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translocation malfunction is involved in numerous diseases including cancer. The research is strongly coupled to collaborations with excellent experimental teams and will be more closely discussed during
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at the atomic level using experimental and computational methods. Equipment for nuclear magnetic resonance, crystallography, study of biomolecular interactions, genomics and proteomics is available
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disease, burden of disease, program evaluation, health claims data analysis and on the development of an economic-demographic microsimulation model. The position will include collaborations with
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cell models, designing vectors (expression, shRNA, CRISPR-Cas9), and performing other molecular and cell biology methods to achieve project goals Collaborating with research team members to implement and
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such as Refinitiv, Bloomberg, or similar sources is particularly welcome with excellent background in empirical methods are invited as well with research potential demonstrated by a strong job market paper
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peptides, including the design of de novo sequences based on the elucidated mechanism. The first step will be to develop a computational approach to determine the critical peptide properties required
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in Prof. Mgr. Richard Štefl PhD research group to join the RNA4T project - RNA for Therapy, reg. number CZ.02.01.01/00/22_008/0004575,” in Programme Johannes Amos Comenius (Czech