Bacteriology

Non-protein ubiquitylation in infection and physiology

Medical Research Council (Cambridge)

Not stated

Location
Cambridge, United Kingdom, United Kingdom
Funding
Competition Funded PhD Project (Students Worldwide)
Application deadline
8 December 2026

About the project

About the Project Ubiquitylation is essential for eukaryotic life. Until recently, proteins were the only substrates known to be modified with ubiquitin. Then we reported that the E3 ligase RNF213 ubiquitylates lipopolysaccharide (LPS) on bacteria that invade the host cytosol. LPS ubiquitylation marks bacteria for selective autophagy, thereby protecting the host from infection. Other non-protein substrates of ubiquitylation have since been identified, but the consequences of this modification remain largely unknown. We recently discovered that mice lacking RNF213 accumulate insoluble glycogen (polyglucosan bodies) in specific brain regions, a pathology reminiscent of human Lafora disease. RNF213 selectively ubiquitylates poorly branched glycogen, triggering its removal by selective autophagy and thereby preventing polyglucosan accumulation. Non-protein ubiquitylation is a nascent field with clear importance in immune defense against pathogens, biomolecular quality control and likely many other cellular activities. Students interested in investigating the molecular mechanism and physiological consequences of non-protein ubiquitylation are invited to apply.

Research areas

BacteriologyImmunologyMolecularBiologyNon-proteinubiquitylationininfectionandphysiology