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Research Center for Molecular Medicine (CeMM), ÖAW | Graz 12 Bez Andritz, Steiermark | Austria | 2 months ago
understand how membrane proteins and their partners cooperate, and how disease-associated variants may perturb these interactions. This track is particularly suited for candidates with a PhD in bioinformatics
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person to join our team. Core topics to work on: (1) In vitro assays to determine inhibitor efficacy against redox membrane proteins (2) Cysteine enrichment of DsbA substrates in E. coli and Mycobacteria
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of metabolism, membrane transport, cellular regulation, structural systems biology, machine learning and disease mechanisms. These positions are embedded in the transition from CeMM in Vienna to the newly founded
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membranes for efficient plasma delivery to electrochemical sensors. Characterize plasma separation performance including separation time, yield, cell carryover, and robustness across physiological and
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analysis Analysis and presentation of electrochemical data Design and optimisation CO2 electrolyser from lab scale to 100 cm2 Investigate materials (electrode substrate, membrane and catalysts) Synthesis and
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Investigate materials (electrode substrate, membrane and catalysts) Synthesis and interpretation of data Simple process simulation and modelling General lab organization and coordination Assist supervising PhD
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& Responsibilities: Design and implement methods to maximize the expression and activity of integral membrane metalloenzymes and associated proteins. Carry out activity assays using a GC-MS. Measure metal
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comprising 9 of the 12 bacteria that pose the greatest threat to human health. The outer membrane (OM) of these pathogens acts as a first line of defence against an antibiotic assault and, therefore, finding
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PhD degree in a related discipline (Chemistry, Chemical Engineering, Materials Science, Physics, or a related field). A strong understanding and extensive experience in electrochemistry
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topics to work on: (1) In vitro assays to determine inhibitor efficacy against redox membrane proteins (2) Cysteine enrichment of DsbA substrates in E. coli and Mycobacteria using proteomics. (3) determine