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组蛋白去乙酰化酶9是肾脏血管紧张素原的一种表观遗传抑制因子,它造成了性别差异。

HDAC9 is an epigenetic repressor of kidney angiotensinogen establishing a sex difference.

作者信息

Bourgeois Camille T, Satou Ryousuke, Prieto Minolfa C

机构信息

Department of Physiology, Tulane Hypertension and Renal Center of Excellence, Tulane University School of Medicine, 1430 Tulane Avenue, SL39, New Orleans, LA 70112-2699 USA.

出版信息

Biol Sex Differ. 2017 May 30;8:18. doi: 10.1186/s13293-017-0140-z. eCollection 2017.

Abstract

BACKGROUND

Sexual difference has been shown in the pathogenesis of chronic kidney disease induced by hypertension. Females are protected from hypertension and related end-organ damage. Augmentation of renal proximal tubular angiotensinogen (AGT) expression can promote intrarenal angiotensin formation and the development of associated hypertension and kidney injury. Female rodents exhibit lower intrarenal AGT levels than males under normal conditions, suggesting that the suppressed intrarenal AGT production by programmed mechanisms in females may provide protection from these diseases. This study was performed to examine whether epigenetic mechanisms serve as repressors of AGT.

METHODS

Male and female Sprague Dawley rats were used to investigate sex differences of systemic, hepatic, and intrarenal AGT levels. All histone deacetylase (HDAC) mRNA levels in the kidneys were determined using a PCR array. HDAC9 protein expression in the kidneys and cultured renal proximal tubular cells (PTC) was analyzed by Western blot analysis and immunohistochemistry. The effects of HDAC9 on AGT expression were evaluated by using an inhibitor and siRNA. ChIP assay was performed to investigate the interaction between the AGT promoter and HDAC9.

RESULTS

Plasma and liver AGT levels did not show differences between male and female Sprague-Dawley rats. In contrast, females exhibited lower AGT levels than males in the renal cortex and urine. In the absence of supplemented sex hormones, primary cultured renal cortical cells isolated from female rats sustained lower AGT levels than those from males, suggesting that the kidneys have a unique mechanism of AGT regulation controlled by epigenetic factors rather than sex hormones. HDAC9 mRNA and protein levels were higher in the renal cortex of female rats versus male rats (7.09 ± 0.88, ratio to male) while other HDACs did not exhibit a sex difference. HDAC9 expression was localized in PTC which are the primary source of intrarenal AGT. Importantly, HDAC9 knockdown augmented AGT mRNA (1.92 ± 0.35-fold) and protein (2.25 ± 0.50-fold) levels, similar to an HDAC9 inhibitor. Furthermore, an interaction between HDAC9 and a distal 5' flanking region of AGT via a histone complex containing H3 and H4 was demonstrated.

CONCLUSIONS

These results indicate that HDAC9 is a novel suppressing factor involved in AGT regulation in PTC, leading to low levels of intrarenal AGT in females. These findings will help to delineate mechanisms underlying sex differences in the development of hypertension and renin-angiotensin system (RAS) associated kidney injury.

摘要

背景

高血压所致慢性肾脏病的发病机制存在性别差异。女性对高血压及相关靶器官损害具有一定的保护作用。肾近端小管血管紧张素原(AGT)表达增加可促进肾内血管紧张素的形成以及相关高血压和肾损伤的发展。在正常情况下,雌性啮齿动物肾内AGT水平低于雄性,这表明雌性体内通过程序性机制抑制肾内AGT生成可能为其提供了对这些疾病的保护。本研究旨在探讨表观遗传机制是否作为AGT的抑制因子。

方法

使用雄性和雌性Sprague Dawley大鼠来研究全身、肝脏和肾内AGT水平的性别差异。使用PCR芯片测定肾脏中所有组蛋白去乙酰化酶(HDAC)的mRNA水平。通过蛋白质印迹分析和免疫组织化学分析肾脏和培养的肾近端小管细胞(PTC)中HDAC9蛋白的表达。使用抑制剂和小干扰RNA(siRNA)评估HDAC9对AGT表达的影响。进行染色质免疫沉淀(ChIP)试验以研究AGT启动子与HDAC9之间的相互作用。

结果

雄性和雌性Sprague-Dawley大鼠的血浆和肝脏AGT水平无差异。相反,雌性大鼠肾皮质和尿液中的AGT水平低于雄性。在未补充性激素的情况下,从雌性大鼠分离的原代培养肾皮质细胞的AGT水平持续低于雄性大鼠,这表明肾脏具有一种独特机制,通过表观遗传因素而非性激素来调控AGT。雌性大鼠肾皮质中HDAC9的mRNA和蛋白水平高于雄性大鼠(相对于雄性的比值为7.09±0.88),而其他HDACs未表现出性别差异。HDAC9表达定位于PTC,而PTC是肾内AGT的主要来源。重要的是,与HDAC9抑制剂类似,HDAC9基因敲低使AGT的mRNA(1.92±0.35倍)和蛋白(2.25±0.50倍)水平升高。此外,还证实了HDAC9与AGT的5'侧翼远端区域通过包含H3和H4的组蛋白复合物相互作用。

结论

这些结果表明,HDAC9是参与PTC中AGT调控的一种新型抑制因子,导致雌性肾内AGT水平较低。这些发现将有助于阐明高血压和肾素-血管紧张素系统(RAS)相关肾损伤发生发展过程中性别差异的潜在机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba67/5450130/9fffba25276c/13293_2017_140_Fig1_HTML.jpg

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