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Field
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physiological state shapes bacteriophage infection. We aim to determine how dormancy, nutrient limitation, growth transitions and stress generate transient phage resistance or tolerance, identify the underlying
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. This NIH/NIAID-funded project centers on the temperate bacteriophage phiBB-1, the cp32 prophage family, and phage-mediated movement of antigen and other genetic material among B. burgdorferi strains
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, HIC, SEC, RP-HPLC), Tangential Flow Filtration and other filtration techniques. Single-domain antibody generation and characterization (including library generation, phage display, SPR, ELISA, stability
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on discovering new functions encoded among gut anaerobic bacteria and bacteriophages using high-throughput functional genomics. We also study bacteria-phage interactions and how phages alter bacterial physiology
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The project The bacterial Type 6 secretion system (T6SS) is one of the largest dynamic assemblies in Gram-negative bacteria. It shares evolutionary origins with contractile phage tails and other
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fight phage infections without harming bacteria and eukaryotic cells. Leader Dr hab. Jan Paczesny Viruses are parasites with living cells as their hosts. Without cells, viruses cannot perform their life
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Nemudryi lab studies the molecular arms race between bacteria and the viruses that infect them (bacteriophages). We investigate novel anti-phage immune systems using bacterial genetics, biochemistry
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the Institute of Physical Chemistry PAS within National Science Center (NSC) OPUS 23, Project no. 2022/45/B/ST5/01500, entitled “Antiviral nanoparticles andpolymers to selectively fight phage infections without
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Research Technician to join TAILOR Labs, an established center dedicated to advancing the science and therapeutic application of bacteriophages (phages)—viruses that infect bacteria—as a strategy to combat
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and genetic determinants underlying bacteria-phage interactions in Bacteroidales. In particular, we have high-resolution LC-MS capabilities (Revident qTOF) that allows us to study the biology of