Insights into metabolic health and disease from human genetic variants with major functional impact
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AI plain-English summaryA handful of people with rare genetic mutations are helping scientists untangle why some bodies handle sugar and fat well while others develop diabetes. These mutations, found in large population studies and in patients with extreme metabolic conditions, act like natural experiments—revealing which genes are critical for controlling how the liver, muscle, and fat tissues communicate. The problem is that most knowledge of metabolic control comes from cells or animals, not from humans. This project fills that gap by studying people who carry these powerful genetic variants, then deeply profiling their cells to see exactly how metabolism goes wrong. If successful, the work could pinpoint new drug targets for type 2 diabetes and fatty liver disease, conditions that affect millions. It might also improve genetic diagnostics for rare metabolic disorders, allowing doctors to identify the cause of a child’s unexplained hypoglycaemia or severe insulin resistance. This is fundamental science—no immediate treatment will emerge—but similar human-genetic studies have already led to blockbuster drugs for high cholesterol and heart disease.
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