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We have 52 Molecular Biology (dynamics) PhD Projects, Programmes & Scholarships

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Molecular Biology (dynamics) PhD Projects, Programmes & Scholarships

We have 52 Molecular Biology (dynamics) PhD Projects, Programmes & Scholarships

Self-funded PhD- Re-engineering Golgi dynamics in plants – investigating the role of myosin receptors

The growing global population requires the development of novel strategies to sustainably increase food production. Organelle movement is dynamic and linked to changes in cell size, plant biomass and in response to factors which affect food production such as pathogens (Perico and Sparkes, New Phytol. Read more

Self-funded MSc R- Re-engineering Golgi dynamics in plants – investigating the role of myosin receptors

The growing global population requires the development of novel strategies to sustainably increase food production. Organelle movement is dynamic and linked to changes in cell size, plant biomass and in response to factors which affect food production such as pathogens (Perico and Sparkes, New Phytol. Read more

How does the dynamic intra-membrane aggregation of phage lysis proteins kill bacterial pathogens?

This is an interdisciplinary project. It will provide a unique opportunity to obtain training in a wide range of interdisciplinary skills, including protein engineering techniques, protein purification, atomic force microscopy, neutron reflection and scattering as well as molecular dynamics simulations. Read more

MSc By Research: Unravelling the mechanisms controlling anterior eye development

The MSc by Research programme at the University of Aberdeen is for students interested in a research-intensive master's degree. It is designed specifically to enhance your skills for a PhD or research career. Read more

The role of regulatory evolution in phage ecology

The regulation of genes crucially determines the fitness and function of all organisms. This is particularly relevant for bacteriophages, the viruses that infect bacteria, as they rely on a tightly scheduled program for a successful infection. Read more

Optimizing phage-antibiotic-synergies to kill bacterial pathogens

Phage therapy, the use of viruses that only infect bacterial cells and kill them, is a promising potential solution to the antimicrobial resistance crisis that is threatening modern medicine1. Read more

Revealing Reactivity in Cancer-Associated Heme Proteins: Novel Time-Resolved Structural Approaches

Indoleamine 2,3-dioxygenase 1 (IDO1) is a heme-containing enzyme involved in the degradation of tryptophan to kynurenine. Cancer cells upregulate IDO1 to escape normal immune responses and, in many cases, a high expression of IDO1 is connected to poor prognosis. Read more

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