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Postdoctoral researcher for single-molecule protein sequencing with origami nanopores Job description We aim to develop single-molecule peptide sequencing using biological nanopores. The research
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for single-molecule protein sequencing with origami nanopores Job description We aim to develop single-molecule peptide sequencing using biological nanopores. The research project will focus on developing
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single-cell and spatial transcriptomics, whole-genome sequencing, high-throughput screening, CRISPR-based functional screening, and patient-derived organoid models. You will work closely with in-house
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, regeneration and cellular plasticity. You will employ techniques such as single-cell and spatial transcriptomics, whole-genome sequencing, high-throughput screening, CRISPR-based functional screening and patient
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crisis, often referred to as the ‘silent pandemic’. Most of the antibiotics in clinical use are natural products derived from microorganisms. Large-scale bacterial genome sequencing has revealed that most
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crisis, often referred to as the ‘silent pandemic’. Most of the antibiotics in clinical use are natural products derived from microorganisms. Large-scale bacterial genome sequencing has revealed that most
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, grounded gestures: responsive to objects and to interlocutors, aligning speech and visual signals for richer, more natural interaction. In this project, you will carry out research as described in
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, molecular biology, biochemistry, and next-generation sequencing. In addition, you will have the opportunity to contribute to other ongoing projects in the lab, such as studying the molecular pathogenesis
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, fluorescent in situ hybridisation (FISH), in vivo non-canonical amino acid tagging (NCAT), confocal and super-resolution imaging, molecular biology, biochemistry, and next-generation sequencing. In addition
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-molecule transport and measure the NPC nanoscale structure using TEM, AFM, FRET, DIB, MINFLUX, etc. We study purified yeast NPCs as well as design the amino-acid sequence of the IDPs and TRs de novo from