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鞣花酸及其发酵衍生物尿石素A对gp91 - phox基因表达呈现相反作用,导致全反式维甲酸诱导的U937细胞超氧化物生成活性发生相反改变。

Ellagic acid and its fermentative derivative urolithin A show reverse effects on the gp91-phox gene expression, resulting in opposite alterations in all- retinoic acid-induced superoxide generating activity of U937 cells.

作者信息

Kikuchi Hidehiko, Harata Kaori, Madhyastha Harishkumar, Kuribayashi Futoshi

机构信息

Department of Food and Nutrition, Shokei University Junior College, 2-6-78 Kuhonji, Chuo-ku, Kumamoto, 862-8678, Japan.

Department of Applied Physiology, Faculty of Medicine, University of Miyazaki, 5200, Kihara, Kiyotake, Miyazaki, 889-1692, Japan.

出版信息

Biochem Biophys Rep. 2021 Jan 6;25:100891. doi: 10.1016/j.bbrep.2020.100891. eCollection 2021 Mar.

Abstract

Ellagitannins (esters composed of glucose and ellagic acid) are hydrolyzed to generate ellagic acid in gut followed by conversion of ellagic acid to urolithins such as urolithin A by intestinal bacteria. Since urolithins are absorbed by gut easier than ellagitannins and ellagic acid, and show various physiological activities (e.g. anti-cancer, anti-cardiovascular disease, anti-diabetes mellitus, anti-obesity and anti-Alzheimer disease activities), they are expected as excellent health-promoting phytochemicals. Here, using human monoblast U937 cells, we investigated the effect of ellagic acid and urolithin A on the superoxide anion (O )-generating system of phagocytes, which is consisted of five specific protein factors (membrane proteins: p22-phox and gp91-phox, cytosolic proteins: p40-phox, p47-phox and p67-phox). Twenty micromolar of urolithin A enhanced the all- retinoic acid (ATRA)-induced O -generating activity (to ~175%) while 20 μM ellagic acid inhibited the ATRA-induced O -generating activity (to ~70%). Semiquantitative RT-PCR showed that transcription level of gp91-phox was certainly decreased (to ~70%) in ATRA plus ellagic acid-treated cells, while that of gp91-phox was significantly increased (to ~160%) in ATRA plus urolithin A-treated cells. Chromatin immunoprecipitation assay suggested that urolithin A enhanced acetylations of Lys-9 residues of histone H3 within chromatin surrounding the promoter region of gp91-phox gene, but ellagic acid suppressed the acetylations. Immunoblotting also revealed that ATRA plus urolithin A-treatment up-regulated protein levels of p22-phox (to ~160%) and gp91-phox (to ~170%) although ATRA plus ellagic acid-treatment down-regulated protein levels of p22-phox (to ~70%) and gp91-phox (to ~60%). These results suggested that conversion of ellagic acid to urolithin A in gut may bring about reverse effects on the gp91-phox gene expression, resulting in opposite alterations in O -generating activity of intestinal macrophages.

摘要

鞣花单宁(由葡萄糖和鞣花酸组成的酯类)在肠道中被水解生成鞣花酸,随后鞣花酸被肠道细菌转化为尿石素,如尿石素A。由于尿石素比鞣花单宁和鞣花酸更容易被肠道吸收,并表现出各种生理活性(如抗癌、抗心血管疾病、抗糖尿病、抗肥胖和抗阿尔茨海默病活性),它们有望成为出色的促进健康的植物化学物质。在此,我们使用人单核细胞U937细胞,研究了鞣花酸和尿石素A对吞噬细胞超氧阴离子(O )生成系统的影响,该系统由五个特定的蛋白质因子组成(膜蛋白:p22-吞噬氧化酶和gp91-吞噬氧化酶,胞质蛋白:p40-吞噬氧化酶、p47-吞噬氧化酶和p67-吞噬氧化酶)。二十微摩尔的尿石素A增强了全反式维甲酸(ATRA)诱导的O 生成活性(至约175%),而20 μM鞣花酸抑制了ATRA诱导的O 生成活性(至约70%)。半定量RT-PCR显示,在ATRA加鞣花酸处理的细胞中,gp91-吞噬氧化酶的转录水平确实下降(至约70%),而在ATRA加尿石素A处理的细胞中,gp91-吞噬氧化酶的转录水平显著增加(至约160%)。染色质免疫沉淀分析表明,尿石素A增强了gp91-吞噬氧化酶基因启动子区域周围染色质中组蛋白H3赖氨酸-9残基的乙酰化,但鞣花酸抑制了乙酰化。免疫印迹还显示,ATRA加尿石素A处理上调了p22-吞噬氧化酶(至约160%)和gp91-吞噬氧化酶(至约170%)的蛋白水平,尽管ATRA加鞣花酸处理下调了p22-吞噬氧化酶(至约70%)和gp91-吞噬氧化酶(至约60%)的蛋白水平。这些结果表明,鞣花酸在肠道中转化为尿石素A可能对gp91-吞噬氧化酶基因表达产生相反的影响,导致肠道巨噬细胞O 生成活性发生相反的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6253/7806786/807c12dc4045/gr1.jpg

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