A cholesterol-responsive hepatic tRNA-derived small RNA regulates cholesterol homeostasis and atherosclerosis development

X Xiuchun Li R Rebecca Hernandez X Xudong Zhang S Sijie Tang X Xiaohong Yuan J Jing Wu K Kathy Pham H Hukam C. Rawal E Erica C. Heinrich S Shenglong Zhang Q Qi Chen T Tong Zhou C Changcheng Zhou

Abstract

Abstract Transfer RNA-derived small RNAs (tsRNAs) have emerged as crucial players in diverse biological processes. Yet, their involvement in lipid metabolism and cardiovascular disease remains elusive. Using an advanced PANDORA-seq method, we identify tsRNA-Glu-CTC as the most abundant tsRNA in mouse liver. Intriguingly, tsRNA-Glu-CTC is cholesterol responsive. Overexpression of tsRNA-Glu-CTC elicits hypercholesterolemia and hepatic steatosis, whereas its knockdown protects against diet-induced hypercholesterolemia and atherosclerosis in mice. Mechanistically, tsRNA-Glu-CTC regulates key hepatic lipogenic genes including Srebp2 , a master regulator of lipid metabolism. tsRNA-Glu-CTC interacts with SREBP2 to regulate its own transcription through an E-box motif. We further identify site-specific RNA modifications of endogenous tsRNA-Glu-CTC by a mass spectrometry-based MLC-seq and demonstrate the modified tsRNA-Glu-CTC as a more potent regulator of cholesterol homeostasis compared to its unmodified synthetic counterpart. Collectively, our study reveals an important role of a liver-enriched tsRNA in lipid metabolism and cardiovascular health, opening new therapeutic avenues for cardiometabolic disease.

Article Details

Volume / Issue Vol. 16, Issue 1
Published December 15, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (13)

X

Xiuchun Li

R

Rebecca Hernandez

X

Xudong Zhang

S

Sijie Tang

X

Xiaohong Yuan

J

Jing Wu

K

Kathy Pham

H

Hukam C. Rawal

E

Erica C. Heinrich

S

Shenglong Zhang

Q

Qi Chen

T

Tong Zhou

C

Changcheng Zhou