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different bacterial proteins, primarily nucleases from streptococci, bind to human proteins to inhibit the innate and adaptive immune system. The work tasks include methods within molecular biology
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of selected bacterial strains in food-relevant substrates. To investigate how processing conditions affect bioprotective mechanisms. To identify molecular and regulatory drivers of antimicrobial activity
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University employee: Work at Lund University Work assignments The PhD student will study how different bacterial proteins, primarily nucleases from streptococci, bind to human proteins to inhibit the innate
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to climate change) under the supervision of Dr. Ashley Shade in the “Bacterial Efflux and Environmental Resistance” team. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR5557-BEABIG-045
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or related areas. b) Previous experience in scientific research, in at least one of the following areas: microbiology and molecular biology, particularly for bacterial bioengineering purposes; or natural
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of bacterial origin. It is the leading cause of preventable death in developed countries. Currently, it takes several days to diagnose the disease because bacteria can be present in very low
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physicochemical characterization of the fabricated coatings. Exploration of how material properties influence bacterial viability and biofilm formation. Identification and elucidation of the modes of action
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environment and particularly when bacterial loads are high, like in the gut. Notably, the gut microbiomes of diseased individuals are enriched in facultative pathogens which encode ARGs and might have an
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peroxisomes, has been proposed to play a role in the peroxisomal protein quality control system. Its relationship to bacterial and mitochondrial Lon proteases supports such a possible role. However
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in bacteria Bacterial biofilm analysis High resolution microscopy analysis. LanguagesENGLISHLevelExcellent Years of Research ExperienceNone Additional Information Benefits The contract is for 3 years