“MiR-7 controls cholesterol biosynthesis through posttranscriptional regulation of DHCR24 expression”

IF 2.6 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Mario Fernández-de Frutos , Virginia Pardo-Marqués , Marta Torrecilla-Parra , Patricia Rada , Ana Pérez-García , Yolanda Martín-Martín , Gema de la Peña , Ana Gómez , Ana Toledano-Zaragoza , Diego Gómez-Coronado , María José Casarejos , José M. Solís , Noemí Rotllan , Óscar Pastor , María Dolores Ledesma , Ángela M. Valverde , Rebeca Busto , Cristina M. Ramírez
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引用次数: 0

Abstract

Dysregulation of cholesterol homeostasis is associated with several pathologies including cardiovascular diseases and neurological disorders such as Alzheimer's disease (AD). MicroRNAs (miRNAs) have emerged as key post-transcriptional regulators of cholesterol metabolism. We previously established the role of miR-7 in regulating insulin resistance and amyloidosis, which represents a common pathological feature between type 2 diabetes and AD. We show here an additional metabolic function of miR-7 in cholesterol biosynthesis. We found that miR-7 blocks the last steps of the cholesterol biosynthetic pathway in vitro by targeting relevant genes including DHCR24 and SC5D posttranscriptionally. Intracranial infusion of miR-7 on an adeno-associated viral vector reduced the expression of DHCR24 in the brain of wild-type mice, supporting in vivo miR-7 targeting. We also found that cholesterol regulates endogenous levels of miR-7 in vitro, correlating with transcriptional regulation through SREBP2 binding to its promoter region. In parallel to SREBP2 inhibition, the levels of miR-7 and hnRNPK (the host gene of miR-7) were concomitantly reduced in brain in a mouse model of Niemann Pick type C1 disease and in murine fatty liver, which are both characterized by intracellular cholesterol accumulation. Taken together, the results establish a novel regulatory feedback loop by which miR-7 modulates cholesterol homeostasis at the posttranscriptional level, an effect that could be exploited for therapeutic interventions against prevalent human diseases.

“MiR-7通过转录后调控DHCR24表达来控制胆固醇的生物合成”
胆固醇稳态失调与多种疾病有关,包括心血管疾病和神经系统疾病,如阿尔茨海默病(AD)。微小RNA(miRNA)已成为胆固醇代谢的关键转录后调节因子。我们之前已经确定了miR-7在调节胰岛素抵抗和淀粉样变性中的作用,这是2型糖尿病和AD之间的一个常见病理特征。我们在这里展示了miR-7对胆固醇生物合成的额外代谢功能。我们发现miR-7通过转录后靶向DHCR24和SC5D等相关基因,在体外阻断胆固醇生物合成途径的最后一步。在腺相关病毒载体上颅内输注miR-7降低了DHCR24在野生型小鼠大脑中的表达,支持体内miR-7靶向。我们还发现,胆固醇在体外调节miR-7的内源性水平,通过与其启动子区结合的SREBP2与转录调控相关。在抑制SREBP2的同时,在Niemann-Pick C1型疾病的小鼠模型和小鼠脂肪肝中,脑中miR-7和hnRNPK(miR-7的宿主基因)的水平同时降低,这两种疾病都以细胞内胆固醇积聚为特征。总之,这些结果建立了一个新的调节反馈回路,miR-7通过该回路在转录后水平调节胆固醇稳态,这种作用可用于对流行的人类疾病的治疗干预。
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来源期刊
CiteScore
9.20
自引率
2.10%
发文量
63
审稿时长
44 days
期刊介绍: BBA Gene Regulatory Mechanisms includes reports that describe novel insights into mechanisms of transcriptional, post-transcriptional and translational gene regulation. Special emphasis is placed on papers that identify epigenetic mechanisms of gene regulation, including chromatin, modification, and remodeling. This section also encompasses mechanistic studies of regulatory proteins and protein complexes; regulatory or mechanistic aspects of RNA processing; regulation of expression by small RNAs; genomic analysis of gene expression patterns; and modeling of gene regulatory pathways. Papers describing gene promoters, enhancers, silencers or other regulatory DNA regions must incorporate significant functions studies.
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