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have recently highlighted the importance of the FAT1 gene during carcinogenesis (Lu et al, Nature Cell Biology 2025; Lu and Kanu, Nature Cell Biology 2025). We strive to understand the molecular
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at conferences, and represent the research group at meetings. You will be able to work in an effective, positive and respectful manner with other group members (DPhil students; postdocs) and collaborators. In
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postdocs and research staff. To help them thrive and achieve their ambitions, we have created a comprehensive range of opportunities and initiatives designed to provide an exceptional launchpad
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-molecule fluorescence microscopy, optical and magnetic tweezers) together with in-house molecular biology and biochemistry. Studying the dynamics of DNA and RNA replication at the single-molecule level
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technologies have exploded in recent years, generating multi-dimensional data from millions of cells and thousands of molecular features. Understanding these data and harnessing their insights remains an ongoing
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focuses on understanding how tumour cell plasticity and dynamic cell state transitions drive resistance, and aims to identify actionable vulnerabilities that could inform future therapies. You will work
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-Cardiovascular Medicine provides a vibrant and dynamic environment for researchers, offering state-of-the-art facilities and a multidisciplinary team approach to cardiovascular research. This opportunity is
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and how clonal hematopoiesis (CH) affects the normal physiological ageing process. You will work within a team that comprises of the Nerlov lab , working alongside other groups within the Molecular
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of the research group, including postdocs, research assistants, technicians, PhD and project students, as well as to represent the PI and ISML when required. You will hold a Masters or PhD degree (or be close to
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and Shock Mechanics Laboratory. You will be asked to provide guidance to less experienced members of the research group, including postdocs, research assistants, technicians, PhD and project students