癌症研究
肾病
核糖核酸
肾
甲基化
医学
亚硫酸氢盐测序
化学
甲基转移酶
RNA甲基化
DNMT3B型
纤维化
DNA甲基化
发病机制
药理学
信使核糖核酸
急性肾损伤
功能(生物学)
作者
Xiu‐xiu Song,Xiao-Guo Suo,Yue Yu,Kuo Zhang,Chen-Ao Li,Yì Wáng,Hu Xu,Si‐yu Niu,Dongxue Lv,Zi‐Hao He,Feng‐He Li,Xiao‐ming Meng,Juan Jin
标识
DOI:10.1002/advs.202521459
摘要
RNA 5-methylcytosine (m5C) modification plays a critical role in multiple diseases; however, its function in hyperuricaemic nephropathy (HN) remains unclear. Here, we show that renal m5C levels are markedly decreased and the m5C methyltransferase NOP2/Sun RNA methyltransferase 5 (NSUN5) is downregulated in HN mice. Conditional knock-in (cKI) mice and mouse tubular epithelial cells overexpressing NSUN5 exhibit resistance to uric acid (UA), thereby alleviating kidney injury, inflammation, and fibrosis in HN. Bisulphite sequencing coupled with RNA sequencing identifies stearoyl-CoA desaturase-1 (SCD1) as a direct NSUN5 target and reveals the involvement of NSUN5 in ferroptosis regulation. Mechanistically, NSUN5 installs m5C on SCD1 mRNA. The m5C reader YBX2 binds to the modified transcript, prolonging the half-life of SCD1 mRNA and enhancing its stability, thereby suppressing ferroptosis. Elevated SCD1 also inhibits NF-κB p65 phosphorylation and nuclear translocation, dampens inflammatory responses and promotes ABCG2-dependent UA excretion. Recombinant NSUN5 further ameliorates renal injury in HN. Our findings revealed a novel NSUN5-mediated mechanism and highlight a potential therapeutic target for HN.
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