Aortic valve stenosis (AVS) is a progressive disease, wherein males more often develop valve calcification relative to females that develop valve fibrosis. Valvular interstitial cells (VICs) aberrantly activate to myofibroblasts during AVS, driving the fibrotic valve phenotype in females. Myofibroblasts further differentiate into osteoblast-like cells and produce calcium nanoparticles, driving valve calcification in males. We hypothesized that the lysine demethylase UTY (ubiquitously transcribed tetratricopeptide repeat containing Y-linked) decreases methylation uniquely in male VICs responding to nanoscale extracellular matrix cues to promote an osteoblast-like cell phenotype. Here, we describe a hydrogel biomaterial cell culture platform to interrogate how nanoscale cues modulate sex-specific methylation states in VICs activating to myofibroblasts and osteoblast-like cells. We found that UTY modulates the osteoblast-like cell phenotype in response to nanoscale cues uniquely in male VICs. Overall, we reveal a previously unidentified role of UTY in the regulation of calcification processes in males during AVS progression.
Y chromosome-linked UTY modulates sex differences in valvular fibroblast methylation in response to nanoscale extracellular matrix cues.
Y 染色体连锁的 UTY 基因通过纳米级细胞外基质信号调节瓣膜成纤维细胞甲基化的性别差异
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作者:Gorashi Rayyan M, Baddour Talia, Chittle Sarah J, Félix Vélez Nicole E, Wenning Michaela A, Anseth Kristi S, Mestroni Luisa, Peña Brisa, Guo Peng, Aguado Brian A
| 期刊: | Science Advances | 影响因子: | 12.500 |
| 时间: | 2025 | 起止号: | 2025 Mar 14; 11(11):eads5717 |
| doi: | 10.1126/sciadv.ads5717 | 研究方向: | 信号转导、细胞生物学 |
| 信号通路: | DNA甲基化 | ||
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