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- Institute of Biochemistry and Biophysics Polish Academy of Sciences
- Institute of Genetics and Animal Biotechnology of the Polish Academy of Sciences (formerly Institute of Genetics and Animal Biotechnology PAS)
- MARIA CURIE-SKLODOWSKA UNIVERSITY IN LUBLIN
- Medical University of Gdańsk
- Poznan University of Medical Sciences
- The International Institute of Molecular Mechanisms and Machines Polish Academy of Sciences
- University of Warmia and Mazury
- Warsaw University of Technology/Centre for Advanced Materials and Technologies, CEZAMAT
- Łukasiewicz Research Network - Krakow Institute of Technology
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Field
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The International Institute of Molecular Mechanisms and Machines Polish Academy of Sciences | Poland | about 1 month ago
CtBP-mediated transcriptional repression and reorganizes transcriptional corepressor complexes. By integrating molecular biology, cell biology, quantitative microscopy, biochemistry, proteomics, and
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mechanisms of action, such as fluorescence microscopy, immunoassays, RT-qPCR, Western blotting and immunohistochemical staining; participation in the preparation, optimisation and characterisation
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Warsaw University of Technology/Centre for Advanced Materials and Technologies, CEZAMAT | Poland | about 1 month ago
, lithography, plasma deposition, and thermal processes Development and execution of inter-process inspections, including scanning electron microscopy, optical microscopy, atomic force microscopy, ellipsometry
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, molecular and cell biology analyses, cell bioassays, confocal and time-lapse microscopy, translation-efficiency analyses, ISR/RSR/mTOR signaling studies, and work to defined biological models of drug action
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Institute of Genetics and Animal Biotechnology of the Polish Academy of Sciences (formerly Institute of Genetics and Animal Biotechnology PAS) | Poland | about 1 month ago
; Experience working with cell cultures; Experience in molecular biology techniques and microscopy will be an additional advantage; Documented proficiency in English at B2 level; Precision, conscientiousness and
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assays, and microscopy-based analyses of drug-induced stress. Selected aspects of the project are planned to be developed through international collaborations involving advanced structural and
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control of the invasion process, modification of the microenvironment components, and integration with state-of-the-art research technologies such as high- and super-resolution microscopy, quantitative
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of animal material (e.g., electron microscopy, molecular analyses, in-vitro cell and tissue cultures, NGS sequencing); • experience in obtaining funding (e.g., grants from the National Science Centre
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quantitative data analysis. The student will gain hands-on experience in chromatin reconstitution, advanced singlemolecule force spectroscopy coupled with fluorescence microscopy, computational modelling, and