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Titlebook: Biophysics of Infection; Mark C. Leake Book 2016 The Editor(s) (if applicable) and The Author(s), under exclusive license to Springer Natu

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The Type I Restriction Enzymes as Barriers to Horizontal Gene Transfer: Determination of the DNA Ta indicate the unique positions of methylation. Target methylation points for enzymes from CC1 were also identified. The methylation points for CC1-1 are CC.Y(N).T.AA and those for CC1-2 are CC.Y(N)..GT with the underline indicating the adenine methylation site as confirmed recently by Monk et al. (.
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Biomechanical Analysis of Infectious Biofilms,w candidate chemical treatments alter the mechanical response. The rich interplay between growth, mechanics and hydrodynamics is just becoming amenable to computational modelling and promises to provide unprecedented characterisation of infectious biofilms in their native state.
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Mechanics of Bacterial Cells and Initial Surface Colonisation,o-newton scale, and provide specific information on receptor–ligand interactions. By studying the biophysics of the bacterial–surface interaction with the abovementioned techniques, it has been possible to gain new insight on the early stages of bacterial colonisation and biofilm formation.
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Neutron Reflectivity as a Tool for Physics-Based Studies of Model Bacterial Membranes, for the inner and outer membranes of Gram-negative bacteria. Studies of the interactions of antimicrobial peptides with monolayer and bilayer models for the inner and outer membranes have revealed information about the molecular control of the outer membrane permeability, and the mode of interactio
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Mechanisms of , Typhi Host Restriction,rticular, they are central for the transport of enzymes that synthetize melanin in pigment cells. The recent findings that Rab32 and BLOC-3 are required for . Typhi host restriction point out to a novel mechanism restricting the growth of bacterial pathogen, dependent on the transport of still unkno
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Insights into Biological Complexity from Simple Foundations,maxims, and we show examples of its success in two different applications: investigating cellular robustness at the level of gene regulatory networks and quantifying rare events of DNA replication errors.
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