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We have 21 Structural Biology (molecular imaging) PhD Projects, Programmes & Scholarships for Self-funded Students

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Structural Biology (molecular imaging) PhD Projects, Programmes & Scholarships for Self-funded Students

We have 21 Structural Biology (molecular imaging) PhD Projects, Programmes & Scholarships for Self-funded Students

Understanding centrosome function in the human airway

Breathing sustains our life and is also important for our quality of life. Inside the lung, billions of hair-like structures called cilia beat a million times a day to promote a process called mucociliary clearance. Read more

Molecular characterization of Sam68-driven cytoskeletal reorganization

The cytoskeleton is a complex network of various fibres (microtubules, actin, …) that is essential for cells to maintain their shape and internal organization and for their migration. Read more

Self-funded PhD- Understanding Cell Biology through Imaging

We study the trafficking and interaction of molecules and structures inside cells. Extracellular signals need to be processed in a correct manner for a cell to function properly. Read more

Self-funded MSc R: Understanding Cell Biology Through Imaging

We study the trafficking and interaction of molecules and structures inside cells. Extracellular signals need to be processed in a correct manner for a cell to function properly. Read more

Structural investigation of oncogenic splicing factors

More than 90% of human genes can and do express multiple proteins. This is achieved by a process called alternative RNA splicing, which is an essential step in gene expression in mammals. Read more

Control and inhibition of virus replication

The Tuplin laboratory utilises a range of cutting-edge approaches to investigate how arboviruses - specifically Chikungunya, Dengue and Zika viruses - control replication and translation of their genomes through interactions between RNA structures, host cell proteins and non-coding RNA, and the potential of such RNA elements/interactions as novel therapeutic targets. Read more

Chromatin remodelling complexes in human brain development

Chromatin regulators are a group of proteins that control the way the rest of the genome is opened up and “read” by the cellular machinery, with fundamental roles in development and disease. Read more

Probing Death Decisions from Morphogen Gradient Fields

Morphogen gradient scaling is one of the hottest fields in developmental biology at the moment. Scaling is fundamental, explaining how the machinery that controls pattern formation in development (the morphogens) can adapt, so that organs of different sizes show morphological structures which are proportioned. Read more

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