Proton coupled transporters in health and disease.
In plain English
AI plain-English summaryEvery time you swallow a pill, a tiny protein gatekeeper in your gut lining decides whether that drug gets into your bloodstream or gets flushed out. These gatekeepers are proton-coupled transporters, and scientists still do not know exactly how they work. This research aims to close that gap. The proteins in question—belonging to the SLC15, SLC36, and SLC46 families—are responsible for moving nutrients like peptides, amino acids, and folate into cells, and they also handle many common oral drugs. Despite their central role in metabolism and drug absorption, their three-dimensional structures and the precise mechanisms by they recognise and transport molecules remain largely unknown. The researcher will combine structural biology, biochemistry, and biophysics to determine how these transporters recognise their cargo, how they move it across membranes, and how they are regulated in different cellular environments. A key output will be accurate pharmacophore models—essentially molecular blueprints—that explain how drug molecules are recognised and translocated. If successful, this fundamental science could enable pharmaceutical companies to design drugs that hitch a ride on these transporters more efficiently, improving drug uptake and retention in the body. That could mean lower doses, fewer side effects, and better treatments for conditions ranging from infections to metabolic disorders.
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