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Field
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bacteriological studies using a range of approaches including protein purification, in vitro and cellular protein characterization, proteomics, and high throughput genetic analysis. Structural studies will be
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and regions involved in protein interactions. In recent years, the field has moved from the analysis of purified complexes to proteome-wide studies thanks to fundamental instrumental and bioinformatic
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/ X-ray crystallography and natural product research is required. Knowledge in enzymology, protein design, molecular biology, microbial metabolism, natural product analysis (LCMS, NMR etc.) and/or
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Max Planck Institute of Molecular Cell Biology and Genetics, Dresden | Dresden, Sachsen | Germany | about 6 hours ago
, stem cell models of differentiation and cell biology approaches. Key questions include how cells regulate global rates of protein turnover, how chemical modifications mark proteins for removal and how
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field, with a strong record of experimental research and peer-reviewed publications. Required. Expertise in protein biochemistry, including recombinant protein expression and purification from bacterial
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fellow in this lab will develop proficiency with advanced techniques in the structural and functional analysis of membrane protein complexes involved in neuronal signaling and signal transduction. For more
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-molecule analysis of full-length proteoforms. This project combines chemical biology, biophysics, and biotechnology to engineer protein nanopore systems and biochemical workflows capable of directly
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William Dunn School of Pathology. The project will involve the mechanistic dissection of protein quality control pathways using quantitative cell-based assays, flow cytometry-based and imaging approaches
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biochemistry. Expertise in e.g. CRISPR-mediated gene editing, protein structure prediction, mass spectrometry-based proteomics, or fluorescence microscopy. Expertise and interest in functional analysis
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and supportive research group led by Prof. Pedro Carvalho at the Sir William Dunn School of Pathology. The project will involve the mechanistic dissection of protein quality control pathways using