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Field
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carried out using chromatographic methods and MALDI-TOF mass spectrometry/ NMR. Optimising the polymer extraction process from S.cerevisiae will be a key step in the project, followed by an evaluation
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. Proficiency in chemical synthesis, isolation/purification (e.g., synthetic design, enzyme expression, column chromatography, etc.) and characterization (e.g., NMR, UV-vis, and FT-IR spectroscopies, mass
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heterogeneity of paraganglioma and childhood neuroblastoma by developing a new analytic and experimental approach based on spatial transcriptomics and single-cell transcriptomics with integrated mass spectrometry
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of the project, including performing the metabolomics (via NMR Spectroscopy or mass spectrometry) experiments and analysing the data. The team will analyse all data together to overlay the proteomics and
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by high resolution mass spectrometry and NMR (600 MHz cryoprobe). Absolute configurations of asymmetric centers will be also examined if necessary. Finally, the obtained structures will be compared
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chromatography-tandem mass spectrometry (LC-MS/MS) will be used to identify proteins, glycosylation sites and glycans involved in the pathogenesis. Our novel findings will be used to develop new specific
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. This research position will focus primarily on the metabolomics aspects of the project, including performing the metabolomics (via NMR Spectroscopy or mass spectrometry) experiments and analysing the data
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plus: Enzymology: mechanistic characterization of enzymes using initial velocity and enzyme inhibition kinetics. Hydrogen/deuterium exchange (HDX) mass spectrometry (MS) application in the study of
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Professor Ruijun Tian's team at Southern University of Science and Technology (SUSTech), Shenzhen, China has research interest on innovative proteomics technology development for mass spectrometry
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magmatism, diffusion chronometry, in situ microanalysis (especially using secondary ion mass spectrometry) an excellent command of written and spoken English the ability to work independently and in a team