Deciphering the glycocode – application of synthetic probes to study protein-carbohydrate interactions


   Faculty of Biological Sciences

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Prof Bruce Turnbull Dr Glyn Hemsworth  No more applications being accepted  Competition Funded PhD Project (European/UK Students Only)

About the Project

All living cells are covered in a coating of complex carbohydrates (glycans) that are attached to lipids and proteins. Specific glycolipids play important roles in controlling cell differentiation, ion transport and cell signaling. However, many viruses, bacteria and protein toxins also exploit these glycans to stick to and enter healthy cells. Glycans can often have multiple binding partners and thus multiple biological roles, which makes understanding the rules of glycobiology (the so-called glycocode) challenging.

In this project we will use enzymes to construct synthetic analogues of an important cell surface glycolipid: ganglioside GM1. We will investigate the effects of selective modification of its hydroxyl groups on its ability to bind to two important sugar-binding proteins (lectins) – galectin-1 and cholera toxin B-subunit. By understanding the roles of each hydroxyl group in the complex we will derive rules for making selective probes that can distinguish between different lectins.

The project will involve a combination of chemical and biochemical methods to produce novel oligosaccharides and glycolipids. You will learn to use biophysical methods including isothermal titration calorimetry to measure the thermodynamics of ligand binding, and X-ray crystallography to determine the structures of complexes to rationalise changes in binding and help decipher the glycocode.

Funding Notes

White Rose BBSRC Doctoral Training Partnership in Mechanistic Biology
4 year fully-funded programme of integrated research and skills training, starting Oct 2020:
• Research Council Stipend
• UK/EU Tuition Fees
• Conference and research funding

Requirements:
At least a 2:1 honours degree or equivalent. We welcome students with backgrounds in biological, chemical or physical sciences, or mathematical backgrounds with an interest in biological questions.

EU candidates require 3 years of UK residency to receive full studentship

Not all projects will be funded; the DTP will appoint a limited number of candidates via a competitive process.

https://phd.leeds.ac.uk/funding/81-white-rose-bbsrc-doctoral-training-partnership-in-mechanistic-biology

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Project supervisors

Career overview

Professor Bruce Turnbull is a synthetic chemist with a focus on re-engineering biological systems for new applications. He completed a BSc in Chemistry from the University of St Andrews from 1991 to 1995, followed by a PhD in Carbohydrate Chemistry at the same institution from 1995 to 1998. He was a Wellcome Trust International Prize Travelling Research Fellow at UCLA from 1998 to 2001, and then returned to the University of Leeds as a Wellcome Trust International Prize Travelling Research Fellow and Postdoctoral Research Associate from 2001 to 2004. He began his academic career as a Lecturer in Chemical Biology at the University of Leeds from 2004 to 2005, before becoming a Royal Society University Research Fellow from 2005 to 2013. He was promoted to Associate Professor in 2013 and has held the position of Professor of Biomolecular Chemistry since 2016. Professor Turnbull has received several accolades for his contributions to the field, including the Royal Society of Chemistry Carbohydrate Award in 2013 and the RSC Bader Award in 2024 for his work in developing methods to re-engineer medically important proteins and carbohydrates. He is actively involved in various professional organisations, including the Astbury Centre for Structural Molecular Biology and the European Carbohydrate Organisation, where he represents the UK. He has also chaired the RSC Carbohydrate Interest Group during its 50th Anniversary Year. In addition to his research, Professor Turnbull has led multiple EU networks focused on glycoscience and synthetic glycobiology, and has co-organised significant meetings, including a Royal Society Theo Murphy Meeting on Synthetic Glycobiology. His current research interests include utilising chemical and enzymatic methods to modify carbohydrates and proteins for targeted delivery and engineering biology applications. He teaches organic and biological chemistry at both undergraduate and master''s levels and serves as the programme manager for the MSc in Chemistry at the University of Leeds.


Research interests

Professor Turnbull''s current research interests encompass the use of chemical and enzymatic methods to make and modify carbohydrates and proteins for applications in targeted delivery and engineering biology. His work includes re-engineering bacterial toxins for the targeted delivery of molecules into cells, targeted delivery of microbubbles to bacterial biofilms, and the development of superselective probes for neuronal and cancer cells. He is also involved in the synthesis of fluorinated glycans to create microarrays that can distinguish proteins binding to the same natural glycan, as well as the use of glycopolymers for protein-mediated wrapping of surfaces and biological objects. Additionally, he synthesises glucose derivatives for isotopic analysis of historical rainfall records in tree rings.

View Professor Bruce Turnbull's profile 

Career overview

Dr Glyn Hemsworth studied at the University of Sheffield, where he obtained a BSc in Biochemistry followed by a PhD in Structural Biology. He then moved to the University of York, where he spent six and a half years as a postdoctoral researcher. In 2016, Dr Hemsworth joined the University of Leeds as a University Academic Fellow and a BBSRC David Phillips Fellow. His research primarily utilises X-ray crystallography and biochemical techniques to gain molecular insights into protein function. Dr Hemsworth''s focus has largely been on enzymes, which are proteins that catalyse many reactions essential for life. He has studied enzymes involved in DNA replication, nucleotide homeostasis, and nutrient acquisition from food. Currently, he is investigating proteins that may play a role in biomass degradation, aiming to utilise them for generating more sustainable biofuels in the future.


Research interests

Dr Hemsworth''s research focuses on the discovery and characterisation of new proteins with potential biotechnological applications. He primarily uses X-ray crystallography and biochemical techniques to gain molecular insight into how proteins function, with a particular emphasis on enzymes that catalyse reactions essential for life. His work includes studying enzymes involved in DNA replication, nucleotide homeostasis, and nutrient acquisition from food. Currently, he is investigating proteins that may contribute to the degradation of biomass, aiming to utilise them for generating more sustainable biofuels in the future. Dr Hemsworth combines structural, biochemical, and biophysical methods to achieve a molecular-level understanding of enzymatic function.

View Dr. Glyn Hemsworth's profile