Kidney-specific lipid metabolism underlies stable chemical individuality in domestic cats and other felids
Ichizawa, S.; Caspers, J.; Uenoyama, R.; Morisasa, M.; Goto-Inoue, N.; Miyazaki, T.; Suzuki, Y.; Nakanishi, N.; Endo, Y.; Izawa, M.; Yamashita, T.; Schulz, S.; Miyazaki, M.
Show abstract
Domestic cats uniquely accumulate lipid droplets (LDs) in renal proximal tubular epithelial cells, but their chemical composition and biological functions remain unknown. Here, we identify a distinctive renal specialization in felids: lipid droplets enriched in branched-chain fatty acids (BFAs). These BFAs accumulate as triglyceride components and are excreted in urine as free fatty acids with stable and individually distinctive profiles. Behavioral assays show that cats discriminate urine samples based on BFA composition, even against complex volatile backgrounds, suggesting BFAs as robust, metabolically encoded olfactory signatures for individual recognition. Comparative analyses of non-domesticated felids reveal that BFA production is broadly conserved but exhibits both species-specific and individual variation. These findings demonstrate how a core metabolic pathway has been evolutionarily co-opted into a chemical signature system. This discovery highlights an unusual integration of renal physiology with social communication and expand our understanding of lipid metabolism, organ-level adaptation, and the evolution of chemical individuality in mammals. Significance statementUnique lipid droplets in felid kidneys reveal how organ-specific metabolism can be adapted for social communication.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Towards a species search engine: KISSE offers a rigorous statistical framework for bone collagen tandem mass spectrometry data 90%
- Visualization of a Limonene Synthesis Metabolon inside Living Bacteria by Hyperspectral SRS Microscopy 89%
- Complete sequences of the velvet worm slime proteins reveal that slime formation is enabled by disulfide bonds and intrinsically disordered regions 89%
Similar papers in this journal
- Shotgun lipidomics and mass spectrometry imaging unveil diversity and dynamics in lipid composition in Gammarus fossarum 92%
- High Glucose Diet Induces Hepatic Iron Overload Contributing to Metabolic Dysfunction 91%
- Peptide Ancestry Informative Markers in Uterine Neoplasms from Women of European, African and Asian Ancestry 91%
Similar papers in this journal
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.