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镁可减轻磷酸盐诱导的微小RNA特征失调,并在血管钙化过程中防止Smad1和骨钙素的调节异常。

Magnesium Attenuates Phosphate-Induced Deregulation of a MicroRNA Signature and Prevents Modulation of Smad1 and Osterix during the Course of Vascular Calcification.

作者信息

Louvet Loïc, Metzinger Laurent, Büchel Janine, Steppan Sonja, Massy Ziad A

机构信息

INSERM U 1088, CURS, University of Picardie Jules Verne, Amiens, France.

Fresenius Medical Care Deutschland GmbH, Bad Homburg, Germany.

出版信息

Biomed Res Int. 2016;2016:7419524. doi: 10.1155/2016/7419524. Epub 2016 Jun 22.

Abstract

Vascular calcification (VC) is prevalent in patients suffering from chronic kidney disease (CKD). High phosphate levels promote VC by inducing abnormalities in mineral and bone metabolism. Previously, we demonstrated that magnesium (Mg(2+)) prevents inorganic phosphate- (Pi-) induced VC in human aortic vascular smooth muscle cells (HAVSMC). As microRNAs (miR) modulate gene expression, we investigated the role of miR-29b, -30b, -125b, -133a, -143, and -204 in the protective effect of Mg(2+) on VC. HAVSMC were cultured in the presence of 3 mM Pi with or without 2 mM Mg(2+) chloride. Total RNA was extracted after 4 h, 24 h, day 3, day 7, and day 10. miR-30b, -133a, and -143 were downregulated during the time course of Pi-induced VC, whereas the addition of Mg(2+) restored (miR-30b) or improved (miR-133a, miR-143) their expression. The expression of specific targets Smad1 and Osterix was significantly increased in the presence of Pi and restored by coincubation with Mg(2+). As miR-30b, miR-133a, and miR-143 are negatively regulated by Pi and restored by Mg(2+) with a congruent modulation of their known targets Runx2, Smad1, and Osterix, our results provide a potential mechanistic explanation of the observed upregulation of these master switches of osteogenesis during the course of VC.

摘要

血管钙化(VC)在慢性肾脏病(CKD)患者中普遍存在。高磷水平通过诱导矿物质和骨代谢异常来促进VC。此前,我们证明镁(Mg(2+))可预防无机磷酸盐(Pi)诱导的人主动脉血管平滑肌细胞(HAVSMC)发生VC。由于微小RNA(miR)可调节基因表达,我们研究了miR-29b、-30b、-125b、-133a、-143和-204在Mg(2+)对VC的保护作用中的作用。将HAVSMC在含有3 mM Pi且有或无2 mM氯化镁的条件下培养。在4小时、24小时、第3天、第7天和第10天后提取总RNA。在Pi诱导VC的过程中,miR-30b、-133a和-143表达下调,而添加Mg(2+)可恢复(miR-30b)或改善(miR-133a、miR-143)它们的表达。在存在Pi的情况下,特异性靶标Smad1和osterix的表达显著增加,与Mg(2+)共同孵育可使其恢复。由于miR-30b、miR-133a和miR-143受Pi负调控,并被Mg(2+)恢复,同时对其已知靶标Runx2、Smad1和osterix有一致调控,我们的结果为VC过程中观察到的这些成骨主控开关上调提供了潜在的机制解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2406/4933865/5e6113752a38/BMRI2016-7419524.001.jpg

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