Ye Zehua, Sun Yushi, Yang Songyuan, Li Lei, Li Bojun, Xia Yuqi, Yuan Tianhui, Yu Weimin, Chen Lijia, Zhou Xiangjun, Cheng Fan
Department of Urology, Renmin hospital of Wuhan university, Wuhan, 430060, China.
Adv Sci (Weinh). 2025 Mar;12(12):e2413937. doi: 10.1002/advs.202413937. Epub 2025 Feb 4.
The incidence of kidney stones is increasing worldwide. However, the underlying mechanism of the process of kidney stone formation and the kidney damage caused are not well understood. Here, it is observed that Lgals3, a β-galactoside-binding protein, is significantly increased in tissues with calcium oxalate (CaOx) stones, and in both in vivo and in vitro models. Lgals3 expression is positively correlated with the deposition of CaOx crystals. Knockout of Lgals3 markedly reduces the deposition of CaOx crystal and renal fibrosis in vivo. Furthermore, Lgals3 deficiency decrease the glycolytic rate and lactate production during the process of CaOx deposition and inhibited histone lactylation of H3K18la. Mechanistic studies shows that Lgals3 directly interacted with the key glycolysis protein pyruvate kinase M2 (PKM2) and promoted its expression by modulating E3 ligase Trim21, preventing the ubiquitination of PKM2. Furthermore, H3K18 lactylation promoted CaOx crystal deposition and kidney injury in vivo and in vitro. Lgals3 deficiency inhibites the transcription, activation, and expression of FGFR4 through inhibition of H3K18la. These findings suggest that Lgals3 may play a key role in CaOx stone formation and kidney injury by interacting with PKM2 and promoting both H3K18la-mediated gene transcription and activation.
肾结石的发病率在全球范围内呈上升趋势。然而,肾结石形成过程及其所致肾损伤的潜在机制尚未完全明确。在此研究中发现,一种β-半乳糖苷结合蛋白Lgals3在草酸钙(CaOx)结石组织以及体内和体外模型中均显著升高。Lgals3的表达与CaOx晶体的沉积呈正相关。在体内敲除Lgals3可显著减少CaOx晶体的沉积和肾纤维化。此外,Lgals3缺陷降低了CaOx沉积过程中的糖酵解速率和乳酸生成,并抑制了H3K18la的组蛋白乳酸化。机制研究表明,Lgals3直接与关键糖酵解蛋白丙酮酸激酶M2(PKM2)相互作用,并通过调节E3连接酶Trim21促进其表达,从而防止PKM2的泛素化。此外,H3K18乳酸化在体内和体外均促进了CaOx晶体沉积和肾损伤。Lgals3缺陷通过抑制H3K18la抑制了FGFR4的转录、激活和表达。这些发现表明,Lgals3可能通过与PKM2相互作用,促进H3K18la介导的基因转录和激活,在CaOx结石形成和肾损伤中起关键作用。