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crystallography, NMR spectroscopy, cryo-electron microscopy, mass spectrometry and biophysical measurements. There will be opportunities to develop and apply novel computational methods and modelling strategies
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nucleic acid-based targeting agents to treat prostate cancer. The successful candidate will focus on the design, synthesis, modification and biophysical characterization of DNA aptamers. This position would
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genetic code expansion and click chemistry, alongside biochemical, biophysical and cell biological techniques to study insulin behaviour in physiologically relevant systems. The postholder will work closely
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, Biophysics or a related discipline. You will have an interest in analytical techniques, and significant experience in structural mass spectrometry. The University of Leeds and the Faculty of Biological
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their microenvironment. Solid tumours undergo rapid remodelling, leading to changes in the biophysical tumour microenvironment. By learning how these changes affect immune cells, cancer-associated fibroblasts and cancer
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molecular biology, biophysical and biochemical techniques to produce and characterise biomolecular complexes and their activity in vitro and cellular biology approaches to verify the functional mechanisms in
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Description The Research Fellow will work closely with the Principal Investigator, Dr. ZHENG Chu, on the research project of enzyme biophysics and computational design for applications in sustainable
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and purification Determination of ligand binding using label-free biophysical methods Determination of enzyme activities using biochemical methods Determination of crystal structures of target-ligand
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Description The Research Fellow will work closely with the Principal Investigator, Dr. ZHENG Chu, on the research project of enzyme biophysics and computational design for applications in sustainable
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About the Role You will join an interdisciplinary research team working at the interface of nanotechnology, biophysics, and single-molecule sensing. In this role, you will design, develop, and apply