Completed Cells, Biochemistry & Physiology Heart, Stroke & Blood

Thiol-disulfide redox switches in protein kinases and their role in cardiovascular health and disease

In plain English

AI plain-English summary

Oxidants—molecules often linked to cell damage—are also essential signals that help the heart and blood vessels adapt to stress, and researchers have just discovered new proteins that sense these signals. This matters because cardiovascular disease remains the world’s leading cause of death, including in the UK. Current treatments focus on blocking oxidant damage, but that approach can also interfere with the beneficial signalling roles of these molecules. The team has identified specific “redox sensor” proteins that change shape when oxidants modify them, acting as molecular switches. Until now, these sensors were unknown, leaving a gap in understanding how the cardiovascular system tunes its responses to exercise, injury, or disease. If this fundamental science succeeds, it will reveal exactly which proteins and which structural changes control key processes like blood vessel dilation or heart muscle adaptation. That knowledge could eventually guide drug development toward more precise therapies—ones that preserve healthy oxidant signalling while preventing harmful damage. Because the work is curiosity-driven, immediate applications are not guaranteed, but similar discoveries about protein switches have previously opened entirely new classes of drugs, such as those targeting kinase-driven cancers.

View original technical description
Whilst oxidants may contribute to the pathogenesis of cardiovascular disease, many of them also function as important signalling molecules, carrying vital information about cellular redox state. Oxidants are crucial for adaptation of the cardiovascular system during health, as well as during disease. Oxidants can regulate biological processes by inducing structural modifications of proteins, which can changes their function. This application seeks funds to capitalise on our recent identification of new redox sensors. Our aim is to define the role of these newly identified redox sensors proteins in cardiovascular health and disease. These studies may provide new insight to targets for drug development that improve human health in the setting cardiovascular disease. This is important as cardiovascular disease is the leading cause of death in the world, including in the United Kingdom.

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Researchers

Philip Eaton (Principal Investigator)

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Research Grant

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