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implement proteomic workflows tailored for highly limited, heterogeneous samples, enabling in-depth profiling of tumour biology. A major component of your work will be to establish intratumoral heterogeneity
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assistance to faculty and research staff in the collection, management, analysis and interpretation of biological data, with a focus on the analysis of data from genomic, transcriptomic, proteomic
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on proteomics (DNA pulldown/mass spectrometry) or CRISPR/Cas9 perturbation coupled with singe-cell transcriptomics (Perturb-seq). Promising hits identified in these screens will be further characterized
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mediate binding under physiological conditions. The ultimate goal is to establish a detailed structural framework for understanding pili-driven adhesion, opening avenues for the development of anti-adhesion
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of this rapidly growing area of technology, participate in the development of cutting-edge spatial workflows, and build strong collaborations with multiple scientific platforms across the institute. Key
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facilities. This role will be central to building and integrating our core facility expertise in spatial technologies to generate combined spatial omic methodologies. These include transcriptomics, proteomics
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-proteomics-based detection of infection biomarkers of pathogens found in environmental isolates from water processing and air-cooling devices. Focus on pathogens from the Legionella genus, and the detection
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proteomics. For more information, please visit https://www.helsinki.fi/hilife/bi
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: (https://www.medfak.uni-bonn.de/en/faculty/career-paths/academic-careers/appointment ) The criteria for the interim and final evaluations can be found in the PDF version of this job description at: https
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between the University of Göttingen, University Medical Center, and the Max Planck Institute for Multidisciplinary Science, offer interdisciplinary research opportunities at the forefront of genome science