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促甲状腺激素通过 SREBP-2/HNF-4α/CYP7A1 轴调节肝内胆汁酸稳态。

Thyroid-stimulating hormone regulates hepatic bile acid homeostasis via SREBP-2/HNF-4α/CYP7A1 axis.

机构信息

Department of Endocrinology and Metabolism, Shandong Provincial Hospital affiliated to Shandong University, Jinan, Shandong 250021, China; Institute of Endocrinology and Metabolism, Shandong Academy of Clinical Medicine, Jinan, Shandong 250021, China.

Department of Organ Transplantation Surgery, Shandong Provincial Hospital affiliated to Shandong University, Jinan, Shandong 250021, China.

出版信息

J Hepatol. 2015 May;62(5):1171-9. doi: 10.1016/j.jhep.2014.12.006. Epub 2014 Dec 19.

Abstract

BACKGROUND & AIMS: Bile acids (BAs) play a crucial role in dietary fat digestion and in the regulation of lipid, glucose, and energy metabolism. Thyroid-stimulating hormone (TSH) is a hormone produced by the anterior pituitary gland that directly regulates several metabolic pathways. However, the impact of TSH on BA homeostasis remains largely unknown.

METHODS

We analyzed serum BA and TSH levels in healthy volunteers under strict control of caloric intake. Thyroidectomized rats were administered thyroxine and injected with different doses of TSH. Tshr(-/-) mice were supplemented with thyroxine, and C57BL/6 mice were injected with Tshr-siRNA via the tail vein. The serum BA levels, BA pool size, and fecal BA excretion rate were measured. The regulation of SREBP-2, HNF-4α, and CYP7A1 by TSH were analyzed using luciferase reporter, RNAi, EMSA, and CHIP assays.

RESULTS

A negative correlation was observed between the serum levels of TSH and the serum BA levels in healthy volunteers. TSH administration led to a decrease in BA content and CYP7A1 activity in thyroidectomized rats supplemented with thyroxine. When Tshr was silenced in mice, the BA pool size, fecal BA excretion rate, and serum BA levels all increased. Additionally, we found that HNF-4α acts as a critical molecule through which TSH represses CYP7A1 activity. We further confirmed that the accumulation of mature SREBP-2 protein could impair the capacity of nuclear HNF-4α to bind to the CYP7A1 promoter, a mechanism that appears to mediate the effects of TSH.

CONCLUSIONS

TSH represses hepatic BA synthesis via a SREBP-2/HNF-4α/CYP7A1 signaling pathway. This finding strongly supports the notion that TSH is an important pathophysiological regulator of liver BA homeostasis independently of thyroid hormones.

摘要

背景与目的

胆汁酸(BAs)在膳食脂肪消化和脂质、葡萄糖和能量代谢调节中发挥着关键作用。促甲状腺激素(TSH)是由垂体前叶分泌的一种激素,它直接调节多种代谢途径。然而,TSH 对 BA 动态平衡的影响在很大程度上仍然未知。

方法

我们分析了严格控制热量摄入的健康志愿者的血清 BA 和 TSH 水平。给予甲状腺切除术大鼠甲状腺素,并注射不同剂量的 TSH。给予 Tshr(-/-)小鼠甲状腺素补充,并通过尾静脉注射 Tshr-siRNA。测量血清 BA 水平、BA 池大小和粪便 BA 排泄率。使用荧光素酶报告、RNAi、EMSA 和 CHIP 测定分析 TSH 对 SREBP-2、HNF-4α 和 CYP7A1 的调控作用。

结果

在健康志愿者中,TSH 血清水平与血清 BA 水平呈负相关。在给予甲状腺素补充的甲状腺切除大鼠中,TSH 给药导致 BA 含量和 CYP7A1 活性降低。当在小鼠中沉默 Tshr 时,BA 池大小、粪便 BA 排泄率和血清 BA 水平均增加。此外,我们发现 HNF-4α 作为一种关键分子,通过 TSH 抑制 CYP7A1 活性。我们进一步证实,成熟 SREBP-2 蛋白的积累会损害核 HNF-4α 与 CYP7A1 启动子结合的能力,这种机制似乎介导了 TSH 的作用。

结论

TSH 通过 SREBP-2/HNF-4α/CYP7A1 信号通路抑制肝 BA 合成。这一发现有力地支持了 TSH 是独立于甲状腺激素的肝脏 BA 动态平衡的重要病理生理学调节剂的观点。

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