在巨结肠病中,BMI1通过表观遗传沉默Axin2促进Wnt信号传导,促进细胞增殖和迁移。

IF 1.4
Zhanhu Li, Dong Chen
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引用次数: 0

摘要

先天性巨结肠病(HSCR)是一种先天性肠道疾病,其特征是肠道神经嵴细胞的缺失。与正常肠道组织相比,BMI1在HSCR组织中被证实下调,但BMI1是否参与HSCR的发病机制尚不清楚。我们发现,与hsc扩张节段(hsc -d)或对照组相比,hsc狭窄节段(hsc -s)患者的BMI1表达下调。在SH-SY5Y神经母细胞瘤细胞和原代肠神经嵴细胞(ENCCs)中,PTC-209对BMI1的药理抑制可显著减弱细胞增殖、迁移和细胞周期进展,而BMI1过表达则产生相反的效果。BMI1结合到Wnt信号通路抑制剂Axin2的启动子区域,通过增加Axin2启动子上的H2AK119ub和减少H3K4me3来抑制其转录,从而阻碍Wnt信号传导。此外,Axin2的过表达降低了细胞的增殖、迁移和细胞周期进程。HY-122816(一种Wnt信号通路激动剂)逆转了PTC-209对细胞增殖、迁移和细胞周期进展的抑制作用。此外,BMI1上调可促进Ednrb-/-小鼠的神经节细胞增殖。结论:BMI1通过介导Axin2的表观遗传沉默促进Wnt信号传导,从而促进HSCR细胞的增殖和迁移。临床上,与hsc - d或对照组相比,hsc - s患者BMI1表达下调。此外,BMI1首次被证明可以促进ENCCs中的细胞增殖、迁移和细胞周期进展。分子水平探测发现,BMI1结合到Wnt信号通路抑制剂Axin2的启动子区域,通过增加Axin2启动子中的H2AK119ub和减少H3K4me3来抑制Axin2的转录,从而阻碍Wnt信号传导。本研究揭示BMI1/Axin2/Wnt轴可能在HSCR的发病机制中发挥重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
BMI1 facilitates Wnt signaling by epigenetic silencing of Axin2 to promote cell proliferation and migration in Hirschsprung's disease.

Hirschsprung's disease (HSCR) is a congenital intestinal disease characterized by the loss of enteric neural crest cells. BMI1 is demonstrated to be downregulated in HSCR tissues compared to normal intestinal tissues, but it is still unclear whether BMI1 is involved in the pathogenesis of HSCR. Here, we found that BMI1 expression was downregulated in HSCR-stenosed segments (HSCR-S) cases compared with HSCR-dilated segments (HSCR-D) or control cases. Pharmacological inhibition of BMI1 using PTC-209 significantly attenuated cell proliferation, migration, and cell cycle progression in both SH-SY5Y neuroblastoma cells and primary enteric neural crest cells (ENCCs), whereas BMI1 overexpression produced the opposite effects. BMI1 binds to the promoter region of the Wnt signaling pathway inhibitor Axin2 and suppressed its transcription by increasing H2AK119ub and reducing H3K4me3 at the Axin2 promoter, thereby hindering Wnt signaling. Moreover, overexpression of Axin2 decreased cell proliferation, migration and cell cycle progression. Treatment with HY-122816 (a Wnt signaling pathway agonist) reversed the inhibitory effects of PTC-209 on cell proliferation, migration, and cell cycle progression. Additionally, BMI1 upregulation promoted ganglion cell proliferation in Ednrb-/- mice. In conclusion: BMI1 facilitated Wnt signaling by mediating epigenetic silencing of Axin2, thereby promoting cell proliferation and migration in HSCR. Clinically, BMI1 expression was downregulated in HSCR-S cases compared with HSCR-D or control cases. Moreover, BMI1 was shown for the first time to promote cell proliferation, migration, and cell cycle progression in ENCCs. Molecular level probing revealed that BMI1 binds to the promoter region of Axin2, an inhibitor of the Wnt signaling pathway, and inhibited Axin2 transcription by increasing H2AK119ub and decreasing H3K4me3 in the Axin2 promoter, thereby hindering Wnt signaling. This study revealed that the BMI1/Axin2/Wnt axis may play an important role in the pathogenesis of HSCR.

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