一种新型小鼠模型再现了羊毛甾醇合成酶基因 rs2254524 变体对盐敏感性和器官损伤的影响。

IF 3.3 2区 医学 Q1 PERIPHERAL VASCULAR DISEASE
Journal of Hypertension Pub Date : 2025-01-01 Epub Date: 2024-08-19 DOI:10.1097/HJH.0000000000003843
Sipontina Faienza, Lorena Citterio, Elisabetta Messaggio, Laura Zagato, Chiara Lanzani, Marco Simonini, Barbara Canciani, Francesca Sanvito, Luca Rampoldi, Davor Pavlovic, Paolo Manunta
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引用次数: 0

摘要

目的:血压(BP)对盐摄入量的反应(盐敏感性)在个体之间存在很大差异,在高血压患者中更为常见。类固醇激素内源性尿囊素(EO)水平的升高与高血压(HT)和盐敏感性有关。羊毛甾醇合成酶基因(LSS)在类固醇的生物合成中起着关键作用,其 rs2254524 变体(Val642Leu)与人类的盐敏感性有关。本研究旨在通过一种新的盐敏感性 HT 发病小鼠基因敲入模型,研究 Lss 错义变异的病理生理意义:方法:我们建立了一个携带人类 LSS 变异的小鼠同源基因(Val643Leu)的小鼠模型。给C57BL/6N LssV643L/V643L喂食不同的NaCl饮食(低盐,LSD;正常盐,NSD;高盐,HSD),并在功能、组织学和分子水平上对其进行鉴定:与野生型(WT)小鼠相比,基线突变小鼠的肾脏增大,但Lss V643L变体不会影响EO的生物合成,也不会影响3个月和12个月后的收缩压。在 HSD 中,与 NSD 相比,我们只观察到 12 个月大的 LssV643L/V643L 小鼠收缩压升高。此外,与 WT 小鼠相比,只有 HSD LssV643L/V643L 小鼠在 12 个月时表现出心脏肥大和较高的心脏纤维化发生率。最后,与 WT 相比,LssV643L/V643L 小鼠肾上腺、肝脏和心脏中的 Lss mRNA 水平受到 HSD 的不同调控:结论:新型 Lss 小鼠模型与高血压患者的盐敏感高血压表型相似,是盐敏感高血压和高血压介导的器官损伤的良好模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel mouse model recapitulates the effects of rs2254524 variant in the lanosterol synthase gene on salt sensitivity and organ damage.

Objective: The blood pressure (BP) response to salt intake (salt sensitivity) shows great variability among individuals and is more frequent in hypertensive patients. Elevated levels of the steroid hormone Endogenous Ouabain (EO) are associated with hypertension (HT) and salt sensitivity. The lanosterol synthase gene ( LSS ) plays a key role in the biosynthesis of steroids and its rs2254524 variant (Val642Leu) is linked to salt sensitivity in humans. This study aims to investigate the pathophysiological significance of the Lss missense variation in a new knock-in mouse model of salt-sensitive HT onset.

Methods: We generated a mouse model carrying the murine homolog (Val643Leu) of the human LSS variant. C57BL/6N LssV643L/V643L mice were fed different NaCl diets (low-salt, LSD; normal-salt, NSD; high-salt, HSD) and were characterized at functional, histological, and molecular levels.

Results: At baseline, mutant mice showed an enlarged kidney compared to the wild-type (WT) counterpart, but the Lss V643L variant did not affect EO biosynthesis nor systolic BP at 3 and 12 months. In HSD, we observed an increased systolic BP only in 12-month-old LssV643L/V643L mice, compared to NSD. Moreover, only the HSD LssV643L/V643L mice showed cardiac hypertrophy and a higher incidence of cardiac fibrosis compared to WT at 12 months. Finally, the Lss mRNA level was differentially regulated by HSD in the adrenal gland, liver, and heart of LssV643L/V643L mice compared to WT.

Conclusions: The novel Lss mouse model resembles the salt-sensitive HT phenotype observed in hypertensive patients and provides a good model of salt-sensitive HT and HT-mediated organ damage.

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来源期刊
Journal of Hypertension
Journal of Hypertension 医学-外周血管病
CiteScore
7.90
自引率
6.10%
发文量
1389
审稿时长
3 months
期刊介绍: The Journal of Hypertension publishes papers reporting original clinical and experimental research which are of a high standard and which contribute to the advancement of knowledge in the field of hypertension. The Journal publishes full papers, reviews or editorials (normally by invitation), and correspondence.
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