Researchers have discovered a new nutrient source that pancreatic cancer cells use to grow. The molecule, uridine, offers insight into both biochemical processes and possible therapeutic pathways.
The findings, published in Nature, show that cancer cells can adapt when they don’t have access to glucose. Researchers have previously identified other nutrients that serve as fuel sources for pancreatic cancer; this study adds uridine to the catalog.
Pancreatic tumors have few functioning blood vessels and can’t easily access nutrients that come from the bloodstream, like glucose. The lead investigator of the study, explained that without the right nutrients, the cancer cells get hungry. “We know they still grow, obviously, but what are they using to grow?” the author said. “These findings show that, under certain circumstances, uridine is one of those fuels.”
One of the co-first authors in the study, says “the ability of cancer to switch to alternative nutrients has fascinated me for a long time. Blocking such compensatory switches could lead us to new treatments and that’s the door we hope this study will open”.
Uridine is present in the tumor microenvironment, but its exact source, and how cancer cells access it, remains a mystery. “Part of the picture is it’s in the bloodstream, but we don’t know where it’s coming from specifically,” said the senior author. “Likely, it’s coming from multiple places, and so far we haven’t been able to pin it to a single source.”
Events that the team refers to as “times of crisis” – when cells don’t have enough nutrients, because of limited blood access and/or intense competition between cells – could be a clue as to why, and where, cells turn to uridine. "The cancer cells seem to be sensing the concentrations of glucose and uridine in the local environment to inform their adaptation,” says another co-first author. The team recognizes this unknown regulatory process, as well as a cancer-promoting mutation in the KRAS gene, which is common in pancreatic cancer, as two ways that cancer cells control their usage of uridine.
The authors used a technology that screens hundreds of different nutrients to see which ones support pancreatic cancer growth. Typically, researchers look at standard nutrients like sugar, protein and fat, but the team took an unbiased approach. “We used a large panel with over 20 pancreatic cell lines and around 200 different nutrients to assess different ways pancreatic cancer cells grow,” the author explained. “What do they actually metabolize? This method led us to discover uridine.”
This method offers therapeutic insight, too. The findings showed that uridine is metabolized by the enzyme uridine phoshorylase-1, or UPP1. Blocking UPP1 had a major impact on the growth of pancreatic tumors in mice, findings that suggest the importance of testing drugs that block uridine as possible new treatment options.
“There’s potential to better understand and treat pancreatic cancer with new drug targets and new therapeutic approaches,” said a co-author on the study.
More research is needed to determine the best way to move this discovery to the clinic.
https://www.nature.com/articles/s41586-023-06073-w
http://sciencemission.com/site/index.php?page=news&type=view&id=publications%2Furidine-derived-ribose&filter=22
Cancer cells use a new fuel in absence of sugar
- 1,171 views
- Added
Latest News
Fat cells help repair damag…
By newseditor
Posted 29 Nov
Brain link between stress a…
By newseditor
Posted 28 Nov
Worm neural signal propagat…
By newseditor
Posted 28 Nov
Regenerating muscle by dire…
By newseditor
Posted 28 Nov
Brain and heart connections…
By newseditor
Posted 27 Nov
Other Top Stories
Identifying and targeting Ebola virus polymerase interacting human…
Read more
How bacteria move through fluids containing small solid particles
Read more
A single mutation can make Zika virus even more dangerous
Read more
A new yeast cell death pathway
Read more
How T cell-derived interleukin-22 promotes antibacterial defense of…
Read more
Protocols
Microfluidic-based skin-on-…
By newseditor
Posted 28 Nov
Biology-guided deep learnin…
By newseditor
Posted 26 Nov
Accurate prediction of prot…
By newseditor
Posted 25 Nov
The Brainbox–a tool to faci…
By newseditor
Posted 24 Nov
Real-time analysis of the c…
By newseditor
Posted 22 Nov
Publications
Brain-body communication in…
By newseditor
Posted 29 Nov
Lateral hypothalamic proenk…
By newseditor
Posted 28 Nov
Cold-stimulated brown adipo…
By newseditor
Posted 28 Nov
Neural signal propagation a…
By newseditor
Posted 28 Nov
Exercised breastmilk: a kic…
By newseditor
Posted 28 Nov
Presentations
Hydrogels in Drug Delivery
By newseditor
Posted 12 Apr
Lipids
By newseditor
Posted 31 Dec
Cell biology of carbohydrat…
By newseditor
Posted 29 Nov
RNA interference (RNAi)
By newseditor
Posted 23 Oct
RNA structure and functions
By newseditor
Posted 19 Oct
Posters
A chemical biology/modular…
By newseditor
Posted 22 Aug
Single-molecule covalent ma…
By newseditor
Posted 04 Jul
ASCO-2020-HEALTH SERVICES R…
By newseditor
Posted 23 Mar
ASCO-2020-HEAD AND NECK CANCER
By newseditor
Posted 23 Mar
ASCO-2020-GENITOURINARY CAN…
By newseditor
Posted 23 Mar