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鞘磷脂调节核脂质微区中的转录机制。

Sphingomyelin regulates the transcriptional machinery in nuclear lipid microdomains.

作者信息

Conte Carmela, Bulfoni Michela, Fiorani Federico, Cataldi Samuela, Gualandi Nicolò, Calderini Ornella, Garcia-Gil Mercedes, Vesca Giorgia, Paroni Rita, Cas Michele Dei, Arcuri Cataldo, Mirarchi Alessandra, Beccari Tommaso, Kobayashi Toshihide, Tomishige Nario, Signorelli Paola, Curcio Francesco, Albi Elisabetta

机构信息

Department of Pharmaceutical Sciences, University of Perugia, 06126, Perugia, Italy.

Department of Medicine (DAME), University of Udine, 33100, Udine, Italy.

出版信息

Commun Biol. 2025 Aug 29;8(1):1303. doi: 10.1038/s42003-025-08697-2.

Abstract

Nuclear lipid microdomains rich in sphingomyelin and cholesterol content regulate double-stranded exonuclease-resistant RNA. The study aimed to elucidate the importance of nuclear lipid microdomains in safeguarding nuclear RNA from digestion and to scrutinize all RNA present. Thus, we investigated the impact of sphingomyelinase on nuclear lipid microdomain RNA and conducted RNA extraction, library preparation, and sequencing. Sphingomyelinase treatment makes the RNA susceptible to RNase treatment. Nuclear lipid microdomains exhibit a higher abundance of retained introns, small nuclear RNA, and long intergenic non-coding RNA compared to whole nuclei, with a notable enrichment in miRNA. The high concentration (20%) of miRNAs in nuclear lipid microdomains is justified by the presence of specific nuclear circular RNA as exons circularized with 'retained' introns, referred to as exon-intron circular RNA (EIciRNA) that act as a sponge for miRNAs. Moreover, we demonstrate the presence of ciRNA. The functional analysis indicates that all types of RNase-resistant RNA associated with nuclear lipid microdomains are involved in chromatin organization and brain pathophysiology. In conclusion, nuclear lipid microdomains represent a site of transcription regulation in which circular RNAs, miRNA, and double-stranded mRNA, all resistant to RNase, are stabilized by nuclear sphingomyelin.

摘要

富含鞘磷脂和胆固醇的核脂质微区调控双链外切核酸酶抗性RNA。该研究旨在阐明核脂质微区在保护核RNA不被消化方面的重要性,并仔细检查所有存在的RNA。因此,我们研究了鞘磷脂酶对核脂质微区RNA的影响,并进行了RNA提取、文库制备和测序。鞘磷脂酶处理使RNA易受核糖核酸酶处理。与整个细胞核相比,核脂质微区中保留内含子、小核RNA和长链基因间非编码RNA的丰度更高,其中miRNA显著富集。核脂质微区中高浓度(20%)的miRNA是由特定的核环状RNA的存在所证明的,这些环状RNA是由“保留”内含子环化的外显子,称为外显子-内含子环状RNA(EIciRNA),它作为miRNA的海绵。此外,我们证明了ciRNA的存在。功能分析表明,与核脂质微区相关的所有类型的抗核糖核酸酶RNA都参与染色质组织和脑病理生理学。总之,核脂质微区代表了一个转录调控位点,其中环状RNA、miRNA和双链mRNA都对核糖核酸酶具有抗性,并通过核鞘磷脂得以稳定。

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