Sort by
Refine Your Search
-
Employer
-
Field
-
. coli. The selected candidate will identify the molecular mechanisms involved in the dissemination of pathogenic bacteria into the bloodstream, despite activation of the complement and coagulation systems
-
in Synthetic Biology, Microbiology, Bioengineering, Immuno-oncology, Molecular Biology, or related discipline. - Proven experience in genetic engineering of bacteria (experience with secretion systems
-
micro-organisms (bacteria, fungi, algae, etc.), whose heterotrophic activity contributes to the chemistry of organic carbon. The aim here is to explore autotrophic processes (carbon fixation by
-
of gene expression. G. Boël's team is interested in translation in bacteria through two aspects: (1) the characterization of ABC-F family translation factors and (2) the identification of determinants
-
of damaged genomes which is the major source of point mutations, and the initiating cause of cancer. The team has developed a method to introduce a single lesion in the genome of a living cell (bacteria and
-
, the European HEALTHY TEETH project will tackle 3 targets: 1) bad bacteria, 2) gum inflammation, 3) bone loss. This requires highly complementary skills & know-how. Importantly, our project brings together
-
of results at national and international conferences - To participate in the training of the new members of the team. The candidate will be part of the team "Pathogenic Bacteria and Phosphorylation of Proteins
-
bacteria coevolve with their viruses (phages). Recent studies discovered an impressive number of new “anti-phage” defence systems in bacterial genomes. These defence genes are thought to be very mobile, as
-
, particularly gene flow between species and yeast-bacteria co-infection phenomena; 4) To identify genetic variants present in natural Saccharomyces populations that underlie and modulate these interactions with
-
elucidate many fundamental and applied problems. A notable example of the complexity of this relation is a variable resistance capacity of cells with identical genotypes to stressors, which allows bacteria