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Field
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will join a community of exceptional scientists working on diverse topics ranging from how organisms age or how our DNA is repaired, to how epigenetics regulates cellular identity or neural memory
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of employment: until 30/04/2027 Minimum educational attainment: University Qualification level: R1 Professional requirements: Study of the role of histone deacetylases in DNA repair mechanisms The role
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International Centre for Translational Eye Research / Institute of Physical Chemistry, Polish Academy of Sciences | Poland | about 2 months ago
related field, with practical experience in molecular cloning, DNA construct preparation, cell culture, and genetic engineering. Experience with viral vectors or recombinant protein expression will be
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adapted to support the diversity of mammalian cell types, developmental programmes and tissue architecture remains one of the fundamental unanswered questions in biology. The DNA Replication & Genome
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DNA damage at single-base resolution. Building on these newly established tools, we integrate complementary multi-omic approaches to characterize DNA damage in the context of genome organization and
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study DNA and RNA not only in a “bulk” tissue, but also at a single-cell resolution, giving us unprecedented insights into how organisms form, how diseases develop, and how cells communicate with each
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Primary Supervisor: Dr Ke Li Foundation models trained on DNA and RNA sequences are beginning to transform genomics, but their predictions often remain difficult to interpret. A model may identify a
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of DNA accessibility during DNA replication, transcription, and repair. The aim of the project is to understand how the organization of multiple nucleosomes – the basic repeating units of chromatin
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Science, or related discipline (grade of at least 2 in Austrian system / GPA >= 3.5/4) Strong background in inorganic or materials chemistry Experience in the basic handling of DNA or peptides is an
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German Cancer Research Center in the Helmholtz Association (DKFZ) | Oettingen in Bayern, Bayern | Germany | 3 months ago
cancer treatments, the cells in our bodies are continuously under siege from exogenous agents that damage our DNA. The molecular mechanisms that repair and tolerate this damage are also responsible