Contact: Eileen Teves, 210-450-7239, tevese@uthscsa.edu
Content provided by Claire Kowalick
SAN ANTONIO, Aug. 12, 2026 — What if one of the keys to a healthier metabolism is understanding how and when the liver communicates with the rest of the body?
Researchers at UT Health San Antonio, the academic health center of The University of Texas at San Antonio (UT San Antonio), have uncovered how the liver’s internal clock coordinates the release of proteins that help regulate metabolism.
Published June 2 in Nature Communications, the study found that many of these proteins are released according to a precise daily schedule, allowing the liver to communicate with organs such as fat tissue at specific times of the day. The findings could help guide future research on metabolic disease, along with timing meals and medication.
For many biological functions, timing is everything. Nearly every cell in the body contains its own molecular clock, helping coordinate daily processes such as metabolism. Researchers are working to better understand how these clocks communicate with one another.

“Any cell with a nucleus is likely to express the molecular clock. We are interested in how cells work together and coordinate their activities,” said Kevin Koronowski, PhD, assistant professor in the Department of Biochemistry and Structural Biology at the Joe R. and Teresa Lozano Long School of Medicine and the Sam and Ann Barshop Institute for Longevity and Aging Studies. “The clock is one way the body can organize physiology in an efficient and appropriate manner.”
Researchers have long known that disrupted sleep schedules and irregular eating patterns increase the risk of obesity, diabetes and other metabolic disorders. Because the liver plays a central role in metabolism, scientists wanted to better understand how its internal clock regulates the release of proteins that communicate with other organs.
Christopher Litwin, a fourth-year PhD student in Koronowski’s lab and first author on the study, said that while researchers have known the liver regulates the secretion of some of the proteins, they lacked a developed measure of how and when proteins were released.
“We thought the time-dependent release of proteins may be important for coordinating metabolism in tissues like fat or muscle,” said Litwin. “The core idea is that the clock regulates protein secretion and can influence metabolism across the day, and in other tissues.”
One of the study’s biggest discoveries was that a liver protein called endostatin was most effective at helping break down fat when it was released on the liver’s natural daily schedule. The finding suggests that future treatments based on this protein may work best if they’re given at the right time of day. The research team is continuing to investigate new approaches that could lead to future therapeutic benefits.
“We are interested in developing and characterizing novel peptides. We want to find the next GLP-1 drug, or even something better that is waiting to be discovered,” said Koronowski.
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UT Health San Antonio is the academic health center of The University of Texas at San Antonio (UT San Antonio), offering a comprehensive network of inpatient and outpatient care facilities staffed by medical, dental, nursing and allied health professionals who conduct more than 2.5 million patient visits each year. It is the region’s only academic health center and one of the nation’s leading health sciences institutions, supported by the schools of medicine, nursing, dentistry, health professions, graduate biomedical sciences and public health that are leading change and advancing fields throughout South Texas and the world. To learn about the many ways “We make lives better®,” visit UTHealthSA.org.
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