Making sense of how Leishmania detect changes in pH and temperature
In plain English
AI plain-English summaryLeishmania parasites must sense a sudden drop in pH and a rise in temperature as they move from a sand fly’s gut into a human’s bloodstream, but no one knows how they detect these changes. The problem is that Leishmania lack the usual molecular sensors—like G-protein coupled receptors—that other organisms use to read their environment. This project aims to find the protein kinases that act as the parasite’s thermometers and pH meters. The researcher has already identified two kinases, HDK1 and HDK2, that respond to falling pH. She will now map the full signalling pathway, screen for kinases that detect rising temperature and higher pH, and test whether similar sensors exist in the related parasite *Trypanosoma cruzi*. This is fundamental science. Understanding how Leishmania senses its surroundings could reveal new drug targets. Because protein kinases are druggable, blocking these sensors might prevent the parasite from ever adapting to the human host—stopping infection before it starts. The researcher will also test whether mutant parasites that cannot sense pH survive inside sand flies, which could point toward a transmission-blocking strategy. If successful, this work would open a completely new route for treating leishmaniasis, a neglected disease that causes disfiguring skin ulcers and fatal organ damage.
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