GBP 39,424 - 47,779 per year
We are looking to hire an outstanding experimentalist for an exciting project at the interface of biophysics and biochemistry that has as its goals to understand the response of RNA polymerase to DNA damage-induced transcription stress. Unperturbed gene expression is vital for correct functioning of cells. Eukaryotic RNA polymerase II is the enzyme that transcribes genes into mRNA, enabling subsequent protein synthesis. Its transcriptional activity is continuously challenged by the occurrence of DNA damage, resulting from exposure of DNA to cellular metabolites and environmental agents. Bulky and helix-distorting DNA damage physically blocks the forward movement of transcribing RNA polymerase II. Such DNA damage-induced transcription stress can lead to severe cellular dysfunction, death and senescence, and is believed to be a major contributor to aging-related diseases. You will perform biophysical experiments to unravel the molecular mechanisms behind these aging-related phenotypes. A willingness to learn and employ biochemical approaches and interact with external collaborators in molecular biology and biochemistry at the University of Oxford and in the Netherlands is essential. In doing so, you will publish high-quality scientific papers to advance this exciting field.
Applicants should hold a PhD or be close to completion in quantitative biochemistry or biophysics. The post holder should have a strong background in quantitative experimental science. Previous experience in single-molecule biophysics, fluorescence microscopy, protein biochemistry, or related areas will be an advantage.
The successful candidate is expected to demonstrate strong experimental and quantitative skills, scientific independence, excellent organizational abilities, and effective interpersonal communication skills. They should have an interest in interdisciplinary research and a willingness to work at the interface of biophysics, biochemistry, and structural biology. The ability to work both independently and collaboratively within a multidisciplinary team is essential.