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the structures of ribosomal complexes involved in eukaryotic translation control, at the interface of structural biology, biochemistry, and molecular biology. The lab has recently secured substantial third-party
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fundamental question in molecular biology: How is human translation controlled at the structural level? You will investigate the structures of ribosomal complexes involved in eukaryotic translation control
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independently and in a team Analytical thinking and ability to solve complex problems Good communication skills and the ability to present research results Language requirements: English (B2) We offer: Work in a
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IOCB Prague (Institute of Organic Chemistry and Biochemistry of the Czech Academy of Sciences) | Czech | about 2 months ago
simulations, and structural bioinformatics of proteins and other biomolecules – and we're now scaling that expertise to meet the volume and complexity of data these methods generate. This is not a conventional
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quantitative imaging, stem cell biology, genomics and proteomics, we seek to understand how cells build robust genome maintenance programmes capable of supporting life from single dividing cells to complex
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their proteins. Recent advances in cryo-electron microscopy have revealed the architecture of viral replication/transcription complexes, but how these molecular machines communicate with the host translation
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/transcription complexes, but how these molecular machines communicate with the host translation machinery during infection is still an open question. In this project, you will uncover how viral replication