genome-sequenced R. capsulatus SB1003 strain. RcapMu packages ~ 42 kb of total DNA, including < 3 kb of host DNA with no conserved motifs, indicative of replicative transposition with little insertion site preference. The Phage genome contains 58 ORFs with comparable organization to known transposable Phages. Shotgun proteomics of purified RcapMu particles detected all proteins with predicted structural functions as well as seven hypothetical proteins. Overall, comparison of RcapMu to Enterobacteria Phage Mu and other Mu-like Phages revealed only regional homology to these Phages, providing further evidence for the promiscuous, modular nature of bacterioPhage evolution.