ZNF292通过ZNF292/SKP2/P27信号轴抑制ESCC细胞增殖。

Wei Gong, Jiancheng Xu, Guangchao Wang, Dan Li, Qimin Zhan
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引用次数: 4

摘要

目的:越来越多的证据表明ZNF292在肿瘤中具有抑制作用,但其在食管鳞状细胞癌(ESCC)中的功能和确切机制尚不清楚。方法:采用生物信息学分析和免疫组化(IHC)方法分析ZNF292对ESCC预后的影响。推断ZNF292的表达后,进行细胞增殖和集落形成能力实验,分析细胞生长情况。流式细胞术分析ZNF292缺失后细胞周期的变化。采用实时荧光定量聚合酶链反应(Quantitative real-time polymerase chain reaction, qRT-PCR)和western blot检测敲除ZNF292后细胞周期相关rna和蛋白的变化情况。采用MG-132、环己亚胺(CHX)处理实验,分析ZNF292敲除后P27的变化及半衰期。采用染色质免疫沉淀(ChIP)和荧光素酶报告基因法分析ZNF292对SKP2的转录调控。结果:我们报道了ZNF292的低表达与预后不良相关,并且ZNF292在ESCC的邻近组织和正常组织中出现高表达,而不是肿瘤组织。敲低ZNF292显著促进ESCC细胞的生长和S期进入。ZNF292缺失会降低P27的表达和半衰期,而SKP2敲低会导致P27的表达升高。ZNF292可以结合SKP2的启动子区,敲低ZNF292会促进SKP2的表达。结论:敲低ZNF292通过激活ESCC细胞中SKP2/P27信号通路介导G1/S细胞周期过程。ZNF292敲低在转录水平上促进SKP2表达,从而促进P27泛素降解,最终促进S期进入。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

ZNF292 suppresses proliferation of ESCC cells through ZNF292/SKP2/P27 signaling axis.

ZNF292 suppresses proliferation of ESCC cells through ZNF292/SKP2/P27 signaling axis.

ZNF292 suppresses proliferation of ESCC cells through ZNF292/SKP2/P27 signaling axis.

ZNF292 suppresses proliferation of ESCC cells through ZNF292/SKP2/P27 signaling axis.

Objective: Increasing evidence has demonstrated that ZNF292 plays a suppressive role in cancer, however, little is known about its function and exact mechanism in esophageal squamous cell carcinoma (ESCC).

Methods: Bioinformatic analysis and immunohistochemistry (IHC) were performed to analyze the role of ZNF292 in affecting the prognosis of ESCC. Cell proliferation and colony formation ability assays were performed to analyze cell growth after inferring the expression of ZNF292. Flow cytometry was used to analyze changes in the cell cycle upon the depletion of ZNF292. Quantitative real-time polymerase chain reaction (qRT-PCR) and western blot analysis were used to determine the alteration of cell cycle related RNAs and proteins after knocking down ZNF292. MG-132, cycloheximide (CHX) treatment experiments were performed to analyze the change and half-life time of P27 after knockdown of ZNF292. Chromatin immunoprecipitation (ChIP) and luciferase reporter assays were used to analyze the transcriptional regulation of SKP2 by ZNF292.

Results: We report that low expression of ZNF292 is associated with poor prognosis, and ZNF292 emerges to be highly expressed in adjacent and normal tissues rather than tumor tissues in ESCC. Knockdown of ZNF292 significantly boosts cell growth and S phase entry in ESCC cells. ZNF292 depletion will decrease the expression and half-life time of P27, while knockdown of SKP2 will result in elevated expression of P27. ZNF292 can bind to the promoter region of SKP2, and knockdown of ZNF292 will boost the expression of SKP2.

Conclusions: Knockdown of ZNF292 mediates G1/S cell cycle procession by activating SKP2/P27 signaling in ESCC cells. ZNF292 knockdown promotes SKP2 expression at the transcriptional level, thereby boosting P27 ubiquitin-degradation, and eventually facilitating the S phase entrance.

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