染色质重塑
生物
血管平滑肌
细胞生物学
表型
转录因子
表型转换
基因
血管紧张素II
重编程
下调和上调
染色质
遗传学
受体
内分泌学
平滑肌
作者
Junyi Yu,Wei Wang,Jining Yang,Ye Zhang,Xue Gong,Hao Luo,Nian Cao,Zaicheng Xu,Miao Tian,Peipei Yang,Mei Qiao,Zhi Chen,Zhuxin Li,Chuanwei Li,Xuan‐Ming Duan,Qing Lyu,Chen Gao,Bing Zhang,Yibin Wang,Gengze Wu,Chunyu Zeng
出处
期刊:Circulation Research
[Ovid Technologies (Wolters Kluwer)]
日期:2022-10-14
卷期号:131 (9): 768-787
被引量:14
标识
DOI:10.1161/circresaha.122.321080
摘要
Vascular smooth muscle cells (VSMCs) phenotype switch from contractile to proliferative phenotype is a pathological hallmark in various cardiovascular diseases. Recently, a subset of long noncoding RNAs was identified to produce functional polypeptides. However, the functional impact and regulatory mechanisms of long noncoding RNAs in VSMCs phenotype switching remain to be fully elucidated.To illustrate the biological function and mechanism of a VSMC-enriched long noncoding RNA and its encoded peptide in VSMC phenotype switching and vascular remodeling.We identified a VSMC-enriched transcript encoded by a previously uncharacterized gene, which we called phenotype switching regulator (PSR), which was markedly upregulated during vascular remodeling. Although PSR was annotated as a long noncoding RNA, we demonstrated that the lncPSR (PSR transcript) also encoded a protein, which we named arteridin. In VSMCs, both arteridin and lncPSR were necessary and sufficient to induce phenotype switching. Mechanistically, arteridin and lncPSR regulate downstream genes by directly interacting with a transcription factor YBX1 (Y-box binding protein 1) and modulating its nuclear translocation and chromatin targeting. Intriguingly, the PSR transcription was also robustly induced by arteridin. More importantly, the loss of PSR gene or arteridin protein significantly attenuated the vascular remodeling induced by carotid arterial injury. In addition, VSMC-specific inhibition of lncPSR using adeno-associated virus attenuated Ang II (angiotensin II)-induced hypertensive vascular remodeling.PSR is a VSMC-enriched gene, and its transcript IncPSR and encoded protein (arteridin) coordinately regulate transcriptional reprogramming through a shared interacting partner, YBX1. This is a previously uncharacterized regulatory circuit in VSMC phenotype switching during vascular remodeling, with lncPSR/arteridin as potential therapeutic targets for the treatment of VSMC phenotype switching-related vascular remodeling.
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