Understanding the mechanistic basis of phenotypic heterogeneity in HTRA1-related vascular disease
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AI plain-English summaryA single missense mutation in the HTRA1 protease selectively impairs how the enzyme cuts some of its targets but not others, producing different disease risks in the brain versus the heart. This matters because mutations in HTRA1 are known to cause a rare stroke syndrome when both copies of the gene are faulty, but recent work has revealed that even a single faulty copy—carried by a small fraction of people—raises the risk of common diseases like ischaemic stroke and coronary artery disease. The puzzle is that one specific mutation increases heart disease risk without affecting stroke risk, suggesting that the same enzyme drives vascular damage through different mechanisms in different blood vessels. The researcher will map which protein substrates are cleaved by normal versus mutant HTRA1, then use stem-cell-derived blood vessel organoids to see how these molecular changes alter the behaviour of vascular cells. If successful, this work will identify the specific substrates that drive disease in the heart and brain separately, providing mechanistic models that could eventually guide the development of therapies tailored to each vascular bed. The research is fundamental science—it will not produce a treatment immediately, but it will clarify why a single genetic change can have such different consequences in different parts of the body, a question that has puzzled clinicians and geneticists alike.
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