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- Adam Mickiewicz University, Poznań
- Institute of Biochemistry and Biophysics Polish Academy of Sciences
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; immunofluorescence and immunohistochemistry; proximity ligation assays; microscopy techniques (widefield, confocal, super-resolution STED, correlative light and electron microscopy, atomic force microscopy, multiplex
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lead the development and application of advanced microscopy techniques, microfluidic approaches, and single-cell analysis methods to investigate quiescence at individual cell and population levels. Where
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Infrastructure? No Offer Description KEY WORDS: amyotrophic lateral sclerosis, frontotemporal dementia (ALS/FTD), pathogenesis of ALS/FTD, RNA-protein interactions, cryogenic electron microscopy
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for cell culture -Experience in mechanical characterization of living cells and/or tissues as well as biopolymers, knowledge of such techniques as strain rheometry, atomic force microscopy and/or traction
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). Experience with advanced microscopy techniques, such as confocal and super-resolution microscopy (preferred). Fluency in English, both written and spoken LanguagesENGLISHLevelExcellent Research FieldBiological
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(knowledge of time-resolved spectroscopy will be an additional asset); • Expertise in the study of morphology and structure of thin organic layers (AFM and scanning probe microscopy, electron microscopy
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The International Institute of Molecular Mechanisms and Machines Polish Academy of Sciences | Poland | about 2 months ago
of RNA viruses, bioinformatical analysis of proteomic data, and/or confocal microscopy will be considered a strong asset. Profile of candidates/requirements: - PhD degree in virology, molecular biology
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-molecule TIRF microscopy, biochemical reconstitution, and fluorescent labeling, we will observe individual RNA molecules and degradosome complexes in action, capturing millisecond-scale dynamics that shape
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for mitochondrial mRNA levels and degradation using a fluorescent microscopy-based approach. The proteins identified in this screening will be further characterized through various molecular, biochemical, and
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for mitochondrial mRNA levels and degradation using a fluorescent microscopy-based approach. The proteins identified in this screening will be further characterized through various molecular, biochemical, and