Associated organisationsQueen Mary University of London · University of CambridgeEurope PMC affiliations are not treated as award recipients or mapped locations.
Funding£4.3M
PeriodApr 2025 — Mar 2032
In plain English
AI plain-English summary
People in the UK who carry rare, damaging genetic variants are being recalled for detailed physiological study to reveal how specific genes control metabolism and hormone systems. This matters because most genes linked to metabolic and endocrine pathways have unknown roles in human physiology. Traditional genetics starts with a disease and finds the gene; this project does the reverse—starting with a known damaging mutation in a gene and working out what it does to the body. The researchers have already identified UK individuals with loss-of-function mutations in genes regulating adipocyte metabolism, nuclear receptors, and GPCRs, and can recall them for deep phenotyping. If successful, this work could pinpoint new drug targets for metabolic diseases like diabetes and obesity, and clarify why some people are protected from or predisposed to these conditions. The approach also establishes a reusable pipeline for reverse human genetics, accelerating future discoveries from population sequencing data. While the immediate impact is on fundamental understanding of human biology, such insights have historically led to unexpected therapeutic breakthroughs—for example, understanding rare mutations in PCSK9 led to blockbuster cholesterol-lowering drugs.
View original technical description
Deep characterisation of the functional impact of damaging human mutations, through studies in cells, animal models and humans, can provide novel insights into the control of human metabolic and endocrine phenotypes. Increasing availability of data from whole-exome and -genome sequencing, particularly in populations from which participants can be recalled by genotype for detailed phenotypic study, provides an unprecedented opportunity to accelerate the rate at which such discoveries are made through “reverse human genetics”. Using sequencing data from UK populations, each with specific features that facilitate our aims, we will identify damaging or protective variants in genes implicated in the control of key metabolic and endocrine pathways but whose role in the control of human physiology is poorly understood. Having established the impact of mutations on protein function, we will proceed to in-depth physiological phenotyping of individuals recalled by genotype and, where necessary and potentially illuminating, create and characterise cellular and/or murine models. We provide initial examples encompassing genes highly relevant to metabolic phenotypes that encode for regulators of adipocyte metabolism, nuclear receptors, and GPCRs and their ligands. In these, we have already identified UK-based people who carry heterozygous or homozygous loss- of-function mutations and who are recallable for detailed further study.
Plain English summaries and category classifications on this site are generated by AI and may not perfectly reflect the original research.
Is something wrong? Let us know