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Pflugers Arch. 2019 Jan;471(1):165-173. doi: 10.1007/s00424-018-2221-1. Epub 2018 Oct 20.
2
Novel Models of Epigenetic Gene Regulation in the Nutritional Environment.营养环境中表观遗传基因调控的新模型。
Adv Exp Med Biol. 2018;1012:11-18. doi: 10.1007/978-981-10-5526-3_2.
3
Vitamin A and Retinoic Acid Exhibit Protective Effects on Necrotizing Enterocolitis by Regulating Intestinal Flora and Enhancing the Intestinal Epithelial Barrier.维生素 A 和维甲酸通过调节肠道菌群和增强肠道上皮屏障发挥对坏死性小肠结肠炎的保护作用。
Arch Med Res. 2018 Jan;49(1):1-9. doi: 10.1016/j.arcmed.2018.04.003. Epub 2018 Apr 24.
4
Retinoic Acid Facilitates Toll-Like Receptor 4 Expression to Improve Intestinal Barrier Function through Retinoic Acid Receptor Beta.视黄酸通过视黄酸受体β促进Toll样受体4表达以改善肠道屏障功能。
Cell Physiol Biochem. 2017;42(4):1390-1406. doi: 10.1159/000479203. Epub 2017 Jul 17.
5
Activating transcription factor-4 promotes mineralization in vascular smooth muscle cells.激活转录因子-4 促进血管平滑肌细胞的矿化。
JCI Insight. 2016 Nov 3;1(18):e88646. doi: 10.1172/jci.insight.88646.
6
Chronic Kidney Disease Alters Vitamin A Homeostasis via Effects on Hepatic RBP4 Protein Expression and Metabolic Enzymes.慢性肾脏病通过影响肝脏视黄醇结合蛋白4(RBP4)的蛋白表达和代谢酶来改变维生素A的稳态。
Clin Transl Sci. 2016 Aug;9(4):207-15. doi: 10.1111/cts.12402. Epub 2016 Jun 9.
7
Alterations of Hepatic Metabolism in Chronic Kidney Disease via D-box-binding Protein Aggravate the Renal Dysfunction.慢性肾脏病中通过D盒结合蛋白引起的肝脏代谢改变加重肾功能障碍。
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8
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全反式视黄酸可降低肠道钠依赖性磷酸盐协同转运蛋白基因(Npt2b)的转录调控。

All-trans retinoic acid reduces the transcriptional regulation of intestinal sodium-dependent phosphate co-transporter gene (Npt2b).

机构信息

Department of Clinical Nutrition and Food Management, Institute of Biomedical Sciences, Tokushima University Graduate School, 3-18-15 Kuramoto-cho, Tokushima 770-8503, Japan.

Department of Health and Nutrition, Faculty of Human Life, Jin-ai University, 3-1-1 Ohde-cho, Fukui 915-8586, Japan.

出版信息

Biochem J. 2020 Feb 28;477(4):817-831. doi: 10.1042/BCJ20190716.

DOI:10.1042/BCJ20190716
PMID:32016357
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7597408/
Abstract

Inorganic phosphate (Pi) homeostasis is regulated by intestinal absorption via type II sodium-dependent co-transporter (Npt2b) and by renal reabsorption via Npt2a and Npt2c. Although we previously reported that vitamin A-deficient (VAD) rats had increased urine Pi excretion through the decreased renal expression of Npt2a and Npt2c, the effect of vitamin A on the intestinal Npt2b expression remains unclear. In this study, we investigated the effects of treatment with all-trans retinoic acid (ATRA), a metabolite of vitamin A, on the Pi absorption and the Npt2b expression in the intestine of VAD rats, as well as and the underlying molecular mechanisms. In VAD rats, the intestinal Pi uptake activity and the expression of Npt2b were increased, but were reduced by the administration of ATRA. The transcriptional activity of reporter plasmid containing the promoter region of the rat Npt2b gene was reduced by ATRA in NIH3T3 cells overexpressing retinoic acid receptor (RAR) and retinoid X receptor (RXR). On the other hand, CCAAT/enhancer-binding proteins (C/EBP) induced transcriptional activity of the Npt2b gene. Knockdown of the C/EBP gene and a mutation analysis of the C/EBP responsible element in the Npt2b gene promoter indicated that C/EBP plays a pivotal role in the regulation of Npt2b gene transcriptional activity by ATRA. EMSA revealed that the RAR/RXR complex inhibits binding of C/EBP to Npt2b gene promoter. Together, these results suggest that ATRA may reduce the intestinal Pi uptake by preventing C/EBP activation of the intestinal Npt2b gene.

摘要

无机磷酸盐(Pi)稳态通过肠道吸收通过 II 型钠依赖性共转运体(Npt2b)和通过肾脏重吸收通过 Npt2a 和 Npt2c 进行调节。尽管我们之前报道过维生素 A 缺乏(VAD)大鼠通过降低肾脏 Npt2a 和 Npt2c 的表达而增加尿 Pi 排泄,但维生素 A 对肠道 Npt2b 表达的影响仍不清楚。在这项研究中,我们研究了全反式视黄酸(ATRA),维生素 A 的代谢物,对 VAD 大鼠肠道 Pi 吸收和 Npt2b 表达的影响,以及潜在的分子机制。在 VAD 大鼠中,肠道 Pi 摄取活性和 Npt2b 的表达增加,但 ATRA 的给药降低了它们的表达。在过表达视黄酸受体(RAR)和视黄醛 X 受体(RXR)的 NIH3T3 细胞中,包含大鼠 Npt2b 基因启动子区域的报告质粒的转录活性被 ATRA 降低。另一方面,CCAAT/增强子结合蛋白(C/EBP)诱导 Npt2b 基因的转录活性。C/EBP 基因的敲低和 Npt2b 基因启动子中 C/EBP 负责元件的突变分析表明,C/EBP 在 ATRA 调节 Npt2b 基因转录活性中起关键作用。EMSA 显示 RAR/RXR 复合物抑制 C/EBP 与 Npt2b 基因启动子的结合。总之,这些结果表明,ATRA 可能通过防止 C/EBP 激活肠道 Npt2b 基因来减少肠道 Pi 摄取。