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. The position will involve the use of molecular tools to generate transgenic parasites, advanced imaging techniques and the implementation of new chemoproteomic protocols. Parasite culture, biochemistry and
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Biochemistry, Molecular/Cell Biology, and/or BioEngineering documented by peer-reviewed publications Skills in a broad range of methods in the fields of Biochemistry, Molecular/Cell Biology, and/or
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behavior in the Phenoworld using a combination of conventional and data mining approaches as well as molecular biology techniques (RNAseq, RT-PCR, immunohistochemistry, etc) to investigate neurobiological
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The researcher will study the potential of atto-photochemistry on organic or inorganic photoinduced reactions. He or she will use quantum chemistry and molecular dynamics methods to do so. The overall objective is
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Description Metabolic reprogramming is a hallmark of cancer cells. Understanding the downstream molecular consequences of these metabolic changes, among which their connections with RNA modifications
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molecular signatures and potential therapeutic targets We are looking for a highly motivated and enthusiastic candidate with interest in neurovirology. Ideal applicants hold: A PhD in cell and molecular
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vivo cancer models. The candidate will be expected to: Determine the effects of the identified VFs using various in vitro and in vivo assays and investigate the underlying mechanisms Contribute
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proteomic analyses often obscure the intricate cellular and molecular variations within this complex environment. Single-cell proteomics (SCP) offers a novel approach to dissect this heterogeneity by
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. However, while the effects of high doses of IR are well understood in a variety of models, including colon cancer [1], a wide variety of issues and questions remain concerning low dose effects, for which
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analyzing whole organism models (zebrafish and mouse) to dissect the pathophysiology of a recently identified rare pediatric neurometabolic disorder. The approach involves mainly deep longitudinal phenotyping